基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
过继性自然杀伤(NK)细胞疗法是治疗三阴性乳腺癌的一种有前景的策略,但其疗效往往受到瘤内持久性差以及在免疫抑制性肿瘤微环境中功能耗竭的限制。
英文原题:Establishment of a humanized mouse model using steady-state peripheral blood-derived hematopoietic stem and progenitor cells facilitates screening of cancer-targeted T-cell repertoires.
我们构建了个性化人源化小鼠模型,用于筛选靶向肿瘤的 TCR-T 库。
靶向癌症的T细胞受体T细胞有望治疗血液肿瘤和乳腺癌,但获取肿瘤反应性TCR-T细胞的现有方法尚不理想。本研究开发一种新筛选策略,利用具有个体化免疫特征的人源化小鼠模型。研究者从稳态外周血单个核细胞的三维培养中扩增稀有造血干/祖细胞,并建立人源化小鼠;随后通过反复免疫,获得靶向B细胞前体肿瘤和三阴性乳腺癌细胞的TCR-T细胞并进行TCR测序。处理后T细胞多样性和克隆性增加,TCR基因片段及V-J组合使用特征发生变化,并出现明显克隆扩增。肿瘤负荷和生存分析显示,该刺激可显著抑制后续输入的活肿瘤细胞生长并延长小鼠生存。该个体化人源化小鼠平台可筛选癌症靶向TCR-T细胞群,为设计患者特异性工程化T细胞提供来源。
BACKGROUND: Cancer-targeted T-cell receptor T (TCR-T) cells hold promise in treating cancers such as hematological malignancies and breast cancers. However, approaches to obtain cancer-reactive TCR-T cells have been unsuccessful. METHODS: Here, we developed a novel strategy to screen for cancer-targeted TCR-T cells using a special humanized mouse model with person-specific immune fingerprints. Rare steady-state circulating hematopoietic stem and progenitor cells were expanded via three-dimensional culture of steady-state peripheral blood mononuclear cells, and then the expanded cells were applied to establish humanized mice. The human immune system was evaluated according to the kinetics of dendritic cells, monocytes, T-cell subsets, and cytokines. To fully stimulate the immune response and to obtain B-cell precursor NAML-6- and triple-negative breast cancer MDA-MB-231-targeted TCR-T cells, we used the inactivated cells above to treat humanized mice twice a day every 7 days. Then, human T cells were processed for TCR -chain (TRB) sequencing analysis. After the repertoires had been constructed, features such as the fraction, diversity, and immune signature were investigated. RESULTS: The results demonstrated an increase in diversity and clonality of T cells after treatment. The preferential usage and features of TRBV, TRBJ, and the V-J combination were also changed. The stress also induced highly clonal expansion. Tumor burden and survival analysis demonstrated that stress induction could significantly inhibit the growth of subsequently transfused live tumor cells and prolong the survival of the humanized mice. CONCLUSIONS: We constructed a personalized humanized mouse model to screen cancer-targeted TCR-T pools. Our platform provides an effective source of cancer-targeted TCR-T cells and allows for the design of patient-specific engineered T cells. It therefore has the potential to greatly benefit cancer treatment.
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