中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Surface modification with highly-homogeneous porous silica layer for enzyme immobilization in capillary enzyme microreactors

文献类型:期刊论文

作者Liu, Xin1; Zhu, Xudong2; Camara, Mohamed Amara1; Qu, Qishu3; Shan, Yichu2; Yang, Li1
刊名Talanta
出版日期2019-05-15
卷号197页码:539-547
ISSN号0039-9140
关键词Surface modification Porous layer open tubular Immobilized enzyme reactor Microchannel
DOI10.1016/j.talanta.2019.01.080
通讯作者Shan, yichu(shanyichu@dicp.ac.cn) ; Yang, li(yang1330@nenu.edu.cn)
英文摘要Immobilized enzyme micro-reactors (imers) are of vital importance in developing miniaturized bioanalytical systems and have promising applications in various biomanufacturing. an inherent limitation in designing imers is the one-dimensional cylindrical geometry of micro-channels that offers limited exposed surface area for molecular reorganization and enzyme immobilization. in this study, we report a robust capillary-imer based on a three dimensional porous layer open tubular (3d-plot) column which is prepared by an easy-to-control surface modification strategy via single-step in situ biphasic reaction. the 3d-plot column with highly uniform porous geometry and narrow distribution of porosity can greatly enhance the surface-area-to-volume ratio of the micro-channels, showing the beneficial effects for enzyme immobilization to enhance reaction efficiency and shorten analysis time. taking trypsin as a model enzyme, enzymatic activities of immobilized enzyme are analyzed. we compare enzyme assays using the proposed 3d-plot-imer with those using normal capillary-iemr without surface modification as well as free trypsin. the 3d-plot-imer exhibits excellent stability and inter/intra-day reproducibility, and these characteristics imply the reliability of the proposed imers for accurate enzyme assay. the feasibility of the proposed method for potential application in biological analysis is demonstrated by coupling the 3d-plot-imer with a nano-lc-ms/ms system for online digestion of standard proteins, cell extraction and living hela cells. our study show that the surface modification with the proposed 3d-porous layer is a simple and efficient approach for enzyme immobilization, and could be widely suitable for different kinds of imers.
WOS关键词MEDIATED MICROANALYSIS ; REACTORS ; ELECTROPHORESIS ; FLOW ; INHIBITORS ; COLUMNS ; ACETYLCHOLINESTERASE ; PROTEIN ; CHIP
WOS研究方向Chemistry
WOS类目Chemistry, Analytical
语种英语
出版者ELSEVIER SCIENCE BV
WOS记录号WOS:000460710200071
URI标识http://www.irgrid.ac.cn/handle/1471x/2372696
专题大连化学物理研究所
通讯作者Shan, Yichu; Yang, Li
作者单位1.Northeast Normal Univ, Dept Chem, Key Lab Nanobiosensing & Nanobioanal Univ Jilin P, 5268 Renmin St, Changchun 130024, Jilin, Peoples R China
2.Chinese Acad Sci, Dalian Inst Chem Phys, Natl Chromatog R&A Ctr, Key Lab Separat Sci Analyt Chem, Dalian 116023, Peoples R China
3.Anhui Jianzhu Univ, Sch Mat & Chem Engn, Key Lab Funct Mol Design & Interface Proc, Hefei 230601, Anhui, Peoples R China
推荐引用方式
GB/T 7714
Liu, Xin,Zhu, Xudong,Camara, Mohamed Amara,et al. Surface modification with highly-homogeneous porous silica layer for enzyme immobilization in capillary enzyme microreactors[J]. Talanta,2019,197:539-547.
APA Liu, Xin,Zhu, Xudong,Camara, Mohamed Amara,Qu, Qishu,Shan, Yichu,&Yang, Li.(2019).Surface modification with highly-homogeneous porous silica layer for enzyme immobilization in capillary enzyme microreactors.Talanta,197,539-547.
MLA Liu, Xin,et al."Surface modification with highly-homogeneous porous silica layer for enzyme immobilization in capillary enzyme microreactors".Talanta 197(2019):539-547.

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来源:大连化学物理研究所

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