Showing posts with label rickets. Show all posts
Showing posts with label rickets. Show all posts

Saturday, 29 November 2014

NICE does increasing access to vitamin D supplements

If you happen to live in England or indeed other parts of the UK, you'll no doubt have heard about NICE - the National Institute for Health and Care Excellence - as the body charged with providing us with appropriate evidence-based guidance on all manner of treatments and technologies for all manner of different diagnoses and conditions. I've talked before on this blog about the NICE guidance in relation to the autism spectrum (see here for example).
My name is Elisabeth Shaw,
last survivor of the Prometheus.

Well, after turning it's clinical eye to the sunshine vitamin/hormone (vitamin D), NICE has at last provided some guidance on this matter with a view to increasing access to vitamin D supplements as a means to help tackle some pretty frightening figures with regards to the prevalence of vitamin D deficiency. The full guidance can be seen here and some media coverage can be viewed here.

A quick look over the list of people for whom this guidance might be relevant (children under 5, pregnant and breastfeeding women, people over 65, people who have low or no exposure to the sun, people with darker skin) reveals that quite a large chunk of the population might benefit from supplementation or increased access to supplementation. Certainly, quite a few people living at my latitude - bearing in mind latitude might not the only factor influencing vitamin D production [1] - might benefit from a daily vitamin D supplement, if only at specific times of the year.

I'll freely admit that even with some scientific doubts remaining about vitamin D supplementation impacting on health and wellbeing outside of just preventing rickets, I'm a bit of a fan of further research into the other manifestations potentially linked to vitamin D insufficiency or deficiency. As if to prove a point, below are a few links to previous posts where relationships have been discussed bearing in mind the old adage: correlation is not the same as causation...




I close with a quote from NICE on this issue: "NICE recommends making low cost vitamin D supplements widely available to people at risk of deficiency." I struggle to disagree.

Music to close... and especially for one of my brood: Girlfriend in a Coma. As for my indulgence, the first trailer for Star Wars VII just in case you haven't seen it yet. I have a gut feeling that it's gonna be a bit of classic...

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[1] Lucas RM. et al. Vitamin D status: multifactorial contribution of environment, genes and other factors in healthy Australian adults across a latitude gradient. J Steroid Biochem Mol Biol. 2013 Jul;136:300-8.

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ResearchBlogging.org Lucas RM, Ponsonby AL, Dear K, Valery PC, Taylor B, van der Mei I, McMichael AJ, Pender MP, Chapman C, Coulthard A, Kilpatrick TJ, Stankovich J, Williams D, & Dwyer T (2013). Vitamin D status: multifactorial contribution of environment, genes and other factors in healthy Australian adults across a latitude gradient. The Journal of steroid biochemistry and molecular biology, 136, 300-8 PMID: 23395985

Monday, 3 March 2014

Vitamin D and autism: a continuing saga

The "sunshine vitamin" that is vitamin D has cropped up quite a few times on this blog for all manner of reasons. The suggestion of a link (whatever that means) between vitamin D and the autism spectrum conditions has received the lion's share of coverage, be that in relation to measured levels of vitamin D (see here and see here) or more speculatively, the possible impact of something like deficiency of vitamin D to symptoms or physiology (see here and see here). I've also not been adverse to talking about the 'D' in relation to other conditions or states either (see here and see here).
Monet at dusk @ Wikipedia

Without trying to do a Linus Pauling on vitamin D [bearing in mind the pendulum potentially swinging partially his way], I am genuinely interested in how this stuff might show some connection to a condition like autism. Further, whether the reports of deficiency (as they invariably tend to show) reflect something important for core symptoms, or are tied into specific comorbidity [1] or are just purely epiphenomenal and reflective of a more widespread population deficiency [2]. A few papers add to my interest in this area, specifically from Dr John Cannell who heads the non-profit Vitamin D Council based in the US. For those of you who have started to use PubMed Commons, Dr Cannell is certainly putting this post-publication review option to very good use.

So, first up is the paper from Grant & Cannell [3] (open-access here) which looked at US autism prevalence estimates for 2010 "with respect to indices of solar UV-B (UVB) doses" according to state. Based on an analysis of prevalence estimates for autism coupled to variables such as ethnicity and geographical latitude, time of year and solar UVB doses, the authors concluded that "autism prevalence among those aged 6–17 y in 2010 was significantly inversely correlated with solar UVB doses". Further, they speculate about the effects of maternal vitamin D deficiency as a potentially important issue when it comes to offspring autism risk. There was some other media interest in these results at the time of publication in 2012.

