CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Neuroprotective Agents

  • Acupuncture elicits neuroprotective effect by inhibiting NAPDH oxidase-mediated reactive oxygen species production in cerebral ischaemia.

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    Abstract Title:

    Acupuncture elicits neuroprotective effect by inhibiting NAPDH oxidase-mediated reactive oxygen species production in cerebral ischaemia.

    Abstract Source:

    Sci Rep. 2015;5:17981. Epub 2015 Dec 10. PMID: 26656460

    Abstract Author(s):

    Guang-Xia Shi, Xue-Rui Wang, Chao-Qun Yan, Tian He, Jing-Wen Yang, Xiang-Hong Zeng, Qian Xu, Wen Zhu, Si-Qi Du, Cun-Zhi Liu

    Article Affiliation:

    Guang-Xia Shi

    Abstract:

    In the current study, we aimed to investigate whether NADPH oxidase, a major ROS-producing enzyme, was involved in the antioxidant effect of acupuncture on cognitive impairment after cerebral ischaemia. The cognitive function, infract size, neuron cell loss, level of superoxide anion and expression of NADPH oxidase subunit in hippocampus of two-vessel occlusion (2VO) rats were determined after 2-week acupuncture. Furthermore, the cognitive function and production of O2(-) were determined in the presence and absence of NADPH oxidase agonist (TBCA) and antagonist (Apocynin). The effect of acupuncture on cognitive function after cerebral ischaemia in gp91phox-KO mice was evaluated by Morris water maze. Acupuncture reduced infarct size, attenuated overproduction of O2(-), and reversed consequential cognitive impairment and neuron cell loss in 2VO rats. The elevations of gp91phox and p47phox after 2VO were significantly decreased after acupuncture treatment. However, no differences of gp91phox mRNA were found among any experimental groups. Furthermore, these beneficial effects were reversed by TBCA, whereas apocynin mimicked the effect of acupuncture by improving cognitive function and decreasing O2(-) generation. Acupuncture failed to improve the memory impairment in gp91phox KO mice. Full function of the NADPH oxidase enzyme plays an important role in neuroprotective effects against cognitive impairment via inhibition of NAPDH oxidase-mediated oxidative stress.

  • Acupuncture elicits neuroprotective effect by inhibiting NAPDH oxidase-mediated reactive oxygen species production in cerebral ischaemia📎

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    Abstract Title:

    Acupuncture elicits neuroprotective effect by inhibiting NAPDH oxidase-mediated reactive oxygen species production in cerebral ischaemia.

    Abstract Source:

    Sci Rep. 2015;5:17981. Epub 2015 Dec 10. PMID: 26656460

    Abstract Author(s):

    Guang-Xia Shi, Xue-Rui Wang, Chao-Qun Yan, Tian He, Jing-Wen Yang, Xiang-Hong Zeng, Qian Xu, Wen Zhu, Si-Qi Du, Cun-Zhi Liu

    Article Affiliation:

    Guang-Xia Shi

    Abstract:

    In the current study, we aimed to investigate whether NADPH oxidase, a major ROS-producing enzyme, was involved in the antioxidant effect of acupuncture on cognitive impairment after cerebral ischaemia. The cognitive function, infract size, neuron cell loss, level of superoxide anion and expression of NADPH oxidase subunit in hippocampus of two-vessel occlusion (2VO) rats were determined after 2-week acupuncture. Furthermore, the cognitive function and production of O2(-) were determined in the presence and absence of NADPH oxidase agonist (TBCA) and antagonist (Apocynin). The effect of acupuncture on cognitive function after cerebral ischaemia in gp91phox-KO mice was evaluated by Morris water maze. Acupuncture reduced infarct size, attenuated overproduction of O2(-), and reversed consequential cognitive impairment and neuron cell loss in 2VO rats. The elevations of gp91phox and p47phox after 2VO were significantly decreased after acupuncture treatment. However, no differences of gp91phox mRNA were found among any experimental groups. Furthermore, these beneficial effects were reversed by TBCA, whereas apocynin mimicked the effect of acupuncture by improving cognitive function and decreasing O2(-) generation. Acupuncture failed to improve the memory impairment in gp91phox KO mice. Full function of the NADPH oxidase enzyme plays an important role in neuroprotective effects against cognitive impairment via inhibition of NAPDH oxidase-mediated oxidative stress.

  • Acupuncture for Patients in Coma after Traumatic Brain Injury: Systematic Review and Meta-Analysis.

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    Abstract Title:

    Acupuncture for Patients in Coma after Traumatic Brain Injury: Systematic Review and Meta-Analysis.

    Abstract Source:

    Altern Ther Health Med. 2020 Feb 21. Epub 2020 Feb 21. PMID: 32088667

    Abstract Author(s):

    Qi Zhang, Jinxing Liu, Rui Cao, Yi Jin

    Article Affiliation:

    Qi Zhang

    Abstract:

    Context:Traumatic brain injury (TBI) is an injury to the brain that occurs as a result of a direct impact, and affected persons are usually in a long-term coma. The evidence of the safety and effectiveness of acupuncture to treat coma is still not convincing.

