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ѧÊõ±¨¸æ-Single Cell Gene Therapy and Analysis on Nano-electroporation Chip

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¡¡¡¡³£ÁèǬ²©Ê¿ £¬2016Ä격ʿ½áÒµÓÚÃÀ¹ú¶íº¥¶íÖÝÁ¢´óѧÉúÎïҽѧ¹¤³Ìϵ £¬ÏÖΪ±±¾©º½¿Õº½Ìì´óѧÉúÎïÓëҽѧ¹¤³ÌѧԺºÍÒ½¹¤½»²æ¸ß¾«¼âÖÐÐĵ¥Ï¸°ûÆÊÎöÄÉÃ×¼¼ÊõÑо¿Ëù½ÌÊÚ¡£Ôøµ£µ±ÃÀ¹ú±±µÂ¿ËÈø˹´óѧ(University of North Texas)ÉúÎïҽѧ¹¤³ÌϵÖúÀí½ÌÊÚ¡£ ³£ÁèǬ²©Ê¿µÄÑо¿Æ«Ïò£ºµ¥Ï¸°û»ùÒòתȾ¼¼ÊõºÍϸ°û΢ÀûÓü¼Êõ¼°ÆäÔÚϸ°û»ùÒò¼ì²â¡¢ÖÎÁƵÈÁìÓòµÄÑо¿¡£½üÎåÄêÔÚ¹ú¼ÊÆÚ¿¯Ðû²¼SCIÂÛÎÄ50ƪ £¬ÈçNature Nanotechnology, Nano Letters, SmallµÈ¡£ÉêÇë»òÊÚȨÃÀ¹úרÀû3Ïî £¬ÖйúרÀû3Ïî¡£»ñµÃÁËÖî¶à¿ÆÑн±ÀøºÍÈÙÓþ £¬Èç¶íº¥¶íÖÝÁ¢´óѧ2015Ä격ʿ×î¸ß½±Presidential Fellowship £¬±±µÂ¿ËÈø˹´óѧRSG Awards, MINE 2018¡®½Ü³öÇàÄê¿Æѧ¼Ò¡¯ÌáÃû½±µÈ¡£¼æÈÎSCIÆÚ¿¯Biomedical Engineering Online¸±Ö÷±à£¨Associate Editor£©ºÍComputers in Biology and Medicine±àί(Editorial Board) £¬Nature Springer¡¶Electroporation Protocol¡·µÚÈý°æÖ÷±à £¬ÖйúÉúÎïҽѧ¹¤³Ìѧ»áÄÉÃ×Ò½Ò©·Ö»áÇàÄêίԱ¡£

¡¡¡¡Abstract:

¡¡¡¡One of the cutting-edge multidisciplinary research themes in Biomedical Engineering is to design and manufacture advanced Bio-Chip for life science, ranging from in vitro cell biology toward in vivo medicine. In recent years, nanotechnologies facilitate the development of bio-chips and devices which have demonstrated unprecedented capabilities in single cell analysis and manipulation. In this talk, a novel nano-biotechnology, nano-electroporation (NEP), is introduced with emphasis on high-throughput, and precisely delivery of gene / drugs into living cells at single-cell resolution.

¡¡¡¡The in vitro applications of the NEP platform have been demonstrated in the studies of intracellular cancer biomarker heterogeneity in leukemic cells, cardiomyocytes, T lymphocytes and glioma stem cells. Our latest efforts have achieved in vivo cell reprogramming for on-body gene therapy and wound healing. The future research of this nano-technique for flexible wearable drug delivery platform with the aims to patient-specific gene therapy and regenerative medicine are discussed.

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