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残留实体瘤的引导免疫治疗:整合血小板与 CAR T 细胞以减少术后复发

英文原题:Guided immunotherapy for residual solid tumor: integrating platelets and CAR T cells to reduce post-surgical recurrence.

PubMed 2026/07/03(内容时间) Biomark Res Q1 · IF 14.6(JCR 2025)

研究概要

这些过程共同形成保护性生态位,使微小残留病灶得以逃避免疫监视并启动转移性生长。

中文摘要

即使实现肉眼可见肿瘤完全切除,术后复发仍是实体瘤患者获得持久缓解的主要障碍。越来越多证据提示,手术会形成一个短暂但高度利于肿瘤生长的生物学窗口,其特征包括炎症信号、凝血活化、内皮损伤和全身免疫抑制。这些过程共同形成保护性生态位,使微小残留病逃避免疫监视并启动转移性生长。尽管现代辅助治疗改善了结局,其疗效常受肿瘤部位特异性不足、全身毒性、免疫细胞归巢能力差和肿瘤异质性限制。因此,仍迫切需要能在残留肿瘤细胞最脆弱时予以清除的精准生物学策略。传统上被视为止血介质的血小板,如今被认为是肿瘤进展的主动调节者。血小板促进纤维蛋白沉积、保护循环肿瘤细胞免受免疫攻击并塑造炎症网络,因而无意中支持术后肿瘤存活。矛盾的是,这些引导血小板到达创伤部位的特性也带来重要治疗机会:利用血小板介导的归巢机制,将免疫疗法精准递送至富含纤维蛋白、容易发生复发的手术床。本综述提出一种血小板引导的CAR-T平台,利用内源性创伤生物学构建精准免疫治疗递送系统。该策略将血小板膜包被或血小板-CAR-T偶联与凝血酶响应型生物材料储库结合,以增强局部效应细胞滞留、提高效靶比并延长功能持久性。通过亲和力调节、逻辑门控活化和可诱导自杀开关等可编程安全机制,降低血栓炎症风险,同时保留疗效。这些机制可将活性限制在适当情境,并允许在发生不良事件时受控关闭,从而提高总体安全性。结合循环生物标志物指导的微小残留病患者选择后,该方法可形成具有临床可操作性的围手术期干预框架。新兴临床前证据提示,局部血小板辅助递送可减少循环肿瘤细胞负荷,与免疫佐剂联合时增强抗原呈递,并较全身治疗更有效抑制复发。通过严格安全性验证、可扩展制造和富集生物标志物的临床试验,血小板引导CAR-T疗法有望将术后微环境从肿瘤存活的避难所转变为实现持久免疫清除的精准靶区。 临床试验编号:不适用。

展开英文摘要原文

Postoperative recurrence remains a major obstacle to durable remission in patients with solid tumors, even after complete macroscopic resection. Growing evidence suggests that surgery creates a transient yet highly permissive biological window characterized by inflammatory signaling, coagulation activation, endothelial disruption, and systemic immune suppression. Together, these processes foster a protective niche that enables microscopic residual disease to evade immune surveillance and initiate metastatic outgrowth. Although modern adjuvant therapies have improved outcomes, their effectiveness is often limited by inadequate tumor-site specificity, systemic toxicity, poor immune cell trafficking, and tumor heterogeneity. Consequently, a critical unmet clinical need persists for biologically precise strategies capable of eliminating residual tumor cells at their point of vulnerability. Platelets, traditionally viewed as mediators of hemostasis, are now recognized as active regulators of tumor progression. By facilitating fibrin deposition, shielding circulating tumor cells from immune attack, and shaping inflammatory networks, platelets inadvertently support the survival of postoperative tumors. Paradoxically, these same wound-targeting properties create a compelling therapeutic opportunity: leveraging platelet-driven homing mechanisms to direct immunotherapy precisely to fibrin-rich surgical beds where recurrence often originates. In this review, we propose a platelet-guided CAR-T platform that leverages endogenous wound biology to create a precision immunotherapeutic delivery system. This strategy integrates platelet membrane cloaking or platelet-CAR-T conjugation with thrombin-responsive biomaterial depots to enhance local effector retention, amplify effector-to-target ratios, and prolong functional persistence. Programmable safety features, including affinity tuning, logic-gated activation, and inducible suicide switches, are used to reduce thrombo-inflammatory risk while preserving therapeutic efficacy. These mechanisms restrict activity to appropriate contexts and allow controlled shutdown in case of adverse events, improving overall safety. When coupled with minimal residual disease-guided patient selection using circulating biomarkers, this approach establishes a clinically actionable framework for perioperative intervention. Emerging preclinical evidence suggests that localized platelet-assisted delivery can reduce circulating tumor cell burden, enhance antigen presentation when combined with immune adjuvants, and suppress recurrence more effectively than systemic therapies. With rigorous safety validation, scalable manufacturing, and biomarker-enriched clinical trials, platelet-guided CAR-T therapy has the potential to transform the postoperative microenvironment from a sanctuary of tumor survival into a targeted domain for durable immune-mediated eradication.Clinical trial numberNot applicable.

论文信息

作者
Heydari F、Zendehdel H、Varkiani MM、Fahmi S、Derakhshani M、Anvari S、Farhid F、Hamblin MR
第一作者单位
Blood Transfusion Research Center, High Institute for Research and Education in Transfusion Medicine, Iranian Blood Transfusion Organization Building, Next to the Milad Tower, Hemmat Exp. Way, P. O. Box: 14665-1157, Tehran, Iran.Iran
通讯作者单位
Blood Transfusion Research Center, High Institute for Research and Education in Transfusion Medicine, Iranian Blood Transfusion Organization Building, Next to the Milad Tower, Hemmat Exp. Way, P. O. Box: 14665-1157, Tehran, Iran. jalalalinaghinezhad@gmail.com.Iran
文献类型
综述
期刊
Biomarker research2026 Jul 3
原文标识
PubMed 42400102 · DOI 10.1186/s40364-026-00957-5