    Objective:The study intended to assess the effectiveness and safety of acupuncture for arousing a patient in a coma following TBI.

    Design:Medline, Embase, CENTRAL, and 4 Chinese medical databases were searched from their inception to March 1, 2018, without language restrictions. The dataset included randomized controlled trials (RCTs) that examined acupuncture as a therapy for arousing patients in a coma after TBI. The literature was screened ;the data were extracted ;and the methodological quality of the included studies was assessed. Meta-analyses were performed on the included data.

    Setting:This study was conducted at Tianjin University of Traditional Chinese Medicine (Tianjin City, China).

    Participants:Participants in the selected RCTs were people of any age and either gender who were in a coma caused by TBI.

    Interventions:The intervention group in the selected RCTs had received acupuncture for TBI, either as a sole therapy or combined with other treatments, and the control group had received placebo acupuncture, sham acupuncture, conventional treatments, or other treatments. The interventions included traditional acupuncture, electroacupuncture, ear acupuncture, and scalp acupuncture.

    Outcome Measures:The research team measured the Glasgow Outcome Score (GOS), wake-promoting rates, as well as the Glasgow Coma Score (GCS).

    Results:Of 884 potentially relevant trials, 24 RCTs met the inclusion criteria. The results of the meta-analysis suggested that the acupuncture group's coma state was significantly lessened after treatment compared with the control on GOS (RR, 1.95, 95% CI [1.64 to 2.31], P<.01; I² = 0%), wake-promoting rates (RR, 1.48, 95% CI [1.19 to 1.83], P<.01; I² = 52%), and GCS (MD, 1.78, 95% CI [1.10 to 2.45], P<.01; I² = 52%) .

    Conclusion:The systematic review and meta-analysis has suggested that acupuncture can be an effective treatment for patients unconscious following TBI. However, the evidence was too weak for medical practitioners to routinely recommend acupuncture for clinical treatment; further large, rigorously designed studies are needed.

  • Acupuncture Inhibits the Increase in Alpha-Synuclein in Substantia Nigra in an MPTP- Induced Parkinsonism Mouse Model.

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    Abstract Title:

    Acupuncture Inhibits the Increase in Alpha-Synuclein in Substantia Nigra in an MPTP- Induced Parkinsonism Mouse Model.

    Abstract Source:

    Adv Exp Med Biol. 2020 ;1232:401-408. PMID: 31893437

    Abstract Author(s):

    Sujung Yeo, Jongbeom Song, Sabina Lim

    Article Affiliation:

    Sujung Yeo

    Abstract:

    Parkinson's disease, a progressive neurodegenerative disease, is caused by the loss of dopaminergic neurons in the substantia nigra (SN). It is characterized by the formation of intracytoplasmic Lewy bodies that are primarily composed of the protein alpha-synuclein (α-syn), along with dystrophic neurites. Acupuncture stimulation results in an enhanced survival of dopaminergic neurons in the SN in Parkinsonism animal models. We investigated the role of acupuncture in inhibiting the increase in α-syn expression that is related to dopaminergic cell loss in the SN in a chronic 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) Parkinsonism mouse model. In this model, acupuncture stimulation at GB34 and LR3 attenuated the decrease in tyrosine hydroxylase in the SN. Moreover, acupuncture stimulation attenuated the increase in α-syn in SN. Acupuncture stimulation also maintained the phosphorylated α-syn on serine 129 at levels similar to the control group. Our findings indicate that the MPTP-mediated increase in α-syn, and the acupuncture-mediated inhibition of the increase in α-syn, may be responsible for the neuroprotective effects of acupuncturein the SN following damage induced by MPTP.

  • Acupuncture inhibits TXNIP-associated oxidative stress and inflammation to attenuate cognitive impairment in vascular dementia rats.

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    Abstract Title:

    Acupuncture inhibits TXNIP-associated oxidative stress and inflammation to attenuate cognitive impairment in vascular dementia rats.

    Abstract Source:

    CNS Neurosci Ther. 2017 Nov 6. Epub 2017 Nov 6. PMID: 29110407

    Abstract Author(s):

    Si-Qi Du, Xue-Rui Wang, Wen Zhu, Yang Ye, Jing-Wen Yang, Si-Ming Ma, Cai-Shuo Ji, Cun-Zhi Liu

    Article Affiliation:

    Si-Qi Du

    Abstract:

    AIMS:Oxidative stress and inflammation have been implicated in the pathogenesis of vascular dementia (VD). Thioredoxin-interacting protein (TXNIP) plays a vital role in oxidative stress and NOD-like receptor protein 3 (NLRP3) inflammasome activation. There is evidence that acupuncture has an antioxidative and neuroprotective effect in VD. In this study, we investigated whether acupuncture can attenuate cognitive impairment via inhibiting TXNIP-associated oxidative stress and inflammation in VD rats.

    METHODS:Both common carotid arteries were occluded (2-vessel occlusion [2VO]) in rats to model VD. The neuroprotective effect of acupuncture was assessed by the Morris water maze and Nissl staining. Oxidative stress was assessed by detecting levels of reactive oxygen species, DNA oxidation, and antioxidase. Western blot, real-time PCR, and immunofluorescence were used to detect the expression of TXNIP, NLRP3, caspase-1, and IL-1β. A TXNIP siRNA intraventricular injection was applied to investigate whether acupuncture mimicked the effect of TXNIP inhibitor.

