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高静压处理生成具有免疫原性特征的失活哺乳动物肿瘤细胞。

High hydrostatic pressure treatment generates inactivated mammalian tumor cells with immunogeneic features.

机构信息

Department of Radiation Oncology, Friedrich-Alexander-University of Erlangen-Nuremberg, Erlangen, Germany.

出版信息

J Immunotoxicol. 2010 Jul-Sep;7(3):194-204. doi: 10.3109/15476911003657414.

Abstract

Most of the classical therapies for solid tumors have limitations in achieving long-lasting anti-tumor responses. Therefore, treatment of cancer requires additional and multimodal therapeutic strategies. One option is based on the vaccination of cancer patients with autologous inactivated intact tumor cells. The master requirements of cell-based therapeutic tumor vaccines are the: (a) complete inactivation of the tumor cells; (b) preservation of their immunogenicity; and (c) need to remain in accordance with statutory provisions. Physical treatments like freeze-thawing and chemotherapeutics are currently used to inactivate tumor cells for vaccination purposes, but these techniques have methodological, therapeutic, or legal restrictions. For this reason, we have proposed the use of a high hydrostatic pressure (HHP) treatment (p >or= 100 MPa) as an alternative method for the inactivation of tumor cells. HHP is a technique that has been known for more than 100 years to successfully inactivate micro-organisms and to alter biomolecules. In the studies here, we show that the treatment of MCF7, B16-F10, and CT26 tumor cells with HHP >or= 300 MPa results in mainly necrotic tumor cell death forms displaying degraded DNA. Only CT26 cells yielded a notable amount of apoptotic cells after the application of HHP. All tumor cells treated with >or= 200 MPa lost their ability to form colonies in vitro. Furthermore, the pressure-inactivated cells retained their immunogenicity, as tested in a xenogeneic as well as syngeneic mouse models. We conclude that the complete tumor cell inactivation, the degradation of the cell's nuclei, and the retention of the immunogeneic potential of these dead tumor cells induced by HHP favor the use of this technique as a powerful and low-cost technique for the inactivation of tumor cells to be used as a vaccine.

摘要

大多数实体瘤的经典疗法在实现持久的抗肿瘤反应方面存在局限性。因此,癌症的治疗需要额外的、多模式的治疗策略。一种选择是基于用自体灭活完整肿瘤细胞对癌症患者进行疫苗接种。基于细胞的治疗性肿瘤疫苗的主要要求是:(a) 完全灭活肿瘤细胞;(b) 保留其免疫原性;和(c) 需要符合法定规定。目前,物理处理如冻融和化疗被用于为接种目的而灭活肿瘤细胞,但这些技术具有方法学、治疗学或法律上的限制。出于这个原因,我们提出使用高静压(HHP)处理(p>or=100MPa)作为灭活肿瘤细胞的替代方法。HHP 是一种技术,已经有超过 100 年的历史,可以成功地灭活微生物并改变生物分子。在本研究中,我们表明,用 HHP>or=300MPa 处理 MCF7、B16-F10 和 CT26 肿瘤细胞导致主要是坏死的肿瘤细胞死亡形式,显示降解的 DNA。只有 CT26 细胞在应用 HHP 后产生了大量的凋亡细胞。所有用>or=200MPa 处理的肿瘤细胞均失去了在体外形成集落的能力。此外,用压力灭活的细胞保留了其免疫原性,在异种和同基因小鼠模型中进行了测试。我们得出结论,HHP 诱导的完全肿瘤细胞灭活、细胞核降解以及这些死亡肿瘤细胞的免疫原性潜力的保留,有利于将该技术用作强大且低成本的肿瘤细胞灭活技术,用于作为疫苗。

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