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Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns
by
Haile, James
, Houston, Jayne
, Moolhuijzen, Paula
, Murray, Dáithí C.
, White, Nicole E.
, Bellgard, Matthew I.
, Coghlan, Megan L.
, Bunce, Michael
in
Agricultural biotechnology
/ Animal genetics
/ Animals
/ Antelopes - genetics
/ Asarum - genetics
/ Biology
/ Chinese medicine
/ Descriptive labeling
/ DNA sequencing
/ Drugs, Chinese Herbal - adverse effects
/ Drugs, Chinese Herbal - analysis
/ Endangered & extinct species
/ Endangered Species - legislation & jurisprudence
/ Ephedra - genetics
/ Genetic aspects
/ Heavy metals
/ High-Throughput Nucleotide Sequencing
/ Medicine
/ Medicine, Chinese
/ Medicine, Chinese Traditional - adverse effects
/ Nucleotide sequencing
/ Physiological aspects
/ Plant genetics
/ Plants - classification
/ Plants - genetics
/ Plants - toxicity
/ Practice
/ RNA, Ribosomal, 16S - genetics
/ Taxonomy
/ Traditional Chinese medicine
/ Ursidae - genetics
2012
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Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns
by
Haile, James
, Houston, Jayne
, Moolhuijzen, Paula
, Murray, Dáithí C.
, White, Nicole E.
, Bellgard, Matthew I.
, Coghlan, Megan L.
, Bunce, Michael
in
Agricultural biotechnology
/ Animal genetics
/ Animals
/ Antelopes - genetics
/ Asarum - genetics
/ Biology
/ Chinese medicine
/ Descriptive labeling
/ DNA sequencing
/ Drugs, Chinese Herbal - adverse effects
/ Drugs, Chinese Herbal - analysis
/ Endangered & extinct species
/ Endangered Species - legislation & jurisprudence
/ Ephedra - genetics
/ Genetic aspects
/ Heavy metals
/ High-Throughput Nucleotide Sequencing
/ Medicine
/ Medicine, Chinese
/ Medicine, Chinese Traditional - adverse effects
/ Nucleotide sequencing
/ Physiological aspects
/ Plant genetics
/ Plants - classification
/ Plants - genetics
/ Plants - toxicity
/ Practice
/ RNA, Ribosomal, 16S - genetics
/ Taxonomy
/ Traditional Chinese medicine
/ Ursidae - genetics
2012
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Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns
by
Haile, James
, Houston, Jayne
, Moolhuijzen, Paula
, Murray, Dáithí C.
, White, Nicole E.
, Bellgard, Matthew I.
, Coghlan, Megan L.
, Bunce, Michael
in
Agricultural biotechnology
/ Animal genetics
/ Animals
/ Antelopes - genetics
/ Asarum - genetics
/ Biology
/ Chinese medicine
/ Descriptive labeling
/ DNA sequencing
/ Drugs, Chinese Herbal - adverse effects
/ Drugs, Chinese Herbal - analysis
/ Endangered & extinct species
/ Endangered Species - legislation & jurisprudence
/ Ephedra - genetics
/ Genetic aspects
/ Heavy metals
/ High-Throughput Nucleotide Sequencing
/ Medicine
/ Medicine, Chinese
/ Medicine, Chinese Traditional - adverse effects
/ Nucleotide sequencing
/ Physiological aspects
/ Plant genetics
/ Plants - classification
/ Plants - genetics
/ Plants - toxicity
/ Practice
/ RNA, Ribosomal, 16S - genetics
/ Taxonomy
/ Traditional Chinese medicine
/ Ursidae - genetics
2012
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Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns
Journal Article
Deep Sequencing of Plant and Animal DNA Contained within Traditional Chinese Medicines Reveals Legality Issues and Health Safety Concerns
2012
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Overview
Traditional Chinese medicine (TCM) has been practiced for thousands of years, but only within the last few decades has its use become more widespread outside of Asia. Concerns continue to be raised about the efficacy, legality, and safety of many popular complementary alternative medicines, including TCMs. Ingredients of some TCMs are known to include derivatives of endangered, trade-restricted species of plants and animals, and therefore contravene the Convention on International Trade in Endangered Species (CITES) legislation. Chromatographic studies have detected the presence of heavy metals and plant toxins within some TCMs, and there are numerous cases of adverse reactions. It is in the interests of both biodiversity conservation and public safety that techniques are developed to screen medicinals like TCMs. Targeting both the p-loop region of the plastid trnL gene and the mitochondrial 16S ribosomal RNA gene, over 49,000 amplicon sequence reads were generated from 15 TCM samples presented in the form of powders, tablets, capsules, bile flakes, and herbal teas. Here we show that second-generation, high-throughput sequencing (HTS) of DNA represents an effective means to genetically audit organic ingredients within complex TCMs. Comparison of DNA sequence data to reference databases revealed the presence of 68 different plant families and included genera, such as Ephedra and Asarum, that are potentially toxic. Similarly, animal families were identified that include genera that are classified as vulnerable, endangered, or critically endangered, including Asiatic black bear (Ursus thibetanus) and Saiga antelope (Saiga tatarica). Bovidae, Cervidae, and Bufonidae DNA were also detected in many of the TCM samples and were rarely declared on the product packaging. This study demonstrates that deep sequencing via HTS is an efficient and cost-effective way to audit highly processed TCM products and will assist in monitoring their legality and safety especially when plant reference databases become better established.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Animals
/ Biology
/ Drugs, Chinese Herbal - adverse effects
/ Drugs, Chinese Herbal - analysis
/ Endangered & extinct species
/ Endangered Species - legislation & jurisprudence
/ High-Throughput Nucleotide Sequencing
/ Medicine
/ Medicine, Chinese Traditional - adverse effects
/ Practice
/ RNA, Ribosomal, 16S - genetics
/ Taxonomy
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