    RESULTS:Our findings demonstrated that VD rats treated with acupuncture had reduced hippocampal neuronal loss and oxidative stress. The upregulation of TXNIP, NLRP3, caspase-1, and IL-1β induced by 2VO was also reversed by acupuncture. Furthermore, TXNIP siRNA had a similar effect as acupuncture on cognition, hippocampal neurons, and ROS production in VD rats.

    CONCLUSION:In conclusion, our study suggests that the neuroprotective effects of acupuncture in VD are mediated through reducing expression of TXNIP-associated oxidative stress and inflammation.

  • Acupuncture plus moxibustion intervention improves learning-memory ability by suppressing hippocampal JAK2/STAT3 signaling in Alzheimer's rats

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    Abstract Title:

    [Acupuncture plus moxibustion intervention improves learning-memory ability by suppressing hippocampal JAK2/STAT3 signaling in Alzheimer's rats].

    Abstract Source:

    Zhen Ci Yan Jiu. 2019 Feb 25 ;44(2):79-84. PMID: 30945481

    Abstract Author(s):

    Jing Liu, Yan-Jun Du, Qing-Lian Zhou, Guo-Jie Sun

    Article Affiliation:

    Jing Liu

    Abstract:

    OBJECTIVE:To investigate the effect of acupuncture plus moxibustion on learning-memory ability and expression of hippocampal Janus kinase-2 (JAK2)/signal transducer and activator of transcription-3 (STAT3)/suppressors of cytokine signaling-3 (SOCS3) signaling in Alzheimer's Disease (AD) rats, so as to reveal their mechanisms underlying improvement of AD.

    METHODS:A total of 60 SD rats were randomly divided into four groups:normal control, sham-operation, model and acupuncture-moxibustion (Acu-moxi,=15 in each group) groups. The AD model was established by microinjection of β-amyloid 1-42(Aβ1-42,5 µL)into the bilateral hippocampus. Seven days after modeling, Acu-moxi intervention was given. After insertion of acupuncture needles into"Baihui"(GV20) and bilateral"Shenshu"(BL23) and manipulating them for a while, the needles were then retained for 15 min, when, the mild moxibustion was performed at the same time. The treatment was conducted once daily, 5 times a week for consecutive 4 weeks. After the treatment, Morris water maze test was used to detect the animals' learning-memory ability. Immunohistochemistry and Western blot were respectively used to detect the number of positive cells and protein expression levels of JAK2, STAT3 and SOCS3 in the hippocampus tissue.

    RESULTS:Following modeling and compared with the normal control and sham-operation groups, the average escape latency was significantly prolonged (<0.01), and the number of the original platform crossing and the residence time in the platform quadrant were significantly shortened in the model group (<0.01). The numbers of hippocampal JAK2- and STAT3-positive cells and expression levels of hippocampal JAK2 and STAT3 proteins were significantly increased (<0.01), and the number of hippocampal SOCS3-positive cells as well as the expression of SOCS3 protein significantly decreased in the model group relevant to the normal control and sham-operation groups (<0.01). After the intervention, the average escape latency was significantly shortened (<0.01), and the number of the original platform crossing and the residence time in the platform quadrant were significantly increased in the Acu-moxi group (<0.01), and the expression levels of JAK2 and STAT3 were significantly down-regulated and that of SOCS3 was considerably up-regulated in the Acu-moxi group relevant to the model group (<0.01)..

    CONCLUSION:Acu-moxi intervention can improve the learning-memory ability in AD rats, which is associated with its functions in inhibiting hippocampal JAK2/STAT3 signaling and up-regulating SOCS3 (a negative feedback factor) protein level.

  • Acupuncture regulates the aging-related changes in gene profile expression of the hippocampus in senescence-accelerated mouse (SAMP10).

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    Abstract Title:

    Acupuncture regulates the aging-related changes in gene profile expression of the hippocampus in senescence-accelerated mouse (SAMP10).

    Abstract Source:

    Neurosci Lett. 2006 May 15;399(1-2):11-6. Epub 2006 Mar 3. PMID: 16516385

    Abstract Author(s):

    Xiaorong Ding, Jianchun Yu, Tao Yu, Yu Fu, Jingxian Han

    Article Affiliation:

    Acupuncture and Moxibustion Research Institute, The First Teaching Hospital of Tianjin University of Traditional Chinese Medicine, 314 West Anshan Avenue, Tianjin 300193, China. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    To examine molecular events in hippocampus associated with aging and acupuncture effect, we employed cDNA arrays providing data of 588 genes to define transcriptional patterns. Male 8-month-old SAMP10 and its homologous SAMRl were selected and randomly divided into four groups: R1 control group (Rc), P10 control group (Pc), P10 acupuncture group (Pa) and P10 non-acupoint group (Pn). The points consisted Shanzhong (CV17), Zhongwan (CV12), Qihai (CV6), Zusanli (ST36) and Xuehai (SP10). In Pa, we found that points stimuli could completely or partly reverse some genes expression profiles in hippocampus with aging. Simultaneously, some genes not related with brain aging were affected by acupuncture as well. Meanwhile, non-acupoint had some effect on aging-unrelated genes expression and little or negative effect on aging-related genes. We verified array results with RT-PCR and Northern blotting for three genes which are related to oxidative damage closely, including Hsp84, Hsp86 and YB-1. In conclusion, acupuncture could be a potential intervention to retard molecular events with aging in mammals.

