LBPO.TB03 · 肿瘤生物学 · Late-Breaking
利用患者来源肺泡类器官与PBMC共培养模型评估免疫检查点抑制剂诱导的肺毒性
Evaluation of immune-checkpoint inhibitor-induced pneumotoxicity using a patient-derived alveolar organoid and PBMC co-culture model
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
免疫检查点抑制剂(ICI),如Pembrolizumab(抗PD-1)和Atezolizumab(抗PD-L1),已彻底改变了肿瘤学领域。然而,其使用常因免疫相关不良事件(irAE)而受限,其中检查点抑制剂性肺炎(CIP)是临床上最重要且潜在致命的毒性之一。目前的临床前模型,包括传统的2D细胞培养和动物模型,往往无法准确重现复杂的人类肺泡微环境和免疫反应。在本研究中,我们建立了人源肺泡类器官与外周血单个核细胞(PBMC)共培养系统,以在体外评估ICI诱导的免疫毒性。
• 样本采集:从24名健康供者获取肺泡组织,从20名健康志愿者分离PBMC。
• 类器官培养:分离人肺泡上皮细胞并在3D细胞外基质中培养,以形成成熟的肺泡类器官。
• 共培养系统:为模拟肺部免疫环境,将肺泡类器官与自体或异体PBMC共培养。
• ICI处理:以不同浓度的临床级Pembrolizumab和Atezolizumab处理共培养模型。
• 毒性评估:*使用Calcein AM染色可视化类器官的细胞活力和结构完整性。
• 为进一步表征炎症反应,目前正在优化通过ELISA/Luminex进行的细胞因子谱分析,以量化局部"细胞因子风暴"效应。所建立的肺泡类器官成功维持了肺泡II型(AT2)标志物(如SFTPC)的表达。在与PBMC共培养并使用Pembrolizumab或Atezolizumab处理后,观察到类器官损伤呈剂量依赖性增加。与对照组相比,Calcein AM染色显示ICI处理组出现明显的形态学改变和绿色荧光强度降低,表明由于免疫细胞过度激活导致上皮活力丧失。虽然确切的细胞因子分泌数据目前仍在处理中,但上皮破坏的初步可视化证据提示,ICI的存在在这种3D结构中触发了对健康肺泡细胞的侵袭性T细胞介导攻击。我们的研究结果表明,人肺泡类器官-PBMC共培养模型有效地重现了ICI诱导肺毒性所涉及的细胞相互作用。经Calcein AM染色验证的形态学退化提示,该平台可作为预测irAE的高保真替代模型。一旦整合细胞因子分析,该模型将提供一个全面的工具,用于筛选下一代免疫疗法的安全性特征并制定肺炎的局部管理策略。
查看英文原文 English abstract
Immune-checkpoint inhibitors (ICIs), such as Pembrolizumab (anti-PD-1) and Atezolizumab (anti-PD-L1), have revolutionized oncology. However, their use is frequently limited by immune-related adverse events (irAEs), with checkpoint inhibitor-pneumonitis (CIP) being one of the most clinically significant and potentially fatal toxicities. Current preclinical models, including traditional 2D cell cultures and animal models, often fail to accurately recapitulate the complex human alveolar microenvironment and immune responses. In this study, we established a human-derived alveolar organoid and peripheral blood mononuclear cell (PBMC) co-culture system to evaluate ICI-induced immunotoxicity in vitro.
• Sample Collection: Alveolar tissues were obtained from 24 healthy donors, and PBMCs were isolated from 20 healthy volunteers.
• Organoid Culture: Human alveolar epithelial cells were isolated and cultured in a 3D extracellular matrix to form mature alveolar organoids.
• Co-culture System: To simulate the lung immune environment, alveolar organoids were co-cultured with autologous or allogeneic PBMCs.• ICI Treatment: The co-culture models were treated with clinical-grade Pembrolizumab and Atezolizumab at varying concentrations.
• Toxicity Assessment: * Cell viability and structural integrity of the organoids were visualized using Calcein AM staining.
• To further characterize the inflammatory response, cytokine profiling via ELISA/Luminex is currently being optimized to quantify the localized "cytokine storm" effect.The established alveolar organoids successfully maintained the expression of alveolar type II (AT2) markers (e.g., SFTPC). Upon co-culture with PBMCs and treatment with Pembrolizumab or Atezolizumab, a dose-dependent increase in organoid damage was observed. Calcein AM staining revealed significant morphological changes and a decrease in green fluorescence intensity in the ICI-treated groups compared to the control group, indicating loss of epithelial viability due to hyper-activated immune cells. While the definitive cytokine secretion data are currently being processed, the preliminary visual evidence of epithelial destruction suggests that the presence of ICIs triggers an aggressive T-cell mediated attack on healthy alveolar cells within this 3D architecture. Our findings demonstrate that the human alveolar organoid-PBMC co-culture model effectively replicates the cellular interactions involved in ICI-induced pneumotoxicity. The observed morphological degradation validated by Calcein AM staining suggests that this platform can serve as a high-fidelity surrogate for predicting irAEs. Once cytokine analysis is integrated, this model will provide a comprehensive tool for screening the safety profiles of next-generation immunotherapies and developing localized management strategies for pneumonitis.
利益披露 Disclosure
J. Lim, None..
I. Kim, None..
B. Song, None..
S. Oh, None.