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保留免疫指纹的富磷脂 DC 囊泡:用于精准免疫治疗的稳定且可扩展平台

英文原题:Phospholipid-Rich DC-Vesicles with Preserved Immune Fingerprints: A Stable and Scalable Platform for Precision Immunotherapy.

PubMed 2025/05/26(内容时间) Biomedicines Q2 · IF 4.5(JCR 2025)

研究概要

鉴定出超过400种蛋白质的一致蛋白质组图谱,其中冷冻保存的样本保留了超过90%的免疫相关标志物。

中文摘要

尽管癌症免疫治疗取得了进展,但由于肿瘤微环境(TME)的免疫抑制性质、免疫细胞浸润有限以及免疫激活剂递送效率低下,实体瘤的治疗反应仍不理想。基于树突状细胞的疗法具有强大的免疫学潜力,但在活力、标准化和可扩展性方面面临挑战。同样,外泌体和 CAR-T 细胞受到不稳定性、生产复杂性以及在免疫排斥肿瘤环境中疗效有限的制约。目的:本研究评估嵌入富含磷脂结构支架中的树突状细胞来源囊泡(DC-Vesicles)作为一种多功能、可扩展的免疫调节和治疗递送平台。我们旨在评估其结构稳定性、在临床处理条件下免疫标志物的保留情况,以及重编程 TME 的潜力。方法与结果:DC-Vesicles 被制备并在三种条件下(新鲜、浓缩和冷冻保存)使用基于自下而上蛋白质组学的方法,通过 timsTOF Pro 2 系统上的 nanoLC-MS/MS 进行分析。鉴定出一致性超过 400 种蛋白质的蛋白质组谱,冷冻保存样品保留了 >90% 的免疫相关标志物。差异表达分析证实了关键免疫学蛋白质如 HLA-A、QSOX1、ICAM1、NAMPT、TIGAR 和 Galectin-9 的稳定性。冷冻保存后未观察到显著降解。通过热图、PCA 和火山图进行的可视化支持条件间一致性。计算机模拟建模提示其保留促进 M1 巨噬细胞极化和 CD8 + T 细胞活化的能力。结论:DC-Vesicles 在不同储存条件下表现出结构韧性和功能保留。其不依赖冷链的兼容性、免疫靶向特征以及可能被监管归类为非新化学实体(Non-NCEs),支持其作为耐药实体瘤精准免疫治疗候选药物推进。

展开英文摘要原文

Despite the progress in cancer immunotherapy, therapeutic responses in solid tumors remain suboptimal due to the immunosuppressive nature of the tumor microenvironment (TME), limited immune cell infiltration, and inefficient delivery of immune-activating agents. Dendritic cell-based therapies possess strong immunological potential but face challenges in viability, standardization, and scalability. Likewise, exosomes and CAR-T cells are hindered by instability, production complexity, and limited efficacy in immune-excluded tumor settings. Objective : This study evaluates dendritic cell-derived vesicles (DC-Vesicles), embedded in a phospholipid-rich structural scaffold, as a multi-functional and scalable platform for immune modulation and therapeutic delivery. We aimed to assess their structural stability, immune marker preservation under clinical processing conditions, and potential to reprogram the TME. Methods and Results : DC-Vesicles were generated and analyzed using bottom-up proteomics via nanoLC-MS/MS on a timsTOF Pro 2 system under three conditions: fresh, concentrated, and cryopreserved. A consistent proteomic profile of over 400 proteins was identified, with cryopreserved samples retaining >90% of immune-relevant markers. Differential expression analysis confirmed stability of key immunological proteins such as HLA-A, QSOX1, ICAM1, NAMPT, TIGAR, and Galectin-9. No significant degradation was observed post-cryopreservation. Visualization through heatmaps, PCA, and volcano plots supported inter-condition consistency. In silico modeling suggested preserved capacity for M1 macrophage polarization and CD8 + T cell activation. Conclusions : DC-Vesicles demonstrate structural resilience and functional retention across storage conditions. Their cold-chain-independent compatibility, immune-targeting profile, and potential regulatory classification as Non-New Chemical Entities (NCEs) support their advancement as candidates for precision immunotherapy in resistant solid tumors.

论文信息

作者
Gutierrez-Sandoval R、Gutierrez-Castro F、Muñoz-Godoy N、Rivadeneira I、Sobarzo A、Alarcón L、Dorado W、Lagos A
单位
Department of Oncopathology, OGRD Alliance, Lewes, DE 19958, USA.United States
期刊
Biomedicines2025 May 26
原文标识
PubMed 40564018 · DOI 10.3390/biomedicines13061299