  • Acupuncture regulates the aging-related changes in gene profile expression of the hippocampus in senescence-accelerated mouse (SAMP10).

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    Abstract Title:

    Acupuncture regulates the aging-related changes in gene profile expression of the hippocampus in senescence-accelerated mouse (SAMP10).

    Abstract Source:

    Neurosci Lett. 2006 May 15;399(1-2):11-6. Epub 2006 Mar 3. PMID: 16516385

    Abstract Author(s):

    Xiaorong Ding, Jianchun Yu, Tao Yu, Yu Fu, Jingxian Han

    Article Affiliation:

    Acupuncture and Moxibustion Research Institute, The First Teaching Hospital of Tianjin University of Traditional Chinese Medicine, 314 West Anshan Avenue, Tianjin 300193, China. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    To examine molecular events in hippocampus associated with aging and acupuncture effect, we employed cDNA arrays providing data of 588 genes to define transcriptional patterns. Male 8-month-old SAMP10 and its homologous SAMRl were selected and randomly divided into four groups: R1 control group (Rc), P10 control group (Pc), P10 acupuncture group (Pa) and P10 non-acupoint group (Pn). The points consisted Shanzhong (CV17), Zhongwan (CV12), Qihai (CV6), Zusanli (ST36) and Xuehai (SP10). In Pa, we found that points stimuli could completely or partly reverse some genes expression profiles in hippocampus with aging. Simultaneously, some genes not related with brain aging were affected by acupuncture as well. Meanwhile, non-acupoint had some effect on aging-unrelated genes expression and little or negative effect on aging-related genes. We verified array results with RT-PCR and Northern blotting for three genes which are related to oxidative damage closely, including Hsp84, Hsp86 and YB-1. In conclusion, acupuncture could be a potential intervention to retard molecular events with aging in mammals.

  • Acute effects of 3G mobile phone radiations on frontal haemodynamics during a cognitive task in teenagers and possible protective value of Om chanting.

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    Abstract Title:

    Acute effects of 3G mobile phone radiations on frontal haemodynamics during a cognitive task in teenagers and possible protective value of Om chanting.

    Abstract Source:

    Int Rev Psychiatry. 2016 Jun ;28(3):288-98. Epub 2016 Jun 7. PMID: 27266893

    Abstract Author(s):

    Hemant Bhargav, Manjunath N K, Shivarama Varambally, A Mooventhan, Suman Bista, Deepeshwar Singh, Harleen Chhabra, Ganesan Venkatasubramanian, Srinivasan T M, Nagendra H R

    Article Affiliation:

    Hemant Bhargav

    Abstract:

    Mobile phone induced electromagnetic field (MPEMF) as well as chanting of Vedic mantra 'OM' has been shown to affect cognition and brain haemodynamics, but findings are still inconclusive. Twenty right-handed healthy teenagers (eight males and 12 females) in the age range of 18.25 ± 0.44 years were randomly divided into four groups: (1) MPONOM (mobile phone 'ON' followed by 'OM' chanting); (2) MPOFOM (mobile phone 'OFF' followed by 'OM' chanting); (3) MPONSS (mobile phone 'ON' followed by 'SS' chanting); and (4) MPOFSS (mobile phone 'OFF' followed by 'SS' chanting). Brain haemodynamics during Stroop task were recorded using a 64-channel fNIRS device at three points of time: (1) baseline, (2) after 30 min of MPON/OF exposure, and (3) after 5 min of OM/SS chanting. RM-ANOVA was applied to perform within- and between-group comparisons, respectively. Between-groupanalysis revealed that total scores on incongruent Stroop task were significantly better after OM as compared to SS chanting (MPOFOM vs MPOFSS), pre-frontal activation was significantly lesser after OM as compared to SS chanting in channel 13. There was no significant difference between MPON and MPOF conditions for Stroop performance, as well as brain haemodynamics. These findings need confirmation through a larger trial in future.

  • Acute exercise and mindfulness meditation on learning and memory: randomized controlled intervention📎

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    Abstract Title:

    Acute exercise and mindfulness meditation on learning and memory: randomized controlled intervention.

