首页> 外文会议>Photons Plus Ultrasound: Imaging and Sensing 2006; Progress in Biomedical Optics and Imaging; vol.7, no.9 >Elimination of leukemic cells from human transplants by laser nano-thermolysis
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Elimination of leukemic cells from human transplants by laser nano-thermolysis

机译:激光纳米热解法消除人类移植物中的白血病细胞

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We describe novel ex vivo method for elimination of tumor cells from bone marrow and blood, Laser Activated Nano-Thermolysis for Cell Elimination Technology (LANTCET) and propose this method for purging of transplants during treatment of leukemia. Human leukemic cells derived from real patients with different diagnoses (acute lymphoblastic leukemias) were selectively damaged by LANTCET in the experiments by laser-induced micro-bubbles that emerge inside individual specifically-targeted cells around the clusters of light-absorbing gold nanoparticles. Pretreatment of the transplants with diagnosis-specific primary monoclonal antibodies and gold nano-particles allowed the formation of nanoparticle clusters inside leukemic cells only. Electron microscopy found the nanoparticulate clusters inside the cells. Total (99.9%) elimination of leukemic cells targeted with specific antibodies and nanoparticles was achieved with single 10-ns laser pulses with optical fluence of 0.2 - 1.0 J/cm~2 at the wavelength of 532 nm without significant damage to normal bone marrow cells in the same transplant. All cells were studied for the damage/viability with several control methods after their irradiation by laser pulses. Presented results have proved potential applicability of developed LANTCET technology for efficient and safe purging (cleaning of residual tumor cells) of human bone marrow and blood transplants. Design of extra-corporeal system was proposed that can process the transplant for one patient for less than an hour with parallel detection and counting residual leukemic cells.
机译:我们描述了从骨髓和血液中消除肿瘤细胞的新型离体方法,用于细胞消除技术的激光激活纳米热解法(LANTCET),并提出了在白血病治疗期间用于清除移植物的这种方法。在实验中,LANTCET通过激光诱导的微泡(选择性地出现在吸光金纳米颗粒簇周围的单个特定靶细胞内),选择性地破坏了来自具有不同诊断的真实患者的急性白血病细胞(急性淋巴细胞白血病)。用诊断特异性的一级单克隆抗体和金纳米颗粒对移植物进行预处理,仅允许白血病细胞内部形成纳米颗粒簇。电子显微镜检查发现细胞内有纳米颗粒簇。用单个10 ns激光脉冲在532 nm波长处的光学通量为0.2-1.0 J / cm〜2时,可以完全消除(99.9%)被特异性抗体和纳米颗粒靶向的白血病细胞,而对正常骨髓细胞没有明显损害在同一移植中。在用激光脉冲辐照后,用几种控制方法研究了所有细胞的损伤/生存能力。目前的结果已证明,开发的LANTCET技术可有效,安全地清除(清除残留的肿瘤细胞)人类骨髓和血液移植物。提出了体外系统的设计,该系统可以并行检测并计数残留的白血病细胞,对一名患者的移植进行不到一个小时的处理。

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