CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Scurvy

  • A rare presentation of an ancient disease: scurvy presenting as orthostatic hypotension📎

    Abstract Title:

    A rare presentation of an ancient disease: scurvy presenting as orthostatic hypotension.

    Abstract Source:

    BMJ Case Rep. 2014 ;2014. Epub 2014 May 23. PMID: 24859547

    Abstract Author(s):

    Jonathan Samuel Zipursky, Ahmad Alhashemi, David Juurlink

    Article Affiliation:

    Jonathan Samuel Zipursky

    Abstract:

    A 49-year-old man presented to hospital with severe orthostatic hypotension, gingival dysplasia and a purpuric rash involving his extremities. The orthostatic hypotension failed to respond to fluids and, on the basis of physical examination and dietary history, the patient was given a preliminary diagnosis of scurvy (ascorbic acid deficiency). Serum ascorbic acid levels were undetectable and the orthostasis was resolved within 24 h of ascorbic acid replacement. The pathogenesis of orthostatic hypotension in the setting of scurvy appears to involve impaired catecholamine synthesis and attenuated vasomotor response to α-adrenergic stimulation. We believe that this case describes a rare presentation of scurvy and highlightsa previously under-reported connection between scurvy and vasomotor instability.

  • Arginine, scurvy and Cartier's "tree of life". 📎

    Abstract Title:

    Arginine, scurvy and Cartier's "tree of life".

    Abstract Source:

    J Ethnobiol Ethnomed. 2009;5:5. Epub 2009 Feb 2. PMID: 19187550

    Abstract Author(s):

    Don J Durzan

    Article Affiliation:

    Department of Plant Sciences, University of California MS 6, One Shields Ave, Old Davis Rd, Davis, CA 95616, USA. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    Several conifers have been considered as candidates for "Annedda", which was the source for a miraculous cure for scurvy in Jacques Cartier's critically ill crew in 1536. Vitamin C was responsible for the cure of scurvy and was obtained as an Iroquois decoction from the bark and leaves from this "tree of life", now commonly referred to as arborvitae. Based on seasonal and diurnal amino acid analyses of candidate "trees of life", high levels of arginine, proline, and guanidino compounds were also probably present in decoctions prepared in the severe winter. The semi-essential arginine, proline and all the essential amino acids, would have provided additional nutritional benefits for the rapid recovery from scurvy by vitamin C when food supply was limited. The value of arginine, especially in the recovery of the critically ill sailors, is postulated as a source of nitric oxide, and the arginine-derived guanidino compounds as controlling factors for the activities of different nitric oxide synthases. This review provides further insights into the use of the candidate "trees of life" by indigenous peoples in eastern Canada. It raises hypotheses on the nutritional and synergistic roles of arginine, its metabolites, and other biofactors complementing the role of vitamin C especially in treating Cartier's critically ill sailors.

  • The genetics of vitamin C loss in vertebrates. 📎

    Abstract Title:

    The genetics of vitamin C loss in vertebrates.

    Abstract Source:

    Curr Genomics. 2011 Aug ;12(5):371-8. PMID: 22294879

    Abstract Author(s):

    Guy Drouin, Jean-Rémi Godin, Benoît Pagé

    Article Affiliation:

    Département de Biologie et Centre de Recherche Avancée en Génomique Environnementale, Université d'Ottawa, Ottawa, Ontario, K1N 6N5, Canada.

    Abstract:

    Vitamin C (ascorbic acid) plays important roles as an anti-oxidant and in collagen synthesis. These important roles, and the relatively large amounts of vitamin C required daily, likely explain why most vertebrate species are able to synthesize this compound. Surprisingly, many species, such as teleost fishes, anthropoid primates, guinea pigs, as well as some bat and Passeriformes bird species, have lost the capacity to synthesize it. Here, we review the genetic bases behind the repeated losses in the ability to synthesize vitamin C as well as their implications. In all cases so far studied, the inability to synthesize vitamin C is due to mutations in the L-gulono-γ-lactone oxidase (GLO) gene which codes for the enzyme responsible for catalyzing the last step of vitamin C biosynthesis. The bias for mutations in this particular gene is likely due to the fact that losing it only affects vitamin C production. Whereas the GLO gene mutations in fish, anthropoid primates and guinea pigs are irreversible, some of the GLO pseudogenes found in bat species have been shown to be reactivated during evolution. The same phenomenon is thought to have occurred in some Passeriformes bird species. Interestingly, these GLO gene losses and reactivations are unrelated to the diet of the species involved. This suggests that losing the ability to make vitamin C is a neutral trait.

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