    Abstract Source:

    Health Promot Perspect. 2019 ;9(4):314-318. Epub 2019 Oct 24. PMID: 31777712

    Abstract Author(s):

    Malina Austin, Paul D Loprinzi

    Article Affiliation:

    Malina Austin

    Abstract:

    The purpose of this experiment was to evaluate the potential combined effects of acute exercise and mindfulness mediation on episodic memory.All data collection occurred in the authors' laboratory (January to May of 2019). In this three-arm, within-subject design, participants (N=20; M=21.6 years) completed three counterbalanced laboratory visits, including Exercise Only, Exercise + Meditation and Control. Learning and memory were assessed from a word-list task. A one-factor repeated-measures ANOVA was computed for two memory outcomes, including the learning outcome (average performance across the 6 trials) and the long-term memory recall (10-minute delay).The exercise conditions had a greater learning effect when compared to the Control visit, M= 0.68 (95% CI: 0.10, 1.25), P = 0.02. The Exercise + Memory visit had better longterm memory when compared to Exercise Only, M= 0.95 (95% CI: 0.07, 1.83), P = 0.03.The present experiment provides suggestive evidence that acute exercise may enhance learning and, when coupling acute exercise prior to encoding with meditation during early consolidation, long-term memory may be enhanced.

  • Adherence to Mediterranean diet and subsequent cognitive decline in men with cardiovascular disease.

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    Abstract Title:

    Adherence to Mediterranean diet and subsequent cognitive decline in men with cardiovascular disease.

    Abstract Source:

    Nutr Neurosci. 2020 Jan 22:1-9. Epub 2020 Jan 22. PMID: 31965911

    Abstract Author(s):

    Miri Lutski, Galit Weinstein, Shelly Ben-Zvi, Uri Goldbourt, David Tanne

    Article Affiliation:

    Miri Lutski

    Abstract:

    Evidence from recent years highlighted the importance of the Mediterranean diet for brain health. We investigated the association between adherence to Mediterranean diet and change in cognitive functions two decades later in patients with cardiovascular disease (CVD).Participants were men with a history of CVD, who previously participated in the Bezafibrate Infarction Prevention (BIP) trial between 1990 and 1997, had a food diary record, and underwent cognitive evaluations 14.6 ± 1.9 years (T1) and 19.9 ± 1.0 years after baseline (T2) as part of the BIP Neurocognitive study (= 200, mean age at 57.3 ± 6.3 years). Adherence to the Mediterranean diet was determined from the self-administered 4-day food diary record, with patients categorized into high, middle and poor levels of adherence if they received>5, 4-5 and<4 points, respectively. Cognitive function was assessed using the NeuroTrax computerized battery. Linear mixed models were applied.Among the 200 patients, 52 (26%) had poor adherence, 98 (49%) had middle adherence and 50 (25%) had high levels of adherence to the Mediterranean diet. Those categorized to the poor adherence level had poorer cognitive function at T1 compared to the other groups. Additionally, poor vs. high level of adherence was associated with a greater decline in overall cognitive performance [-score = -0.23 and 95% confidence interval (CI), -0.43;-0.04; = 0.021] and in visual spatial functions (-0.46 95% CI, -0.86;-0.06; = 0.023).This study stresses the possible role of the Mediterranean diet in men with a high vascular burden and may set the ground for future intervention to reduce their risk for cognitive decline.

  • Aerobic exercise for Alzheimer's disease: A randomized controlled pilot trial📎

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    Abstract Title:

    Aerobic exercise for Alzheimer's disease: A randomized controlled pilot trial.

    Abstract Source:

    PLoS One. 2017 ;12(2):e0170547. Epub 2017 Feb 10. PMID: 28187125

    Abstract Author(s):

    Jill K Morris, Eric D Vidoni, David K Johnson, Angela Van Sciver, Jonathan D Mahnken, Robyn A Honea, Heather M Wilkins, William M Brooks, Sandra A Billinger, Russell H Swerdlow, Jeffrey M Burns

    Article Affiliation:

    Jill K Morris

    Abstract:

    BACKGROUND:There is increasing interest in the role of physical exercise as a therapeutic strategy for individuals with Alzheimer's disease (AD). We assessed the effect of 26 weeks (6 months) of a supervised aerobic exercise program on memory, executive function, functional ability and depression in early AD.

    METHODS AND FINDINGS:This study was a 26-week randomized controlled trial comparing the effects of 150 minutes per week of aerobic exercise vs. non-aerobic stretching and toning control intervention in individuals with early AD. A total of 76 well-characterized older adults with probable AD (mean age 72.9 [7.7]) were enrolled and 68 participants completed the study. Exercise was conducted with supervision and monitoring by trained exercise specialists. Neuropsychological tests and surveys were conducted at baseline,13, and 26 weeks to assess memory and executive function composite scores, functional ability (Disability Assessment for Dementia), and depressive symptoms (Cornell Scale for Depression in Dementia). Cardiorespiratory fitness testing and brain MRI was performed at baseline and 26 weeks. Aerobic exercise was associated with a modest gain in functional ability (Disability Assessment for Dementia) compared to individuals in the ST group (X2 = 8.2, p = 0.02). There was no clear effect of intervention on other primary outcome measures of Memory, Executive Function, or depressive symptoms. However, secondary analyses revealed that change in cardiorespiratory fitness was positively correlated with change in memory performance and bilateral hippocampal volume.

    CONCLUSIONS:Aerobic exercise in early AD is associated with benefits in functional ability. Exercise-related gains in cardiorespiratory fitness were associated with improved memory performance and reduced hippocampal atrophy, suggesting cardiorespiratory fitness gains may be important in driving brain benefits.