Obviously I don't need to point out that this was a number-crunching paper which relies on a statistical association so one has to be quite careful of making too much of the findings. Yes, the authors looked at "other possible risk-modifying factors" such as air pollution (see here) and obesity (see here) but one needs always to be cautious when it comes to correlation (as in, not necessarily equalling causation). That also other researchers have downplayed the maternal vitamin D - offspring autism, sorry autistic traits, link (see here) is also important. Me being me though, I'm still interested in the Grant/Cannell findings, particularly when one considers that not-so-long-ago paper which looked at ADHD prevalence and solar intensity and the growing realisation that autism is probably not a stand-alone condition in terms of comorbidity.

Next up, another paper from Cannell & Grant [4] (open-access here) which is a rather more review type paper on the various biological processes which vitamin D is reported to be involved with and how these might link into autism. I'm not going to rehash the paper in its entirety because it is open-access. That being said, there are some familiar themes contained in the review - autoimmunity, mitochondrial issues, etc - which are all potentially important issues to at least some of the autisms. Picking out one detail however, which fell under the heading 'Comorbid Conditions' I was struck by the discussion about adiponectin levels with autism and vitamin D levels in mind. It may be a slightly off-the-wall thought but given mention of this adipokine and my recent interest in elevated leptin levels being reported in a fair few cases of autism I couldn't help but wonder whether there may be further investigations to be had on an effect of vitamin D in relation to leptin elevations [5] with an autism slant.

What I think is worth taking from these papers and the growing scientific interest in vitamin D and autism including that related to the issue of ethnicity and autism (see here) recently illustrated in the Somali-autism initiative, is that there is still much to do in this area of autism research. That vitamin D deficiency does seem to be an issue for some people with autism [6] should already imply that deficiency should be corrected, save any of the more classical problems coming about as a result [7].

Whether the effects of vitamin D extend further into autism and in particular, the presentation of autism or its suggested biological profile (see here for example), is something I'd like to see more on, with the promise of some potential answers already on the research horizon (see here and see here). Oh, and I should also mention the recent papers by Zhang and colleagues [8] and Patrick & Ames [9] too...

Smartphone vitamin D analysis anyone?

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[1] Anglin RE. et al. Vitamin D deficiency and depression in adults: systematic review and meta-analysis. Br J Psychiatry. 2013 Feb;202:100-7.

[2] Davies JH. et al. Epidemiology of vitamin D deficiency in children presenting to a pediatric orthopaedic service in the UK. J Pediatr Orthop. 2011 Oct-Nov;31(7):798-802.

[3] Grant WB. & Cannell JJ. Autism prevalence in the United States with respect to solar UV-B doses: An ecological study. Dermatoendocrinol. 2013 Jan 1;5(1):159-64.

[4] Cannell JJ. & Grant WB. What is the role of vitamin D in autism? Dermatoendocrinol. 2013 Jan 1;5(1):199-204.

[5] Long J. et al. 1,25-Dihydroxyvitamin D3 upregulates leptin expression in mouse adipose tissue. J Endocrinol. 2013 Jan 18;216(2):265-71.

[6] Duan XY. et al. Relationship between vitamin D and autism spectrum disorder. Zhongguo Dang Dai Er Ke Za Zhi. 2013 Aug;15(8):698-702.

[7] Stewart C. & Latif A. Symptomatic nutritional rickets in a teenager with autistic spectrum disorder. Child Care Health Dev. 2008 Mar;34(2):276-8.

[8] Zhang M. et al. Do children with mental disorders have higher prevalence of hypovitaminosis D? F1000Res. 2013 Jul 17;2:159.

[9] Patrick RP. & Ames BN. Vitamin D hormone regulates serotonin synthesis. Part 1: relevance for autism. FASEB J. 2014 Feb 20

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ResearchBlogging.org Grant WB, & Cannell JJ (2013). Autism prevalence in the United States with respect to solar UV-B doses: An ecological study. Dermato-endocrinology, 5 (1), 159-64 PMID: 24494049