RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Chronometric Administration of Cyclophosphamide and a Double-Stranded DNA-Mix at Interstrand Crosslinks Repair Timing, Called "Karanahan" Therapy, Is Highly Efficient in a Weakly Immunogenic Lewis Carcinoma Model.
Chronometric Administration of Cyclophosphamide and a Double-Stranded DNA-Mix at Interstrand Crosslinks Repair Timing, Called "Karanahan" Therapy, Is Highly Efficient in a Weakly Immunogenic Lewis Carcinoma Model.
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研究者开发了一种名为“Karanahan”的新技术:按时间精准给予环磷酰胺和一种复合双链 DNA 化合物,给药时机严格依照链间交联修复时间安排。该技术可清除肿瘤起始干细胞,并使已分化的肿瘤细胞发生大规模凋亡。本研究在 Lewis 癌模型中评估这一新方法的疗效。
为确定该方法的基本指示参数,研究者评估肿瘤细胞 DNA 修复持续时间及其在细胞周期中的分布。按制定方案,对移植小鼠股部区域的一个或两个肿瘤进行注射。研究在不同时间段开展 4 组实验,测定骨髓和外周血中低分化 CD34⁺/TAMRA⁺ 细胞含量,并通过免疫染色和流式细胞术分析免疫细胞亚群。
新技术对实验性 Lewis 癌显示出较强抗肿瘤效力。疗效取决于肿瘤生长部位数量、季节和年份特征。部分实验中,单个肿瘤小鼠有 70% 达到长期缓解,两个肿瘤小鼠为 60%。在具有两个移植瘤的小鼠中,宿主低分化造血细胞和肿瘤干样细胞的动员能力均显著下降。该技术还可激活特异性免疫反应:血液、肿瘤和脾脏中的 NK 细胞群增加;肿瘤和脾脏中的杀伤性 T 细胞和辅助性 T 细胞增加;肿瘤中的 CD11b⁺Ly-6C⁺ 和 CD11b⁺Ly-6G⁺ 细胞增加,并在肿瘤中发现成熟树突状细胞群。
实验结果显示 Karanahan 方法对不可治愈的 Lewis 癌有效。因此,该疗法是一种治疗实验性肿瘤的新方法,具有发展为人类个体化抗肿瘤疗法的潜力。
Background and Aims: A new technology based on the chronometric administration of cyclophosphamide and complex composite double-stranded DNA-based compound, which is scheduled in strict dependence on interstrand crosslinks repair timing, and named "Karanahan", has been developed. Being applied, this technology results in the eradication of tumor-initiating stem cells and full-scale apoptosis of committed tumor cells. In the present study, the efficacy of this novel approach has been estimated in the model of Lewis carcinoma. Methods: To determine the basic indicative parameters for the approach, the duration of DNA repair in tumor cells, as well as their distribution along the cell cycle, have been assessed. Injections were done into one or both tumors in femoral region of the engrafted mice in accordance with the developed regimen. Four series of experiments were carried out at different periods of time. The content of poorly differentiated CD34 + /TAMRA+ cells in the bone marrow and peripheral blood has been determined.
Immunostaining followed by the flow cytometry was used to analyze the subpopulations of immune cells. Results: The high antitumor efficacy of the new technology against the developed experimental Lewis carcinoma was shown. It was found that the therapy efficacy depended on the number of tumor growth sites, seasonal and annual peculiarities. In some experiments, a long-term remission has been reached in 70% of animals with a single tumor and in 60% with two tumors.
In mice with two developed grafts, mobilization capabilities of both poorly differentiated hematopoietic cells of the host and tumor stem-like cells decrease significantly. Being applied, this new technology was shown to activate a specific immune response.
There is an increase in the number of NK cell populations in the blood, tumor, and spleen, killer T cells and T helper cells in the tumor and spleen, CD11b+Ly-6C+ and CD11b+Ly-6G+ cells in the tumor. A population of mature dendritic cells is found in the tumor. Conclusion: The performed experiments indicate the efficacy of the Karanahan approach against incurable Lewis carcinoma.
Thus, the discussed therapy is a new approach for treating experimental neoplasms, which has a potential as a personalized anti-tumor therapeutic approach in humans.
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