    TRIAL REGISTRATION:ClinicalTrials.gov NCT01128361.

  • Aerobic Exercise Sustains Performance of Instrumental Activities of Daily Living in Early-Stage Alzheimer Disease.

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    Abstract Title:

    Aerobic Exercise Sustains Performance of Instrumental Activities of Daily Living in Early-Stage Alzheimer Disease.

    Abstract Source:

    J Geriatr Phys Ther. 2017 Dec 28. Epub 2017 Dec 28. PMID: 29286983

    Abstract Author(s):

    Eric D Vidoni, Jaime Perales, Mohammed Alshehri, Abdul-Mannaan Giles, Catherine F Siengsukon, Jeffrey M Burns

    Article Affiliation:

    Eric D Vidoni

    Abstract:

    BACKGROUND AND PURPOSE:Individuals with Alzheimer disease (AD) experience progressive loss of independence-performing activities of daily living. Identifying interventions to support independence and reduce the economic and psychosocial burden of caregiving for individuals with AD is imperative. The purpose of this analysis was to examine functional disability and caregiver time in individuals with early-stage AD.

    METHODS:This was a secondary analysis of a randomized controlled trial of 26 weeks of aerobic exercise (AEx) versus stretching and toning (ST). We measured functional dependence using the Disability Assessment for Dementia, informal caregiver time required using the Resources Utilization in Dementia Lite, and cognition using a standard cognitive battery.

    RESULTS:We saw a stable function in the AEx group compared with a significant decline in the ST group (4%; F = 4.2, P = .04). This was especially evident in more complex, instrumental activities of daily living, with individuals in the AEx group increasing 1% compared with an 8% loss in the ST group over 26 weeks (F = 8.3, P = .006). Change in memory was a significant predictor of declining instrumental activities of daily living performance (r = 0.28, 95% confidence interval = 0.08∞, P = .01). Informal caregiver time was not different between the AEx and ST groups.

    CONCLUSIONS:Our analysis extends recent work by revealing specific benefits for instrumental activities of daily living for individuals in the early stages of AD and supports the value of exercise for individuals with cognitive impairment.

  • Aerobic Physical Exercise as a Neuroprotector Strategy for Ethanol Binge-Drinking Effects in the Hippocampus and Systemic Redox Status in Rats📎

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    Abstract Title:

    Aerobic Physical Exercise as a Neuroprotector Strategy for Ethanol Binge-Drinking Effects in the Hippocampus and Systemic Redox Status in Rats.

    Abstract Source:

    Oxid Med Cell Longev. 2019 ;2019:2415243. Epub 2019 Jul 4. PMID: 31354903

    Abstract Author(s):

    Dinair Pamplona-Santos, Kátia Lamarão-Vieira, Priscila C Nascimento, Leonardo Oliveira Bittencourt, Márcio G Corrêa, Savio M Dos Santos, Sabrina C Cartágenes, Luanna Melo Pereira Fernandes, Marta C Monteiro, Cristiane S F Maia, Rafael Rodrigues Lima

    Article Affiliation:

    Dinair Pamplona-Santos

    Abstract:

    The heavy and episodic EtOH drinking pattern, equivalent to weekend consumption, characterizes the binge-drinking pattern and promotes a misbalance of encephalic metabolic functions, concurring to neurodegeneration and cerebral dysfunction. And for being a legal drug, it has global public health and social relevance. In this way, we aimed to investigate the effects of physical training, in a treadmill, on the deleterious effects of EtOH on hippocampal functions, related to memory and learning. For this, we used 40 Wistar rats, divided into four groups: Control group, Trained group (trained animals with doses of distilled water), EtOH group (nontrained animals with doses of 3 g/kg/day of EtOH, 20%/), and Trained+EtOH group (trained animals exposed to EtOH). The physical exercise was performed by running on a treadmill for 5 days a week for 4 weeks, and all doses of EtOH were administered through intragastric gavage in four repeated cycles of EtOH in binge. After the experimental period, the animals were submitted to the object recognition task and Morris water maze test, and after being euthanized, the blood and hippocampus were collected for Trolox Equivalent Antioxidant Capacity (TEAC), Reduced Glutathione Content (GSH), and Nitrite and Lipid Peroxidation (LPO) level measurements. Our results showed that EtOH caused marked oxidative stress and mnemonic damage, and the physical exercise promoted neuroprotective effects, among them, the modulation of oxidative biochemistry in plasma (by restoring GSH levels) and in the hippocampus (by reducing LPO levels and increasing antioxidant parameters) and cognitive function improvement. Therefore, physical exercise can be an important prophylactic and therapeutic tool in order to ameliorate and even prevent the deleterious effects of EtOH on cognitive functions.

  • Ameliorative effect of a combination of vitamin E, vitamin C, alpha-lipoic acid and stilbene resveratrol on lindane induced toxicity in mice olfactory lobe and cerebrum.

    Abstract Title:

    Ameliorative effect of a combination of vitamin E, vitamin C, alpha-lipoic acid and stilbene resveratrol on lindane induced toxicity in mice olfactory lobe and cerebrum.

