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生物打印多组分水凝胶共培养肿瘤-免疫模型用于评估与模拟 TIL(肿瘤浸润淋巴细胞)迁移及功能激活

英文原题:Bioprinted Multicomponent Hydrogel Co-culture Tumor-Immune Model for Assessing and Simulating Tumor-Infiltrated Lymphocyte Migration and Functional Activation.

PubMed 2023/07/05(内容时间) ACS Appl Mater Interfaces Q1 · IF 7.8(JCR 2025)

研究概要

针对肿瘤的免疫反应以免疫系统各组分与肿瘤细胞之间的相互作用为特征。

中文摘要

针对肿瘤的免疫反应以免疫系统各组分与肿瘤细胞之间的相互作用为特征。在此,我们生物打印了一个包含两个不同区域的模型,分别含有胃癌患者来源类器官(PDOs)和TIL(肿瘤浸润淋巴细胞)(TILs)。初始的细胞分布允许在纵向研究TIL迁移模式的同时进行多重细胞因子分析。生物墨水的化学性质被设计为呈现物理屏障,免疫T细胞在浸润和向肿瘤迁移过程中必须突破这些屏障,所用材料为藻酸盐、明胶和基底膜混合物。TIL活性、脱颗粒以及蛋白水解活性的调控揭示了时间依赖性的生化动态。PDOs和TILs上分别表达的sFas和sFas配体的调控,以及穿孔素和颗粒酶的纵向分泌,证实了TIL在遇到PDO结构时的激活。TIL迁移图谱被用于建立确定性反应-平流扩散模型。该模拟提供了将被动与主动细胞迁移机制解耦的见解。TILs及其他过继性细胞疗法在浸润肿瘤屏障时所使用的机制目前了解甚少。本研究提出了一种免疫细胞的预筛选策略,其中跨ECM环境的运动性和激活是细胞适应性的关键指标。

展开英文摘要原文

The immune response against a tumor is characterized by the interplay among components of the immune system and neoplastic cells. Here, we bioprinted a model with two distinct regions containing gastric cancer patient-derived organoids (PDOs) and tumor-infiltrated lymphocytes (TILs). The initial cellular distribution allows for the longitudinal study of TIL migratory patterns concurrently with multiplexed cytokine analysis. The chemical properties of the bioink were designed to present physical barriers that immune T-cells must breech during infiltration and migration toward a tumor with the use of an alginate, gelatin, and basal membrane mix. TIL activity, degranulation, and regulation of proteolytic activity reveal insights into the time-dependent biochemical dynamics. Regulation of the sFas and sFas-ligand present on PDOs and TILs, respectively, and the perforin and granzyme longitudinal secretion confirms TIL activation when encountering PDO formations. TIL migratory profiles were used to create a deterministic reaction-advection diffusion model. The simulation provides insights that decouple passive from active cell migration mechanisms. The mechanisms used by TILs and other adoptive cell therapeutics as they infiltrate the tumor barrier are poorly understood. This study presents a pre-screening strategy for immune cells where motility and activation across ECM environments are crucial indicators of cellular fitness.

论文信息

作者
Flores-Torres S、Dimitriou NM、Pardo LA、Kort-Mascort J、Pal S、Peza-Chavez O、Kuasne H、Berube J
单位
Department of Bioengineering, McGill University, Montreal H3A 0G4, Quebec, Canada.Canada
期刊
ACS applied materials & interfaces2023 Jul 19
原文标识
PubMed 37404007 · DOI 10.1021/acsami.3c02995