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Application of Microfluidics in Drug Development from Traditional Medicine

While there are many clinical drugs for prophylaxis and treatment, the search for those with low or no risk of side effects for the control of infectious and non-infectious diseases is a dilemma that cannot be solved by today’s traditional drug development strategies. The need for new drug developme...

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Autores principales: Li, Xue, Fan, Xiaoming, Li, Zhu, Shi, Lina, Liu, Jinkuan, Luo, Hongzhi, Wang, Lijun, Du, Xiaoxin, Chen, Wenzhu, Guo, Jiuchuan, Li, Chenzhong, Liu, Shan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599478/
https://www.ncbi.nlm.nih.gov/pubmed/36291008
http://dx.doi.org/10.3390/bios12100870
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author Li, Xue
Fan, Xiaoming
Li, Zhu
Shi, Lina
Liu, Jinkuan
Luo, Hongzhi
Wang, Lijun
Du, Xiaoxin
Chen, Wenzhu
Guo, Jiuchuan
Li, Chenzhong
Liu, Shan
author_facet Li, Xue
Fan, Xiaoming
Li, Zhu
Shi, Lina
Liu, Jinkuan
Luo, Hongzhi
Wang, Lijun
Du, Xiaoxin
Chen, Wenzhu
Guo, Jiuchuan
Li, Chenzhong
Liu, Shan
author_sort Li, Xue
collection PubMed
description While there are many clinical drugs for prophylaxis and treatment, the search for those with low or no risk of side effects for the control of infectious and non-infectious diseases is a dilemma that cannot be solved by today’s traditional drug development strategies. The need for new drug development strategies is becoming increasingly important, and the development of new drugs from traditional medicines is the most promising strategy. Many valuable clinical drugs have been developed based on traditional medicine, including drugs with single active ingredients similar to modern drugs and those developed from improved formulations of traditional drugs. However, the problems of traditional isolation and purification and drug screening methods should be addressed for successful drug development from traditional medicine. Advances in microfluidics have not only contributed significantly to classical drug development but have also solved many of the thorny problems of new strategies for developing new drugs from traditional drugs. In this review, we provide an overview of advanced microfluidics and its applications in drug development (drug compound synthesis, drug screening, drug delivery, and drug carrier fabrication) with a focus on its applications in conventional medicine, including the separation and purification of target components in complex samples and screening of active ingredients of conventional drugs. We hope that our review gives better insight into the potential of traditional medicine and the critical role of microfluidics in the drug development process. In addition, the emergence of new ideas and applications will bring about further advances in the field of drug development.
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spelling pubmed-95994782022-10-27 Application of Microfluidics in Drug Development from Traditional Medicine Li, Xue Fan, Xiaoming Li, Zhu Shi, Lina Liu, Jinkuan Luo, Hongzhi Wang, Lijun Du, Xiaoxin Chen, Wenzhu Guo, Jiuchuan Li, Chenzhong Liu, Shan Biosensors (Basel) Review While there are many clinical drugs for prophylaxis and treatment, the search for those with low or no risk of side effects for the control of infectious and non-infectious diseases is a dilemma that cannot be solved by today’s traditional drug development strategies. The need for new drug development strategies is becoming increasingly important, and the development of new drugs from traditional medicines is the most promising strategy. Many valuable clinical drugs have been developed based on traditional medicine, including drugs with single active ingredients similar to modern drugs and those developed from improved formulations of traditional drugs. However, the problems of traditional isolation and purification and drug screening methods should be addressed for successful drug development from traditional medicine. Advances in microfluidics have not only contributed significantly to classical drug development but have also solved many of the thorny problems of new strategies for developing new drugs from traditional drugs. In this review, we provide an overview of advanced microfluidics and its applications in drug development (drug compound synthesis, drug screening, drug delivery, and drug carrier fabrication) with a focus on its applications in conventional medicine, including the separation and purification of target components in complex samples and screening of active ingredients of conventional drugs. We hope that our review gives better insight into the potential of traditional medicine and the critical role of microfluidics in the drug development process. In addition, the emergence of new ideas and applications will bring about further advances in the field of drug development. MDPI 2022-10-13 /pmc/articles/PMC9599478/ /pubmed/36291008 http://dx.doi.org/10.3390/bios12100870 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Li, Xue
Fan, Xiaoming
Li, Zhu
Shi, Lina
Liu, Jinkuan
Luo, Hongzhi
Wang, Lijun
Du, Xiaoxin
Chen, Wenzhu
Guo, Jiuchuan
Li, Chenzhong
Liu, Shan
Application of Microfluidics in Drug Development from Traditional Medicine
title Application of Microfluidics in Drug Development from Traditional Medicine
title_full Application of Microfluidics in Drug Development from Traditional Medicine
title_fullStr Application of Microfluidics in Drug Development from Traditional Medicine
title_full_unstemmed Application of Microfluidics in Drug Development from Traditional Medicine
title_short Application of Microfluidics in Drug Development from Traditional Medicine
title_sort application of microfluidics in drug development from traditional medicine
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599478/
https://www.ncbi.nlm.nih.gov/pubmed/36291008
http://dx.doi.org/10.3390/bios12100870
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