Javascript must be enabled to continue!
Gene doping detection in the era of genomics
View through CrossRef
AbstractRecent progress in gene editing has enabled development of gene therapies for many genetic diseases, but also made gene doping an emerging risk in sports and competitions. By delivery of exogenous transgenes into human body, gene doping not only challenges competition fairness but also places health risk on athletes. World Anti‐Doping Agency (WADA) has clearly inhibited the use of gene and cell doping in sports, and many techniques have been developed for gene doping detection. In this review, we will summarize the main tools for gene doping detection at present, highlight the main challenges for current tools, and elaborate future utilizations of high‐throughput sequencing for unbiased, sensitive, economic and large‐scale gene doping detections. Quantitative real‐time PCR assays are the widely used detection methods at present, which are useful for detection of known targets but are vulnerable to codon optimization at exon–exon junction sites of the transgenes. High‐throughput sequencing has become a powerful tool for various applications in life and health research, and the era of genomics has made it possible for sensitive and large‐scale gene doping detections. Non‐biased genomic profiling could efficiently detect new doping targets, and low‐input genomics amplification and long‐read third‐generation sequencing also have application potentials for more efficient and straightforward gene doping detection. By closely monitoring scientific advancements in gene editing and sport genetics, high‐throughput sequencing could play a more and more important role in gene detection and hopefully contribute to doping‐free sports in the future.
Title: Gene doping detection in the era of genomics
Description:
AbstractRecent progress in gene editing has enabled development of gene therapies for many genetic diseases, but also made gene doping an emerging risk in sports and competitions.
By delivery of exogenous transgenes into human body, gene doping not only challenges competition fairness but also places health risk on athletes.
World Anti‐Doping Agency (WADA) has clearly inhibited the use of gene and cell doping in sports, and many techniques have been developed for gene doping detection.
In this review, we will summarize the main tools for gene doping detection at present, highlight the main challenges for current tools, and elaborate future utilizations of high‐throughput sequencing for unbiased, sensitive, economic and large‐scale gene doping detections.
Quantitative real‐time PCR assays are the widely used detection methods at present, which are useful for detection of known targets but are vulnerable to codon optimization at exon–exon junction sites of the transgenes.
High‐throughput sequencing has become a powerful tool for various applications in life and health research, and the era of genomics has made it possible for sensitive and large‐scale gene doping detections.
Non‐biased genomic profiling could efficiently detect new doping targets, and low‐input genomics amplification and long‐read third‐generation sequencing also have application potentials for more efficient and straightforward gene doping detection.
By closely monitoring scientific advancements in gene editing and sport genetics, high‐throughput sequencing could play a more and more important role in gene detection and hopefully contribute to doping‐free sports in the future.
Related Results
Doping Prevention in Sport: Overview of Anti-Doping Education Programmes
Doping Prevention in Sport: Overview of Anti-Doping Education Programmes
Background. As doping can damage the sports industry, it is fundamental for athletes to engage in the anti-doping education programs and understand the anti-doping rules. The purpo...
RUMI DOPING application development as Anti-doping information media for Indonesian national paralympic comittee Athletes
RUMI DOPING application development as Anti-doping information media for Indonesian national paralympic comittee Athletes
Introduction: Doping is an invisible cheating act in a match; therefore, it is necessary to provide an anti-doping understanding to overcome doping behavior in a competition. The r...
NEW NATIONAL FRAMEWORK FOR TACKLING THE MENACE OF DOPING IN INDIA: AN OVERVIEW
NEW NATIONAL FRAMEWORK FOR TACKLING THE MENACE OF DOPING IN INDIA: AN OVERVIEW
Doping means the act of giving a person or animal drugs in order to make them perform better or worse in competition. The International Olympic Committee (IOC) established WADA as ...
Web-based anti-doping education: A needs analysis for achievement sport athletes
Web-based anti-doping education: A needs analysis for achievement sport athletes
This research is motivated by the many outstanding sports athletes who do not understand doping. Increasing the understanding of high-achieving sports athletes about doping can be ...
Doping Prevalence Among Elite U.S. Athletes
Doping Prevalence Among Elite U.S. Athletes
Abstract
Background: Determining the prevalence of doping within an elite athlete population is challenging due to the extreme sensitivity of the topic, however understandi...
Expression and polymorphism of genes in gallstones
Expression and polymorphism of genes in gallstones
ABSTRACT
Through the method of clinical case control study, to explore the expression and genetic polymorphism of KLF14 gene (rs4731702 and rs972283) and SR-B1 gene...
Genomics and society: four scenarios for 2015
Genomics and society: four scenarios for 2015
This paper develops four alternative scenarios depicting possible futures for genomics applications within a broader social context. The scenarios integrate forecasts for future ge...
“The science of doping” revisited: Fallacies of the current anti‐doping regime
“The science of doping” revisited: Fallacies of the current anti‐doping regime
AbstractBiomedical doping tests specifically, as well as doping test practises as a whole, have severe shortcomings which are based upon the fact that test procedures are in princi...

