Showing posts with label genetics. Show all posts
Showing posts with label genetics. Show all posts

Friday, November 4, 2022

COVID-19: vaccines and infections

Personalized, precise and predictive vaccinology's holy grail is to anticipate immune response for every individual, depending on their genetic background and all other factors that may impact vaccine immunogenicity, efficacy, and safety.

The high expense of comprehensive genomic and immune-profiling tests, however, prohibits their routine use and this disproportionally affects underserved populations.

A new paper reports preliminary results of an ongoing study of COVID-19 vaccination in geographic neighborhoods and online health support groups. Due to innovative recruitment and monitoring strategies, the study has the largest representation of active "oldest old" - individuals aged 80 or older - than all other trials with diverse age groups. 

Despite widespread belief of a biphasic pattern for the frequency of systemic adverse events post-vaccination (VAEs), the paper reports statistically significant differences in the incidence of VAEs for both younger and 80+ populations when compared to those in the 60-69 and 70-79 age brackets. The subtypes of adverse events in younger and older populations are different. This short paper groups post-vaccination events in three types: "No or minimal VAEs", and short- or long-term reactions that significantly impacted activities of daily living.    

The paper suggests genetic origin for some adverse reactions. Scientists have only just begun to look into genetics of less common VAEs. HLA-A∗03:01 (contributing to low risk of severe COVID-19) was recently found to be associated with increased risk of stronger side effects (including fever and chills) from Pfizer-BioNTech COVID-19 vaccination. In another recent study, HLA-DQB1*06 alleles were found to protect from breakthrough infection during the ancestral SARS-CoV-2 virus and subsequent Alpha-variant waves compared with non-carriers. Hopefully, more studies will follow. 


REFERENCE

Gabashvili IS. The Incidence and Effect of Adverse Events Due to COVID-19 Vaccines on Breakthrough Infections: Decentralized Observational Study With Underrepresented Groups. JMIR Form Res. 2022 Nov 4;6(11):e41914. doi: 10.2196/41914. PMID: 36309347.

Current Impact score of the journal is: 2.38 (Resurchify)

JMIR Formative Research has been accepted for the Web of Science: Emerging Sources Citation Index. The journal will receive a Journal Impact Factor in 2023. 

Saturday, December 26, 2020

Genes and microbes

The body’s assortment of microorganisms depends on what we eat, drugs we take, the stress we are subjected to and the environment we interact with (eg, the infamous SARS-CoV-2 virus). Yet genes also have their say.

In a study of 977 twins in UK, the most heritable taxonomic group of bacteria was found to be Christensenellaceae (Goodrich et al, 2014). These bacteria is present in higher amounts in genetically-lean individuals. It encourages growth of other microbes connected to body weight and energy conservation such as methanogenic Archaea.

A study of over 1500 healthy individuals in Canada (Turpin et al, 2016), associated another abundant bacteria Faecalibacterium with immune system gene CNTN6 (rs1394174), and linked several other genes and bacteria of minor clinical importance (rs59846192 of DMRTB1 - Lachnospira, rs28473221 of SALL3 - Eubacterium, ), rs62171178 nearest UBR3 - Rikenellaceae).

A new paper posted this month on BioRxiv, reports results of a larger genome-wide association study performed for 7,738 individuals from the northern Netherlands.

The authors investigated 5.5 million common genetic variants using linear mixed models on hundreds of bacterial groups and pathways. Potential confounders such as medication usage, anthropometric data and stool characteristics were carefully considered along with dietary information. 

The strongest associations were identified in intronic regions of genes. In particular, between rs182549 in intronic region of the MCM6 gene and Bifidobacteria. This SNP was found to be responsible for lactose intolerance in European population. And so was Bifidobacteria - the most researched and most effective probiotic against lactose intolerance.

Another interesting microbe Collinsella and its family Coriobacteriaceae, associated with rheumatoid arthritis, cholesterol metabolism and leaky gut, was linked to several SNPs regulating genes responsible for the blood group antigens. Blood types does matter. 

Genetic factors might influence our preferences of vegetables, fruit, starchy foods, meat, fish, dairy and snacks. The Dutch study confirmed an earlier finding that rs642387, a genetic variation near genes influencing brain function, is linked to microbial family Rikenellaceae. The paper found that these bacteria, when present in large numbers in the gut, led to decreased consumption of salt. They also showed that an increase in the bacterial pathway of histidine degradation led to increased intake of processed meat.

The paper provides a wealth of information and comes with a lot of supplementary material.



REEFERENES

Goodrich JK, Waters JL, Poole AC, Sutter JL, Koren O, Blekhman R, Beaumont M, Van Treuren W, Knight R, Bell JT, Spector TD. Human genetics shape the gut microbiome. Cell. 2014 Nov 6;159(4):789-99. 

Turpin W, Espin-Garcia O, Xu W, Silverberg MS, Kevans D, Smith MI, Guttman DS, Griffiths A, Panaccione R, Otley A, Xu L. Association of host genome with intestinal microbial composition in a large healthy cohort. Nature genetics. 2016 Nov;48(11):1413.

Lopera-Maya EA, Kurilshikov A, van der Graaf A, Hu S, Andreu-Sánchez S, Chen L, Vila AV, Gacesa R, Sinha T, Collij V, Klaassen MA. Effect of host genetics on the gut microbiome in 7,738 participants of the Dutch Microbiome Project. bioRxiv. 2020 Jan 1.

Saturday, September 24, 2016

Brain, Brawn and Beauty

In the future all humans will be tall and beautiful look-alikes, as in GATTACA. Or they will split into frail beauties and sturdy beasts, as described in H. G. Wells' The Time Machine. British evolutionary psychologist Oliver Curry and paleoanthropologist Matthew Skinner believe in the possibility of similar scenarios, based on either the rich and poor divide ("gracile" vs "robust" species) or climate change-related evolution (pale hairy giants vs aquatic and space humans).

The change may be already happening, as humans continue to evolve. What traits - end products of our individual developmental histories - are most important to succeed in the modern age? 




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