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Electroformation and collection of giant liposomes on an integrated microchip 被引量:1
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作者 Zhenyu Wang chaoxiong wu +4 位作者 Ting Fan Xianwei Han Qiong Wang Jincan Lei Jun Yang 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第2期353-358,共6页
Giant liposome is an important lipid structure widely used in biological and medical fields. In its main preparation method, electroformation, many influencing factors must be optimized for good effect. How to collect... Giant liposome is an important lipid structure widely used in biological and medical fields. In its main preparation method, electroformation, many influencing factors must be optimized for good effect. How to collect the desired giant liposomes is another major issue. In this work, a microchip with a reactor chamber array was used to study the influences of multiple parameters, and a suitable condition could be achieved rapidly and efficiently. A tailor-made collection chamber was also integrated on the chip. Based on the multifactor and multilevel orthogonal experiment, optimal conditions of the lipid solution, buffer solution, and electric signal were achieved with high efficiency. More than one thousand giant liposomes could be formed in each microscale reactor chamber, and most of them were unilamellar. The on-chip collection ratio of giant liposome carriers could also approximate to 40%. 展开更多
关键词 GIANT LIPOSOME MICROCHIP ITO ELECTROFORMATION COLLECTION
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A streamlined high throughput screening method for the Mycobacterium neoaurum mutants with expected yield of biotransformation derivatives from sterols
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作者 chaoxiong wu Junqi Xu +1 位作者 Jianping Xie Zhenyu Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2018年第8期1251-1253,共3页
Steroidal drugs have wide indications such as anti-inflammation, anti-tumor, endocrine regulation,fertility management. Phytosterol is the main starting materials for the industrial synthesis of steroid drugs. Microbi... Steroidal drugs have wide indications such as anti-inflammation, anti-tumor, endocrine regulation,fertility management. Phytosterol is the main starting materials for the industrial synthesis of steroid drugs. Microbial transformation of phytosterol is a simple and environmentally friendly process. Efficient microbial strains for industrial phytosterol transformation are critical for the commercial success. To this end, a 96-well plate based method was developed to discriminate the mixture of 4-androstene-3,17-dione, androsta-1,4-diene-3,17-dione, and bisnoraldehyde, with different ratio of the 3 components in the mixture, which mimics the sterol bioconversion products by using the Mycobacterium neoaurum. The M. neoaurum bioconversed broth test using phytosterol as substrate also found that the spectrum methodology can evaluate the relative content of different compounds. The method is practical, high throughput and can replace the conventional HPLC-based assay for rapid selection of desired microbial strains. 展开更多
关键词 Mycobacterium neoaurum Sterol Biotransformation Mutants 4-Androstene-3 17-dione (AD) Androsta-1 4-diene-3 17-dione (ADD)
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