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Published on: January 2, 2017
Modulation of immune responses following solid organ transplantation by microRNA
Nayan J Sarma1, Venkataswarup Tiriveedhi, Sabarinathan Ramachandran
1Department of Surgery, Washington University School of Medicine, St. Louis, MO, USA.
Abstract:
Organ transplantation, an accepted treatment for end stage organ failure, is often complicated by allograft rejection and disease recurrence. In this review we will discuss the potential role of microRNAs in allograft immunity especially leading to rejection of the transplanted organ. microRNAs (miRNAs), originally identified in C. elegans, are short non-coding 21-24 nucleotide sequences that bind to its complementary sequences in functional messenger RNAs and inhibits post-translational processes through RNA duplex formation resulting in gene silencing (Lau et al., 2001). Gene specific translational silencing by miRNAs regulates pathways for immune responses such as development of innate immunity, inflammation, T-cell and B-cell differentiation and signaling that are implicated in various stages of allograft rejection. miRNAs also play a role in development of post-transplant complicacies like fibrosis, cirrhosis, carcinogenesis often leading to graft loss and poor patient outcome. Recent advancements in the methods for detecting and quantifying miRNA in tissue biopsies, as well as in serum and urine samples, has led to identification of specific miRNA signatures in patients with allograft rejection and have been utilized to predict allograft status and survival. Therefore, miRNAs play a significant role in post-transplant events including allograft rejection, disease recurrence and tumor development impacting patient outcome.
Insights
MicroRNAs (miRNAs) are key regulators of immune responses following organ transplantation. Identifying specific miRNA signatures aids in predicting allograft rejection and improving patient outcomes.
Area of Science:
- * Molecular Biology
- * Immunology
- * Transplantation Science
Background:
- * Organ transplantation is a vital treatment for end-stage organ failure.
- * Allograft rejection and disease recurrence are significant complications.
- * MicroRNAs (miRNAs) are short, non-coding RNA molecules regulating gene expression.
Purpose of the Study:
- * To review the role of miRNAs in allograft immunity and rejection.
- * To explore miRNA involvement in post-transplant complications.
- * To highlight the diagnostic and prognostic potential of miRNAs in transplantation.
Main Methods:
- * Review of existing literature on microRNAs in transplantation.
- * Analysis of miRNA function in immune response pathways.
- * Discussion of advancements in miRNA detection and quantification.
Main Results:
- * miRNAs regulate innate immunity, inflammation, and T/B-cell signaling crucial for allograft rejection.
- * miRNAs are implicated in post-transplant complications like fibrosis, cirrhosis, and carcinogenesis.
- * Specific miRNA signatures can be detected in patient samples for monitoring allograft status.
Conclusions:
- * MicroRNAs significantly influence allograft immunity, rejection, and disease recurrence.
- * miRNAs are critical in the development of post-transplant complications.
- * miRNA detection offers a promising avenue for predicting allograft survival and patient outcomes.
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