thumb sucking and immunity
another
microbiome article (i realize this is the third in a series of two, but can't
help myself). This one looked at the "hygiene hypothesis", which is
basically that kids exposed to more microbes early in life have fewer
allergies or asthma. this article looked at thumb-sucking, nail-biting and
atopic sensitization, also finding that the more the fingers went into the
mouth, the fewer had atopic sensitization (see asthma thumbsucking peds2016 in dropbox, or DOI: 10.1542/peds.2016-0443).
Details:
--the
Dunedin Multidisciplinary Heath and Development Study, a population-based birth
cohort study of 1037 people (52% male) born in Dunedin (the second largest city
in the South Island of New Zealand with 120,000 inhabitants), with followup at
ages 3,5,7,9,11,13,15,18,21,26,32, and 38
--at
age 5,7,9,11 the parents were asked about the kid's thumb-sucking and
nail-biting, along with an estimate of frequency
--skin-prick
testing was done at age 13 on 724 of the 1031 kids (70%), including testing for
house dust mites, grass, cat, dog, horse, aspergillus, penicillium, and a few
others; a positive test was a wheal >2mm larger than the negative saline
control
--detailed
respiratory reviews were done since age 9
--the
researchers controlled for potential confounders of sex and parental history
for asthma or hayfever; breastfeeding; exposure to cat or dog in childhood (a
prior analysis of this cohort showed that this exposure led to lower risk of
atopic sensitization); parental smoking history, household crowding (total
number of kids divided by number of rooms), socioeconomic status
Results:
--overall 31%
of children were frequent thumb-suckers or nail-biters at age >1yo
--nail-biting
or thumb-sucking were each found in 20% of girls and 17% of boys
--incidence
of atopy:
--atopic
sensitization in 38% of girls/52% of boys age 13; 58% of girls/61% of boys at
age 32
--asthma in 10% of girls/16% of
boys age 13; 18% of girls/18% of boys at age 32
--hayfever in 28% of girls/32%
of boys age 13; 42% of girls/37% of boys at age 32
--for atopic sensitization, as compared to those without
thumb-sucking or nail-biting:
--at
age 13:
--there
was an adjusted 36% lower likelihood of atopic sensitization: OR 0.64
(0.45-0.90) for either thumb-sucking or nail-biting
--a
36% lower likelihood if only thumb-sucking, OR
0.64 (0.42-0.97)
--a
30% lower likelihood if only nail-biting, OR 0.70 (0.47-1.10), nonsignificant
--at
age 32:
--there was
a 38% adjusted lower likelihood of atopic sensitization: OR 0.62
(0.45-0.86) for either thumb-sucking or nail-biting
--a 31% lower likelihood if only
thumb-sucking, OR 0.69 (0.47-1.00), borderline significant
--a
29% lower likelihood if only nail-biting, OR 0.71 (0.49-1.02),
nonsignificant
--the only significant
difference for specific allergens was for house dust mites in those aged 32,
though all of the others had trends that were almost significant
--for asthma or hayfever:
--none were significantly associated, at
either ages 13 or 32
--a dose-response curve (doing both thumb-sucking and nail-biting
vs either one of them) was only evident at age 13
Commentary:
--this study further supports the "hygiene hypothesis",
though it was notable that the dramatic difference in atopy was only in the
objective measurement of sensitization (but, one might argue that these
clinical manifestations of atopy are what really matters....). why not with
asthma or hayfever?
--is it just that these were by report and therefore
less "reliable" than the objective measure of atopic sensitization?
--asthma, also, is more complicated, given that
atopy is only part of the issue playing into it
--or, my guess, is that they were looking at kids who
were already too old (there were no data on thumb-sucking and nail-biting
during the preschool years), that immune tolerance largely develops earlier in
life, and other studies showing a relationship between “hygiene” and atopic
conditions (eg hayfever or asthma) included much younger children (see blogs
listed below)
--the study does support the results of a prior study finding that
in kids using pacifiers, there seemed to be fewer allergies later in life when
the mothers sucked the pacifiers to clean them
--the proposed mechanism here is that exposure to bacteria and
other microorganisms early changes the gut microbiome (and, see blog below
about the respiratory microbiome); and the microbiome can change the
function of helper T cell (TH) subsets, increasing the helper T cell
type 1 (TH-1, which produce interferon-g, IL-2, TNF-b and leads to
cell-mediated immunity) and decreasing helper T cell type 2 (TH-2, which
produces a slew of interleukins which lead to strong antibody responses), with
these changes promoting the development of immune tolerance to allergen
exposures.
--but overall this study does support the concept that early
exposure to some microbes leads to more immune tolerance. and thumb-sucking or
nail-biting certainly increases exposure to a diverse variety of microbes.
see http://gmodestmedblogs.blogspot.com/2015/10/gi-microbiome-in-little-kids-and.html which is a Canadian longitudinal study finding that early infancy microbiome changes increase the risk of childhood asthma; or http://gmodestmedblogs.blogspot.com/2014/06/asthma-and-early-exposure-to-allergens.html which looks at 4 US cities and similarly finding that early allergen exposure leads to more asthma
there was a blog i sent out 8/27/2014 (which did not make it into the BMJ blogs) which looked at the lung microbiome, showing that diet leads to changes in the TH1 and TH2 cells in the lung itself (ie, there is more than one microbiome, not just the gut one). for the article, see asthma microbiome nature medicine 2014 in the dropbox, or doi:10.1038/nm.3444. With regards to asthma: there is evidence of increased prevalence of chlamydia and mycoplasma with asthma exacerbations. Also, the respiratory microbiome is different in asthmatic vs nonasthmatic patients, even in asymptomatic asthmatic patients, with abundance of Proteobacteria. There is also some evidence that airway hyperresponsiveness tracks with bacterial diversity and composition (esp increase in Proteobacteria).
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