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用于消除肿瘤细胞的激光激活纳米热解方法。

Method of laser activated nano-thermolysis for elimination of tumor cells.

作者信息

Lapotko Dmitri, Lukianova Ekaterina, Potapnev Michail, Aleinikova Olga, Oraevsky Alexander

机构信息

International Center, A. V. Luikov Heat and Mass Transfer Institute, 15 P. Brovka Street, Minsk, 220072, Belarus.

出版信息

Cancer Lett. 2006 Jul 28;239(1):36-45. doi: 10.1016/j.canlet.2005.07.031. Epub 2005 Oct 3.

Abstract

We describe novel ex vivo method for elimination of tumor cells from cell suspension, Laser Activated Nanothermolysis and propose this method for purging of bone marrow and blood transplants. K562 and human lympholeukemia cells were eliminated in experiments by laser-induced micro-bubbles that emerge inside individual target cells around selectively formed clusters of light-absorbing gold nanoparticles. Pretreatment of tumor cells with specific monoclonal antibodies and Ig-conjugated 30-nm gold particles allowed the formation of clusters of 10-20 on the surface of cell membrane. Electron microscopy found the nanoparticulate clusters inside the cells. Total (100%) elimination of K562 cells targeted with specific antibodies was achieved with single laser pulses with optical fluence of 5J/cm(2) at the wavelength of 532 nm without damage to the same cells targeted without specific antibodies. Total elimination of human lymphoblasts from suspension of normal stem cells was achieved by a single laser pulse with the optical fluence of 1.7J/cm(2), while the damage level of normal cells was 16%.

摘要

我们描述了一种从细胞悬液中清除肿瘤细胞的新型离体方法——激光激活纳米热解,并提出将该方法用于骨髓和血液移植的净化。在实验中,通过激光诱导在选择性形成的吸光金纳米颗粒簇周围的单个靶细胞内产生的微气泡,K562细胞和人淋巴细胞白血病细胞被清除。用特异性单克隆抗体和Ig偶联的30纳米金颗粒对肿瘤细胞进行预处理,可在细胞膜表面形成10 - 20个的簇。电子显微镜在细胞内发现了纳米颗粒簇。在波长532纳米、光通量为5J/cm(2)的单次激光脉冲下,用特异性抗体靶向的K562细胞实现了完全(100%)清除,且未对未用特异性抗体靶向的相同细胞造成损伤。在光通量为1.7J/cm(2)的单次激光脉冲下,从正常干细胞悬液中实现了人淋巴母细胞的完全清除,而正常细胞的损伤水平为16%。

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