The Experts below are selected from a list of 67518 Experts worldwide ranked by ideXlab platform
In-san Kim - One of the best experts on this subject based on the ideXlab platform.
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virus mimetic fusogenic exosomes for Direct Delivery of integral membrane proteins to target cell membranes
Advanced Materials, 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Jin Hwa Chung, Eunee Koh, In-san Kim, Gihoon NamAbstract:An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.
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Virus‐Mimetic Fusogenic Exosomes for Direct Delivery of Integral Membrane Proteins to Target Cell Membranes
Advanced materials (Deerfield Beach Fla.), 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Nam Gihoon, Jin Hwa Chung, Eunee Koh, In-san KimAbstract:Abstract An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.
Sung Jin Chung - One of the best experts on this subject based on the ideXlab platform.
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site Directed mutagenesis in petunia hybrida protoplast system using Direct Delivery of purified recombinant cas9 ribonucleoproteins
Plant Cell Reports, 2016Co-Authors: Saminathan Subburaj, Sung Jin ChungAbstract:Key message Site-Directed mutagenesis of nitrate reductase genes using Direct Delivery of purified Cas9 protein preassembled with guide RNA produces mutations efficiently in Petunia × hybrida protoplast system.
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site Directed mutagenesis in petunia hybrida protoplast system using Direct Delivery of purified recombinant cas9 ribonucleoproteins
Plant Cell Reports, 2016Co-Authors: Saminathan Subburaj, Sung Jin Chung, C K Lee, Seukmin Ryu, Duk Hyoung Kim, Jinsoo Kim, Sangsu Bae, Geungjoo LeeAbstract:This work was carried out with the support of "Plant Molecular Breeding Center of Next Generation Biogreen 21 Program" (Project No. PJ01119203 to G. -J. L., PJ01119201 to S. B.) funded by Rural Development Administration, Republic of Korea. S. B. was supported by a research fund of Hanyang University (HY-2015).
Saminathan Subburaj - One of the best experts on this subject based on the ideXlab platform.
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site Directed mutagenesis in petunia hybrida protoplast system using Direct Delivery of purified recombinant cas9 ribonucleoproteins
Plant Cell Reports, 2016Co-Authors: Saminathan Subburaj, Sung Jin ChungAbstract:Key message Site-Directed mutagenesis of nitrate reductase genes using Direct Delivery of purified Cas9 protein preassembled with guide RNA produces mutations efficiently in Petunia × hybrida protoplast system.
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site Directed mutagenesis in petunia hybrida protoplast system using Direct Delivery of purified recombinant cas9 ribonucleoproteins
Plant Cell Reports, 2016Co-Authors: Saminathan Subburaj, Sung Jin Chung, C K Lee, Seukmin Ryu, Duk Hyoung Kim, Jinsoo Kim, Sangsu Bae, Geungjoo LeeAbstract:This work was carried out with the support of "Plant Molecular Breeding Center of Next Generation Biogreen 21 Program" (Project No. PJ01119203 to G. -J. L., PJ01119201 to S. B.) funded by Rural Development Administration, Republic of Korea. S. B. was supported by a research fund of Hanyang University (HY-2015).
Yeonsun Hong - One of the best experts on this subject based on the ideXlab platform.
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virus mimetic fusogenic exosomes for Direct Delivery of integral membrane proteins to target cell membranes
Advanced Materials, 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Jin Hwa Chung, Eunee Koh, In-san Kim, Gihoon NamAbstract:An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.
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Virus‐Mimetic Fusogenic Exosomes for Direct Delivery of Integral Membrane Proteins to Target Cell Membranes
Advanced materials (Deerfield Beach Fla.), 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Nam Gihoon, Jin Hwa Chung, Eunee Koh, In-san KimAbstract:Abstract An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.
Eunee Koh - One of the best experts on this subject based on the ideXlab platform.
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virus mimetic fusogenic exosomes for Direct Delivery of integral membrane proteins to target cell membranes
Advanced Materials, 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Jin Hwa Chung, Eunee Koh, In-san Kim, Gihoon NamAbstract:An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.
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Virus‐Mimetic Fusogenic Exosomes for Direct Delivery of Integral Membrane Proteins to Target Cell Membranes
Advanced materials (Deerfield Beach Fla.), 2017Co-Authors: Yoosoo Yang, Yeonsun Hong, Nam Gihoon, Jin Hwa Chung, Eunee Koh, In-san KimAbstract:Abstract An efficient system for Direct Delivery of integral membrane proteins is successfully developed using a new biocompatible exosome-based platform. Fusogenic exosomes harboring viral fusogen, vascular stomatitis virus (VSV)-G protein, can fuse with and modify plasma membranes in a process called "membrane editing." This can facilitate the transfer of biologically active membrane proteins into the target cell membranes both in vitro and in vivo.