CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:CD86 costimulation enhances the antitumor activity of NKG2D CAR-Macrophages and synergizes with Anti-PD-L1 therapy to suppress prostate cancer progression.
CD86 costimulation enhances the antitumor activity of NKG2D CAR-Macrophages and synergizes with Anti-PD-L1 therapy to suppress prostate cancer progression.
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前列腺癌仍然是全球男性中最常见的实体瘤之一,由于其免疫“冷”肿瘤微环境(TME),即T细胞浸润低、抗原呈递有限和免疫抑制因子水平高,构成了重大的治疗挑战。虽然嵌合抗原受体(CAR)T细胞疗法已经彻底改变了血液系统恶性肿瘤的治疗,但在前列腺癌等实体瘤中取得的成功有限。基于巨噬细胞的CAR(CAR-M)疗法已成为有前景的替代方案,因为巨噬细胞具有天然的肿瘤浸润能力、吞噬活性和调节TME的能力。
然而,由于共刺激信号不足,传统CAR-M引发适应性免疫的能力有限。为了解决这一局限性,我们为巨噬细胞设计了两种新型NKG2D靶向CAR构建体:一种仅含有细胞内Fc受体共同链(FcR)(CAR-M),另一种同时包含FcR和共刺激分子CD86的胞内结构域(CD86-CAR-M)。这些构建体在Raw264.7巨噬细胞中表达,并在体外评估了抗原特异性吞噬作用、肿瘤细胞细胞毒性、细胞因子分泌和T细胞活化。在体内,使用前列腺癌异种移植和同基因小鼠模型评估了疗效和安全性,包括与抗PD-L1检查点阻断的联合治疗。CAR-M和CD86-CAR-M在体外均表现出对表达NKG2D配体的前列腺癌细胞的强效、抗原特异性吞噬作用和细胞毒性。CD86-CAR-Ms表现出增强的M1极化、更高的CD86表达以及更优越的细胞毒性T淋巴细胞激活,并伴随IFN-和TNF-分泌增加。这种相互作用触发ERK的磷酸化,ERK是M1巨噬细胞极化和炎症反应的核心介质。在体内,CD86-CAR-Ms在免疫健全模型中比CAR-Ms实现了更强的肿瘤抑制和生存获益,并显著增强了抗PD-L1抗体治疗的疗效,且无全身毒性。改善的抗肿瘤效果与T细胞、NK细胞浸润增加以及巨噬细胞MHC-II表达升高相关,表明TME从冷肿瘤向热肿瘤重编程。
本研究首次展示了靶向NKG2D配体的CD86增强型CAR-巨噬细胞在前列腺癌中的应用。通过整合固有免疫和适应性免疫激活,CD86-CAR-Ms代表了一种新颖且强效的策略,用于克服免疫抑制并提高免疫检查点抑制剂在实体瘤中的治疗疗效。
Prostate cancer remains one of the most prevalent solid tumors in men worldwide and poses a major therapeutic challenge due to its immunologically "cold" tumor microenvironment (TME), which is characterized by low T cell infiltration, limited antigen presentation, and high levels of immunosuppressive factors.
While chimeric antigen receptor (CAR) T-cell therapy has revolutionized the treatment of hematologic malignancies, it has yielded limited success in solid tumors such as prostate cancer. Macrophage-based CAR (CAR-M) therapies have emerged as promising alternatives, owing to macrophages' natural tumor-infiltrating capacity, phagocytic activity, and ability to modulate the TME.
However, conventional CAR-Ms exhibit limited capacity to prime adaptive immunity due to insufficient co-stimulatory signaling. To address this limitation, we engineered two novel NKG2D-targeted CAR constructs for macrophages: one containing the intracellular Fc receptor common chain (FcR ) alone (CAR-M), and another incorporating both FcR and the intracellular domain of the co-stimulatory molecule CD86 (CD86-CAR-M). These constructs were expressed in Raw264. 7 macrophages or and evaluated for antigen-specific phagocytosis, tumor cell cytotoxicity, cytokine secretion, and T cell activation in vitro. In vivo efficacy and safety were assessed using both xenograft and syngeneic mouse models of prostate cancer, including combination therapy with anti-PD-L1 checkpoint blockade.
Both CAR-M and CD86-CAR-M exhibited robust, antigen-specific phagocytosis and cytotoxicity against NKG2D ligand-expressing prostate cancer cells in vitro. CD86-CAR-Ms demonstrated enhanced M1 polarization, higher expression of CD86 and superior activation of cytotoxic T lymphocytes, accompanied by increased secretion of IFN- and TNF- . This interaction triggers the phosphorylation of ERK, a central mediator of M1 macrophage polarization and inflammatory responses.
In vivo, CD86-CAR-Ms achieved greater tumor suppression and survival benefit than CAR-Ms in immunocompetent models and significantly enhanced the efficacy of anti-PD-L1 antibody therapy without systemic toxicity. The improved anti-tumor effect was associated with increased T cell, NK cell infiltration and macrophages MHC-II expression, indicating TME reprogramming from cold to hot one.
This study presents the first demonstration of CD86-enhanced CAR-macrophages targeting NKG2D ligands in prostate cancer. By integrating innate and adaptive immune activation, CD86-CAR-Ms represent a novel and potent strategy for overcoming immunosuppression and improving the therapeutic efficacy of immune checkpoint inhibitors in solid tumors.
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