Single-Cell Surgery and Intracellular Organelle Manipulation Via Thermoplasmonics Combined Optical Trapping.

Nano letters 2022 Vol.22(1) p. 402-410

Zhao X, Shi Y, Pan T, Lu D, Xiong J, Li B, Xin H

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Abstract

Microsurgery and biopsies on individual cells in a cellular microenvironment are of great importance to better understand the fundamental cellular processes at subcellular and even single-molecular levels. However, it is still a big challenge for in situ surgery without interfering with neighboring living cells. Here, we report a thermoplasmonics combined optical trapping (TOT) technique for in situ single-cell surgery and intracellular organelle manipulation, without interfering with neighboring cells. A selective single-cell perforation was demonstrated via a localized thermoplasmonic effect, which facilitated further targeted gene delivery. Such a perforation was reversible, and the damaged membrane was capable of being repaired. Remarkably, a targeted extraction and precise manipulation of intracellular organelles were realized via the optical trapping. This TOT technique represents a new way for single-cell microsurgery, gene delivery, and intracellular organelle manipulation, and it provides a new insight for a deeper understanding of cellular processes as well as to reveal underlying causes of diseases associated with organelle malfunctions at a subcellular level.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 2
해부 Intracellular Organelle scispacy 1
해부 cells scispacy 1
해부 cellular scispacy 1
해부 single-cell scispacy 1
해부 intracellular scispacy 1
해부 membrane scispacy 1
해부 intracellular organelles scispacy 1
질환 biopsies scispacy 1

MeSH Terms

Optical Tweezers; Organelles

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