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Degradation and biocompatibility of one-step electrodeposited magnesium thioctic acid/magnesium hydroxide hybrid coatings on ZE21B alloys for cardiovascular stents
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作者 Zhao-Qi Zhang bing-zhi li +5 位作者 Pei-Duo Tong Shao-Kang Guan li Wang Zheng-Hui Qiu Cun-Guo lin Rong-Chang Zeng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第1期120-138,共19页
Constructing a functional hybrid coating appears to be a promising strategy for addressing the poor corrosion resistance and insufficient endothelialization of Mg-based stents.Nevertheless,the steps for preparing comp... Constructing a functional hybrid coating appears to be a promising strategy for addressing the poor corrosion resistance and insufficient endothelialization of Mg-based stents.Nevertheless,the steps for preparing composite coatings are usually complicated and time-consuming.Herein,a novel composite coating,composed of bioactive magnesium thioctic acid(MTA)layer formed by deposition and corrosion-resistant magnesium hydroxide(Mg(OH)_(2))layer grown in situ,is simply fabricated on ZE21B alloys via one-step electrodeposition.Scanning electron microscopy(SEM)shows that the electrodeposited coating has a compact and uniform structure.And the high adhesion of the MTA/Mg(OH)_(2)hybrid coating is also confirmed by the micro-scratch test.Electrochemical test,scanning kelvin probe(SKP),and hydrogen evolution measurement indicate that the hybrid coating effectively reduces the degradation rate of Mg substrates.Haemocompatibility experiment and cell culture trial detect that the composite coating is of fine biocompatibility.Finally,the preparation mechanism of MTA/Mg(OH)_(2)hybrid coatings is discussed and proposed.This coating shows a great potential application for cardiovascular stents. 展开更多
关键词 Magnesium alloy Corrosion resistance Hybrid coating ENDOTHELIALIZATION BIOCOMPATIBILITY
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Engineering DNA Materials for Sustainable Data Storage Using a DNA Movable-Type System
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作者 Zi-Yi Gong li-Fu Song +3 位作者 Guang-Sheng Pei Yu-Fei Dong bing-zhi li Ying-Jin Yuan 《Engineering》 SCIE EI CAS CSCD 2023年第10期130-136,共7页
DNA molecules are green materials with great potential for high-density and long-term data storage.However,the current data-writing process of DNA data storage via DNA synthesis suffers from high costs and the product... DNA molecules are green materials with great potential for high-density and long-term data storage.However,the current data-writing process of DNA data storage via DNA synthesis suffers from high costs and the production of hazards,limiting its practical applications.Here,we developed a DNA movable-type storage system that can utilize DNA fragments pre-produced by cell factories for data writing.In this system,these pre-generated DNA fragments,referred to herein as“DNA movable types,”are used as basic writing units in a repetitive way.The process of data writing is achieved by the rapid assembly of these DNA movable types,thereby avoiding the costly and environmentally hazardous process of de novo DNA synthesis.With this system,we successfully encoded 24 bytes of digital information in DNA and read it back accurately by means of high-throughput sequencing and decoding,thereby demonstrating the feasibility of this system.Through its repetitive usage and biological assembly of DNA movable-type fragments,this system exhibits excellent potential for writing cost reduction,opening up a novel route toward an economical and sustainable digital data-storage technology. 展开更多
关键词 Synthetic biology DNA data storage DNA movable types Economical DNA data storage
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Breakthrough in efficient cloning and activation of large cryptic biosynthetic gene clusters from high GC actinobacteria
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作者 Jun-Yi Wang bing-zhi li 《Synthetic and Systems Biotechnology》 SCIE 2022年第4期1064-1065,共2页
Synthetic genomics,as one of the important parts of synthetic biology,has become a hotspot in recent years,and several bacterial genomes and yeast chromosomes have been designed and synthesized from de novo.However,du... Synthetic genomics,as one of the important parts of synthetic biology,has become a hotspot in recent years,and several bacterial genomes and yeast chromosomes have been designed and synthesized from de novo.However,during genome synthesis,one technical challenge is the efficient cloning and editing of large genome fragments.At the same time,with the advent of the genomics era,actinobacteria(e.g.Streptomyces)is again regarded as a rich source for novel natural products.However,most of Streptomyces and nearly half the actinomycetes are high GC content. 展开更多
关键词 FRAGMENTS ACTIVATION CLONING
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