CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Minimally Invasive Preclinical Monitoring of the Peritoneal Cavity Tumor Microenvironment.
Minimally Invasive Preclinical Monitoring of the Peritoneal Cavity Tumor Microenvironment.
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小鼠腹腔内(i.p.)实验模型可模拟腹部癌症的腹腔播散过程,并有助于揭示未来临床治疗取得成功的关键信息。腹腔内细胞组成也常在多种其他病理生理状态的临床前模型中研究,包括肝硬化、感染、自身免疫和衰老。腹腔是一个多层次的微环境,含有多种免疫细胞群,包括T细胞、B细胞、NK细胞以及巨噬细胞等髓系细胞。腹腔分析通常需要处死小鼠并进行终末腹腔灌洗,因此无法对同一只小鼠的腹腔进行连续监测;若需评估多个时间点,则需使用更多小鼠,增加研究成本、耗时和变异性。本研究介绍了一种简单的新方法——体内腹腔灌洗(IVIPL),可微创监测小鼠腹腔内细胞。在概念验证研究中,IVIPL为腹腔肿瘤微环境的实时观察提供了信息,可用于卵巢癌疗法的开发和研究。具体而言,研究者在高级别浆液性卵巢癌(HGSOC)人源异种移植小鼠模型中研究CAR-T 细胞疗法,并在HGSOC小鼠同系模型中分析腹腔肿瘤微环境的免疫组成。
Intraperitoneal (i. p.) experimental models in mice can recapitulate the process of i. p. dissemination in abdominal cancers and may help uncover critical information about future successful clinical treatments. i. p. cellular composition is studied in preclinical models addressing a wide spectrum of other pathophysiological states such as liver cirrhosis, infectious disease, autoimmunity, and aging.
The peritoneal cavity is a multifaceted microenvironment that contains various immune cell populations, including T, B, NK, and various myeloid cells, such as macrophages. Analysis of the peritoneal cavity is often obtained by euthanizing mice and performing terminal peritoneal lavage. This procedure inhibits continuous monitoring of the peritoneal cavity in a single mouse and necessitates the usage of more mice to assess the cavity at multiple timepoints, increasing the cost, time, and variability of i. p. studies.
Here, we present a simple, novel method termed in vivo intraperitoneal lavage (IVIPL) for the minimally invasive monitoring of cells in the peritoneal cavity of mice. In this proof-of-concept, IVIPL provided real-time insights into the i. p. tumor microenvironment for the development and study of ovarian cancer therapies. Specifically, we studied CAR-T cell therapy in a human high-grade serous ovarian cancer (HGSOC) xenograft mouse model, and we studied the immune composition of the i. p. tumor microenvironment (TME) in a mouse HGSOC syngeneic model.
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