    Abstract Source:

    Indian J Exp Biol. 2010 Feb;48(2):150-8. PMID: 20455324

    Abstract Author(s):

    Mehajbeen Bano, Devendra Kumar Bhatt

    Article Affiliation:

    This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Acute dose of lindane (40 mg/kg body weight, ip) caused significant reduction in butyrylcholinesterase (BChE) activity both in olfactory lobe and cerebrum of mice along with reduction in catalase (CAT), total protein and elevation in superoxide dismutase (SOD) and cholesterol contents. Pretreatment by a combination of antioxidants, vitamin E, vitamin C, a- lipoic acid and stilbene resveratrol (125 mg/kg body weight, ip) significantly augment the altered level of BChE and protect the other parameters in both the brain regions. The results were adequately in agreement with the histochemical findings, suggesting the neuroprotective efficacy of combination of antioxidants studied on the lindane induced neurotoxicity.

  • Anticonvulsant and neuroprotective effects of the ketogenic diet

    Abstract Title:

    [Anticonvulsant and neuroprotective effects of the ketogenic diet].

    Abstract Source:

    Przegl Lek. 2010;67(3):205-12. PMID: 20687386

    Abstract Author(s):

    Tomasz Choragiewicz, Iwona Zarnowska, Maciej Gasior, Tomasz Zarnowski

    Article Affiliation:

    Katedra i Klinika Okulistyki, Uniwersytet Medyczny, Lublin. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Ketogenic diet has been used in treating epilepsy for more than 80 years. It is based on a drastic change of proportions in the consumption of carbohydrates, proteins and fats. In everyday diet we consume approximately 34 per cent of fats, 50 per cent of carbohydrates and 14 per cent of proteins. While ketogenic diet consists in 80-90 per cent of fats and in 10-20 per cents of carbohydrates and proteins together. Despite its indisputable effectiveness, the functioning of the ketogenic diet has not been explained. It seems that its functioning mechanism is unique and results from a number of chronic metabolic changes as well as the adaptation in the cenral nervous system that occurs during its long-term application. The most recent clinical and experimental data suggest that the ketogenic diet also has neuroprotective properties, which makes it a useful alternative therapeutic method in the modification of the natural history of the diseases related with neurodegeneration processes.

  • Antidepressant-like and pro-neurogenic effects of physical exercise: the putative role of FNDC5/irisin pathway.

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    Abstract Title:

    Antidepressant-like and pro-neurogenic effects of physical exercise: the putative role of FNDC5/irisin pathway.

    Abstract Source:

    J Neural Transm (Vienna). 2020 Jan 23. Epub 2020 Jan 23. PMID: 31974720

    Abstract Author(s):

    Aline Siteneski, Gislaine Olescowicz, Francis L Pazini, Anderson Camargo, Daiane B Fraga, Patricia S Brocardo, Joana Gil-Mohapel, Mauricio P Cunha, Ana Lúcia S Rodrigues

    Article Affiliation:

    Aline Siteneski

    Abstract:

    Physical exercise has been shown to exert antidepressant effects, but the mechanisms underlying this effect are not completely elucidated. Therefore, we aimed at investigating the antidepressant, pro-neurogenic, and neuroprotective effects of physical exercise and the possible role of FNDC5/irisin for this effect. Treadmill running was used as a protocol of physical exercise (45 min/day/5 days/week for 4 weeks) in female Swiss mice. Immobility time was registered in the tail suspension test (TST) and forced swim test (FST). Immunohistochemical analyses to evaluate hippocampal cell proliferation, neuronal survival, and neuronal commitment and maturation, as well as expression of FNDC5 C-terminal fragment were performed in the entire, dorsal, and ventral dentate gyrus (DG) of the hippocampus. Fluoro-Jade B staining was performed to evaluate degenerating neurons in DG. FNDC5 C-terminal and FNDC5/irisin immunocontents were analyzed by western blot. Exposure to physical exercise reduced the immobility time both in the TST and the FST. This antidepressant-like effect was accompanied by an increase in hippocampal cell proliferation, hippocampal neuronal differentiation, and neuronal survival in the dorsal and ventral DG. Fluoro-Jade B staining was reduced in entireand dorsal DG in exercised mice. Finally, physical exercise also resulted in increased number of FNDC5-positive cells in the hippocampal DG as well as elevated FNDC5 C-terminal and FNDC5/irisin immunocontent in the entire hippocampus. The results suggest that the FNDC5 C-terminal fragment/irisin pathway may be implicated in the antidepressant-like, pro-neurogenic, and neuroprotective effects of treadmill running.

  • Antioxidant action of grape seed polyphenols and aerobic exercise in improving neuronal number in the hippocampus is associated with decrease in lipid peroxidation and hydrogen peroxide in adult and middle-aged rats.

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    Abstract Title:

    Antioxidant action of grape seed polyphenols and aerobic exercise in improving neuronal number in the hippocampus is associated with decrease in lipid peroxidation and hydrogen peroxide in adult and middle-aged rats.

