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一种多器官芯片,用于在基于 3D 基质的肿瘤模型中重现循环 NK 细胞的浸润和细胞毒性活性

英文原题:A multi-organ-on-chip to recapitulate the infiltration and the cytotoxic activity of circulating NK cells in 3D matrix-based tumor model.

查看英文原题

A multi-organ-on-chip to recapitulate the infiltration and the cytotoxic activity of circulating NK cells in 3D matrix-based tumor model.

PubMed 2022/07/25(内容时间) Front Bioeng Biotechnol Q1 · IF 5.8(JCR 2025)

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中文摘要

免疫治疗方法的成功严格依赖于免疫细胞与癌细胞的相互作用。传统的体外细胞培养无法充分体现肿瘤微环境的复杂性和动态串扰,而动物模型又无法解析人类免疫系统的抗肿瘤活性。

因此,开发可靠且具有预测性的临床前模型对于免疫治疗方法的筛选已变得至关重要。我们在此提出一种基于器官芯片(OOC)的方法,用于在人源化、流体动态环境中重现免疫细胞自然杀伤(NK)细胞在生理流体流动下的迁移、在3D肿瘤基质内的浸润以及对神经母细胞瘤癌细胞的激活。循环NK细胞主动启动向物理隔离的肿瘤微环境的自发性“外渗”过程,保持其与基质包埋肿瘤细胞相互作用的能力,并表现出细胞毒性效应(肿瘤细胞凋亡)。由于NK细胞的浸润和表型与预后及免疫治疗反应相关,其表型也被研究:最重要的是,观察到在迁移和浸润的群体中CD16阳性NK细胞明显减少。所提出的基于免疫-肿瘤OOC的模型代表了一种有前景的方法,能够忠实再现人类病理,并有效用于免疫治疗测试,最终实现个性化前景。一种免疫器官芯片,用于在3D肿瘤模型中重现循环免疫细胞的肿瘤介导浸润。

展开英文摘要原文

The success of immunotherapeutic approaches strictly depends on the immune cells interaction with cancer cells. While conventional in vitro cell cultures under-represent the complexity and dynamic crosstalk of the tumor microenvironment, animal models do not allow deciphering the anti-tumor activity of the human immune system.

Therefore, the development of reliable and predictive preclinical models has become crucial for the screening of immune-therapeutic approaches.

We here present an organ-on-chip organ on chips (OOC)-based approach for recapitulating the immune cell Natural Killer (NK) migration under physiological fluid flow, infiltration within a 3D tumor matrix, and activation against neuroblastoma cancer cells in a humanized, fluid-dynamic environment. Circulating NK cells actively initiate a spontaneous "extravasation" process toward the physically separated tumor niche, retaining their ability to interact with matrix-embedded tumor cells, and to display a cytotoxic effect (tumor cell apoptosis).

Since NK cells infiltration and phenotype is correlated with prognosis and response to immunotherapy, their phenotype is also investigated: most importantly, a clear decrease in CD16-positive NK cells within the migrated and infiltrated population is observed.

The proposed immune-tumor OOC-based model represents a promising approach for faithfully recapitulating the human pathology and efficiently employing the immunotherapies testing, eventually in a personalized perspective. An immune-organ on chip to recapitulate the tumor-mediated infiltration of circulating immune cells within 3D tumor model.

论文信息

作者
Marzagalli M、Pelizzoni G、Fedi A、Vitale C、Fontana F、Bruno S、Poggi A、Dondero A
第一作者单位
React4life S.r.l, Genoa, Italy.Italy
通讯作者单位
National Research Council, CNR-IEIIT, Genoa, Italy.Italy
期刊
Frontiers in bioengineering and biotechnology2022
原文标识
PubMed 35957642 · DOI 10.3389/fbioe.2022.945149