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STING 激活层状双氢氧化物纳米佐剂用于增强癌症免疫治疗

英文原题:STING-activating layered double hydroxide nano-adjuvants for enhanced cancer immunotherapy.

查看英文原题

STING-activating layered double hydroxide nano-adjuvants for enhanced cancer immunotherapy.

PubMed 2025/03/26(内容时间) Biomaterials Q1 · IF 13.6(JCR 2025)

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中文摘要

癌症疫苗是肿瘤学中一种有前景的治疗策略,但其有效性常受到抗原靶向不理想、细胞免疫诱导不足以及免疫抑制性肿瘤微环境的限制。需要先进的递送系统和强效佐剂来应对这些挑战,尽管已获批用于人类疫苗的佐剂种类有限,而能够刺激强效细胞免疫应答的佐剂则更少。

在本研究中,我们通过将 STING 激动剂锰整合到层状双氢氧化物纳米支架中,并包封模型抗原卵清蛋白(OVA),构建了一个独特的自佐剂平台(MLDHs)。MLDHs 平台包括 Mn 掺杂的 MgAl-LDH(MLMA)和 Mn 掺杂的 MgFe-LDH(MLMF)。皮下注射后,OVA/MLDHs 特异性蓄积于淋巴结(LNs)内,并被驻留的抗原呈递细胞内化。MLDHs 的內体降解促进了抗原和 Mn2+ 的胞质释放,促进交叉呈递并触发 STING 通路,进而诱导针对肿瘤的强效细胞免疫应答。

值得注意的是,与 OVA/MLMA 相比,OVA/MLMF 在TIL(肿瘤浸润淋巴细胞)中诱导了更强的 M1 巨噬细胞极化和更有效的 T 细胞应答,导致 B16F10-OVA 荷瘤小鼠出现显著肿瘤消退,且不良反应极小。

此外,将 MLMF 与血管破坏剂 Vadimezan 联合使用可破坏通常对免疫细胞浸润具有抵抗性的肿瘤中央区域,进一步延长荷瘤小鼠的生存期。这一创新策略可能显示出改善癌症免疫治疗的巨大潜力,并为未来更有效的治疗带来希望。

展开英文摘要原文

Cancer vaccines represent a promising therapeutic strategy in oncology, yet their effectiveness is often hampered by suboptimal antigen targeting, insufficient induction of cellular immunity, and the immunosuppressive tumor microenvironment. Advanced delivery systems and potent adjuvants are needed to address these challenges, though a restricted range of adjuvants for human vaccines that are approved, and even fewer are capable of stimulating robust cellular immune response.

In this work, we engineered a unique self-adjuvanted platform (MLDHs) by integrating STING agonists manganese into a layered double hydroxide nano-scaffold, encapsulating the model antigen ovalbumin (OVA). The MLDHs platform encompasses Mn-doped MgAl-LDH (MLMA) and Mn-doped MgFe-LDH (MLMF).

Upon subcutaneous injection, OVA/MLDHs specifically accumulated within lymph nodes (LNs), where they were internalized by resident antigen-presenting cells. The endosomal degradation of MLDHs facilitated the cytoplasmic release of antigen and Mn 2+ , promoting cross-presentation and triggering the STING pathway, which in turn induced a potent cellular immune response against tumors.

Notably, OVA/MLMF induced stronger M1 macrophage polarization and a more potent T-cell response within tumor-infiltrating lymphocytes compared to OVA/MLMA, leading to significant tumor regression in B16F10-OVA bearing mice with minimal adverse effects.

Additionally, combining MLMF with the vascular disrupting agent Vadimezan disrupted the tumor's central region, typically resistant to immune cell infiltration, further extending survival in tumor-bearing mice. This innovative strategy may show great potential for improving cancer immunotherapy and offers hope for more effective treatments in the future.

论文信息

作者
Jia L、Qin Y、Li X、Liu H、He Z、Wang Y
第一作者单位
Department of Pharmaceutics, Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang, Liaoning, 110016, China.China
通讯作者单位
Department of Pharmaceutics, Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang, Liaoning, 110016, China; Joint International Research Laboratory of Intelligent Drug Delivery Systems, Ministry of Education, Shenyang Pharmaceutical University, Shenyang, Liaoning, 110016, China. Electronic address: wangyongjun@syphu.edu.cn.China
期刊
Biomaterials2025 Oct
原文标识
PubMed 40164041 · DOI 10.1016/j.biomaterials.2025.123294