    Abstract Source:

    Exp Gerontol. 2018 Jan ;101:101-112. Epub 2017 Nov 22. PMID: 29174497

    Abstract Author(s):

    S Abhijit, Sunil Jamuna Tripathi, V Bhagya, B S Shankaranarayana Rao, Muthangi V Subramanyam, S Asha Devi

    Article Affiliation:

    S Abhijit

    Abstract:

    The present study explored the effects of swimming training and grape seed proanthocyanidin extract (GSPE) on neuronal survival in the hippocampus (HC) of middle-aged rats along with oxidative stress (OS) parameters. Further, the bioavailability of the GSPE, catechin, epicatechin and gallic acid were measured in the HC and plasma. Male Wistar rats were grouped into: sedentary control, SE-C; swimming trained, SW-T; SE-C, supplemented sedentary, SE-C(PA) and swimming trainees, SW-T(PA). The supplement was a daily dose of 400mg GSPE/kg body weight. Swimming training lasted for 2h/day and for 14weeks. Glutathione level was increased in response to single and combined interventions in the middle-aged rats. Adult trainees showed increased glutathione peroxidase activity unlike middle-aged wherein increase was seen in SE-C(PA) alone. Lowered catalase activity with age in the HC increased in response to the combined interventions although single interventions were also effective. HC from both ages showed decrease in lipid peroxidation and hydrogen peroxide levels in response to the interventions. GSPE constituents were seen in the HC of swimming trained middle-aged and adult rats. The study suggests that combined intervention is effective in decreasing LPO and HOgeneration in the HC. Further, the neuronal numbers and planimetric volumes of CA1 pyramidal layer was significantly reduced in middle-aged rats compared to adults. Interestingly, both interventions enhanced the numbers and volumes in adult and middle-aged rats. Thus, age-associated decrease in CA1 neurons could be restored by both the interventions. The results of the present study will help in developing effective therapies for age-associated degenerative changes and cognitive deficits.

  • Antioxidative properties of crude polysaccharides from Inonotus obliquus. 📎

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    Abstract Title:

    Antioxidative properties of crude polysaccharides from Inonotus obliquus.

    Abstract Source:

    Int J Mol Sci. 2012 ;13(7):9194-206. Epub 2012 Jul 23. PMID: 22942760

    Abstract Author(s):

    Haibo Mu, Amin Zhang, Wuxia Zhang, Guoting Cui, Shunchun Wang, Jinyou Duan

    Article Affiliation:

    Haibo Mu

    Abstract:

    The mushroom Inonotus obliquus has been widely used as a folk medicine in Russia, Poland and most of the Baltic countries. In this study, water-soluble and alkali-soluble crude polysaccharides (IOW and IOA) were isolated from I. obliquus, and the carbohydrate-rich fractions IOW-1 and IOA-1 were obtained respectively after deproteination and depigmentation. Their contents, such as neutral carbohydrate, uronic acid and protein, were measured. Their antioxidant properties against chemicals-induced reactive species (ROS) including 1,1'-Diphenyl-2-picrylhydrazyl (DPPH) radical, hydroxyl radical and superoxide anion radical, as well as their protective effects on H(2)O(2)-induced PC12 cell death were investigated. Results showed that I. obliquus polysaccharides can scavenge all ROS tested above in a dose-dependent manner. IOA and its product IOA-1 could rescue PC12 cell viability from 38.6% to 79.8% and 83.0% at a concentration of 20μg/mL. Similarly, IOW and its product IOW-1 at the same dose, can also increase cell viability to 84.9% and 88.6% respectively. The antioxidative activities of water-soluble and alkali-soluble polysaccharide constituents from I. obliquus might contribute to diverse medicinal and nutritional valuesof this mushroom.

  • Aromatic constituents from Ganoderma lucidum and their neuroprotective and anti-inflammatory activities.

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    Abstract Title:

    Aromatic constituents from Ganoderma lucidum and their neuroprotective and anti-inflammatory activities.

    Abstract Source:

    Fitoterapia. 2019 Feb 11 ;134:58-64. Epub 2019 Feb 11. PMID: 30763720

    Abstract Author(s):

    Shuang-Yang Lu, Xing-Rong Peng, Jin-Run Dong, Hui Yan, Qing-Hua Kong, Qiang-Qiang Shi, Da-Shan Li, Lin Zhou, Zhong-Rong Li, Ming-Hua Qiu

    Article Affiliation:

    Shuang-Yang Lu

    Abstract:

    Five new aromatic compounds, designed as lucidumins A-D (1-4) and lucidimine E (9), along with seven known aromatic compounds (5-8, 10-12) were isolated from Ganoderma lucidum. Their structures were determined by spectroscopic method. Bioactive evaluation showed that compounds 2-4 and 6-10 displayed remarkable neuroprotective activities against corticosterone-induced PC12 cell damage, with the cell viability ranging from 69.99% to 126.00%; and compounds 1-4, 9 and 10 exhibited significant anti-inflammatory activities against LPS-induced nitric oxide (NO) production in RAW264.7 macrophages, with ICvalues ranging from 4.68 to 15.49 μM. In particular, compound 10 showed remarkable neuroprotection with ECvalue of 2.49 ± 0.12 μM, and potent anti-inflammation with ICvalue of 4.68 ± 0.09 μM.

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