CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-dependent myeloid and lymphoid cell recruitment in genO-BRGSF-HIS mice: a novel tool for evaluating immunotherapies.
Tumor-dependent myeloid and lymphoid cell recruitment in genO-BRGSF-HIS mice: a novel tool for evaluating immunotherapies.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
genO-BRGSF-HIS 小鼠在 CD34+脐血细胞重建后未表现出与人淋巴和髓系细胞发育相关的不良反应,其延长的寿命允许更长的实验研究窗口。总体而言,我们表明该模型可发育出功能性的髓系和淋巴系细胞,这些细胞被招募至 TME,使其成为测试调节肿瘤与免疫系统相互作用的新型免疫疗法的宝贵工具。
需要能够准确再现人类免疫反应,特别是在肿瘤微环境(TME)中的临床前模型,以用于新疗法的转化和预测性测试。在此,我们研究以CD34+脐血细胞移植后人类淋巴和髓系细胞均强劲重建为特征的genO-BRGSF-HIS模型,是否可作为人类肿瘤生物学的可转化小鼠模型以及评估新型免疫疗法的相关平台。
genO-BRGSF小鼠经人CD34+脐血细胞重建(genO-BRGSF-HIS),并接受外源性人Flt3配体(hFlt3L)处理。在给予不同化合物(TLR激动剂、TREM1激动剂、STING激动剂或T细胞衔接器)处理后以及植入不同肿瘤细胞系(MDA-MB-231、A549、HPAF-II)后,分析了髓系和树突状细胞的功能。
我们展示,在植入不同肿瘤细胞系的genO-BRGSF-HIS小鼠中,髓系、树突状和淋巴系细胞(包括NK和γδ T细胞)具有功能并被招募到TME中,并且不同的免疫细胞群体在TME内被激活并发生极化。TME的组成取决于肿瘤类型和肿瘤负荷,表明人免疫系统与肿瘤细胞之间的串扰具有可塑性。此外,我们观察到被招募到TME中的细胞发生极化,以及被招募细胞群体具有广泛多样性,提示该模型在癌症背景下再现了人类病理生理学。基于不同细胞群体根据肿瘤类型被招募,我们还证明该模型可用于测试靶向淋巴系细胞的新疗法,例如T-cell engagers。
Preclinical models that accurately recapitulate the human immune response, particularly within the tumor microenvironment (TME), are needed for the translational and predictive testing of new therapies. Here, we examine whether the genO-BRGSF-HIS model-characterized by robust reconstitution of both human lymphoid and myeloid cells following engraftment with CD34 + cord blood cells-could be a translatable mouse model for human tumor biology and a relevant platform for evaluating novel immunotherapies.
genO-BRGSF mice were reconstituted with human CD34 + cord blood cells (genO-BRGSF-HIS) and treated with exogenous human Flt3 ligand (hFlt3L). Myeloid and dendritic cell functionality was analyzed following treatment with different compounds (TLR agonists, TREM1 agonist, STING agonist, or T-cell engagers) and following the implantation of different tumor cell lines (MDA-MB-231, A549, HPAF-II).
We show that myeloid, dendritic and lymphoid cells (including NK and γδ T cells) are functional and recruited into the TME in genO-BRGSF-HIS mice implanted with different tumor cell lines, and that different immune cell populations are activated and get polarized within the TME. The composition of the TME is dependent on tumor type and tumor burden, demonstrating plasticity in the crosstalk between the human immune system and the tumor cells. Furthermore, we observed polarization of the cells recruited to the TME, as well as a wide diversity of recruited cell populations, suggesting that this model reproduces human physiopathology in the context of cancer. Based on the recruitment of the different cell populations according to tumor type, we also demonstrate that this model can be used for testing new therapies targeting lymphoid cells, such as T-cell engagers.
genO-BRGSF-HIS mice do not exhibit adverse effects associated with the development of human lymphoid and myeloid cells following CD34 + cord blood cell reconstitution, and their extended lifespan allows for longer experimental study windows. Overall, we show that this model develops functional myeloid and lymphoid cells which are recruited to the TME, making it a valuable tool for testing new immunotherapies that modulate the interaction between the tumor and the immune system.
在 PubMed 查看 → 出版商原文(DOI) 全文 PDF(PMC)· 可下载 治疗专题与资料阅读指南 资料来源与翻译说明 报告译文或资料问题 →
MEMBER ACCOUNT
登录成功会直接打开下一页。