Background: Guillain-Barré Syndrome (GBS) is an acute acquired autoimmune inflammatory disorder of peripheral nerves and roots. The pathogenesis is essentially an aberrant post-infectious immune response in a genetically susceptible host milieu. Single nucleotide polymorphisms (SNP) in genes encoding the inflammatory mediators like TNF-α, CD1A and CD1E can influence their expression and level and the susceptibility and clinical course of disease in GBS.
Objective: We tried to study the susceptibility of single nucleotide polymorphisms of TNF-α and CD1 genes in Guillain-Barré Syndrome in Indian population and determine the association in terms of genotype, allele and haplotype distribution along with individual subtype, severity and clinical outcome.
Methodology: In this case-control study, we investigated the single nucleotide polymorphism pattern in the promoter region of TNF-α (-308 G/A), TNF-α (-863C/A), CD1A and CD1E genes using real-time polymerase chain reaction in 75 GBS patients and analysed in comparison with 75 age and sex-matched healthy controls.
Results: The findings revealed that the allelic distribution of TNF-α (-308 G/A) *A allele was associated with GBS ( value 0.04, Odds Ratio 2.03, 95% Confidence Interval 1.01-4.07). There was no association found with genotype, haplotype combination and other allele distribution for GBS in the study. CD1A and CD1E SNPs did not reveal any susceptibility for GBS. The subtype analysis did not reveal any statistical significance, except for CD1A *G allele with AMAN subtype ( value 0.026). The haplotypic combinations and mutant allele of TNF-α (-308 G/A), TNF-α (-863C/A), CD1A and CD1E were significantly associated with severe GBS in the study. However, there was no association of any SNP for mortality and survival of GBS in the study.
Conclusion: TNF-α (-308 G/A)*A allele might confer genetic susceptibility for GBS in Indian population. CD1 genetic polymorphism could not be considered for susceptibility to GBS. TNF-α and CD1 genetic polymorphism did not affect mortality in GBS.
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http://dx.doi.org/10.4103/aian.aian_834_22 | DOI Listing |
Int J Gen Med
May 2024
School of Traditional Chinese Medicine, Nanjing University of Chinese Medicine, Nanjing, People's Republic of China.
Background: The CD1A gene, a key component of the human immune system and part of the CD1 family, plays a crucial role in presenting lipid antigens to T cells. Abnormal CD1A expression is associated with various immune-related diseases and tumors. However, the biological function of CD1A in COAD is unclear.
View Article and Find Full Text PDFAnn Indian Acad Neurol
March 2023
Department of Neurology, King George's Medical University, Lucknow, Uttar Pradesh, India.
Background: Guillain-Barré Syndrome (GBS) is an acute acquired autoimmune inflammatory disorder of peripheral nerves and roots. The pathogenesis is essentially an aberrant post-infectious immune response in a genetically susceptible host milieu. Single nucleotide polymorphisms (SNP) in genes encoding the inflammatory mediators like TNF-α, CD1A and CD1E can influence their expression and level and the susceptibility and clinical course of disease in GBS.
View Article and Find Full Text PDFVaccines (Basel)
January 2023
National Research Council (CNR), Institute of Translational Pharmacology (IFT), 67100 L'Aquila, Italy.
Spondyloarthropathies (SpA) are a group of chronic inflammatory disorders usually affecting the axial spine and asymmetrical peripheral joints. Strong evidence links genetic and environmental factors to SpA pathogenesis. The HLA-B27 is the most important genetic factor associated with SpA.
View Article and Find Full Text PDFHereditas
August 2021
Department of Medical Oncology, the First Hospital of China Medical University, Shenyang, China.
Glioblastomas (GBM) are the most common primary brain malignancy and also the most aggressive one. In addition, GBM have to date poor treatment options. Therefore, understanding the GBM microenvironment may help to design immunotherapy treatments and rational combination strategies.
View Article and Find Full Text PDFHum Immunol
July 2020
National Research Council (CNR)-Institute of Translational Pharmacology (IFT), L'Aquila, Italy. Electronic address:
CD1 glycoproteins are a class of antigen presenting molecules that bind and present non-peptidic antigens (lipids and glycolipids) for immune recognition. CD1 polymorphisms, although limited, could have a critical role in antimicrobial, anticancer, and autoimmune responses and disease susceptibility. Ethnic differences and interactions between genetic and environmental factors make it attractive the study of these molecules in autoimmune inflammatory disorders, such as celiac disease (CD), in which a strong genetic predisposition (HLA-DQ2/DQ8) and pressure of environmental factors have a central role.
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