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1.
Zhongguo Zhong Yao Za Zhi ; 47(19): 5383-5388, 2022 Oct.
Article in Chinese | MEDLINE | ID: mdl-36472046

ABSTRACT

Tibetan medicine is an essential part of Chinese medicine and has unique theoretical experience and therapeutic advantages. According to the development principle of inheriting the essence, sticking to the truth, and keeping innovative, the supervision department should give clear and reasonable guidance considering the characteristics of Tibetan medicine, establish a standard system for quality control, clinical verification and evaluation, and accelerate the research and commercialization of new drugs. In view of the needs of drug supply-side reform and the current situation of Tibetan medicine and new pharmaceutical research, we ponder and provide suggestions on the confusion faced by the current supervision of Tibetan drug registration, hoping to contribute to the supervision strategy of Tibetan drug registration and the high-quality development of Tibetan medicine industry.


Subject(s)
Medicine, Tibetan Traditional , Pharmaceutical Research , Tibet , Quality Control , Drug Industry
2.
J Ind Microbiol Biotechnol ; 35(11): 1551-7, 2008 Nov.
Article in English | MEDLINE | ID: mdl-18719958

ABSTRACT

This study aims at developing a 3D device for catching, separating, and transporting bio-particles based on dielectrophoresis (DEP). Target particles can be simultaneously caught and transported using the negative DEP method. In non-uniform electric fields, the levitation height or complex permittivity of certain particle may be different from that of another and this property can facilitate separation of particles. We have designed and constructed a 3D device consisting of two layers of electrodes separated by a channel formed by 50 microm thick photoresist. The electrodes can operate effectively with 10-15 V and 5-7 MHz to catch all particles in the channel, and can move particles after switching the electric field to 5-15 V and 500-1,000 KHz. Hence, particles experienced coupling force of two different directional twDEP forces, and tallied with our estimation to move along the coupling direction.


Subject(s)
Cell Separation/instrumentation , Electrophoresis, Microchip/instrumentation , Yeasts/chemistry , Cell Separation/methods , Computer Simulation , Microfluidics , Particle Size
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