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PSMA‐Targeting Macrophage Membrane‐Coated Nanoparticles for Precision Diagnosis and Combination Therapy of Prostate Cancer

前列腺癌 光热治疗 联合疗法 医学 癌症研究 靶向给药 体内 癌症 药物输送 免疫疗法 免疫系统 巨噬细胞 靶向治疗 药品 癌细胞 癌症治疗 抗体 细胞毒性T细胞 纳米医学 前列腺 放射治疗 细胞毒性 谷氨酸羧肽酶Ⅱ 癌症免疫疗法 癌症治疗 逃避(道德) 细胞因子
作者
Keying Zhang,Bo Gao,Jingwei Wang,Yanfang Li,Chao Xu,Fa Yang,Shaojie Liu,Hongji Li,Chao Zhang,Xiaochun Meng,Zhaokun Shi,Rui Zhang,Ruili Zhang,Zhongliang Wang,Weihong Wen,Qiang Zhang,Yuankang Zou,Donghui Han,Bian Huijie,Weijun Qin
出处
期刊:Exploration [Wiley]
卷期号:6 (2): 20240393-20240393
标识
DOI:10.1002/exp.20240393
摘要

ABSTRACT Prostate cancer (PCa) is the most frequently diagnosed cancer in males. Advanced PCa is invasive and may spread rapidly. Current strategies could not fulfill the requirement for clinical application; thus, novel therapeutic strategies are still urgently needed. Nanoparticles are a promising strategy for targeted drug delivery and cancer treatment; however, the strong exogeneity and weak targeting limit their further application. Here, we developed a novel macrophage membrane‐coated nanoparticle that has transmembrane‐expressed gy‐1, a single‐chain antibody fragment (scFv) against prostate‐specific membrane antigen (PSMA), to endow the immune evasion and targeting property, which we named P‐MMCNPs. The Fe 3 O 4 @Au nanoparticles were used as the core of P‐MMCNPs, which confer P‐MMCNPs with the properties of multimodal imaging and photothermal therapy (PTT). Anti‐tumor cytotoxic drug maytansine (DM1) was loaded into the nanoparticles to obtain cytotoxicity. P‐MMCNPs were shown to have immune evasion capacity and prolonged circulation time and can be specifically distributed in PSMA‐positive tumors, thus enabling targeted imaging and targeted drug delivery. The macrophage membrane‐coated nanoparticles combined to inhibit tumor growth in vivo when loaded with DM1 and treated with PTT. Additionally, we found that P‐MMCNPs alone could inhibit tumor growth, which may be caused by cytokine neutralization by the macrophage membrane. Our work demonstrates that the innovative P‐MMCNPs serve as a versatile platform. This platform improves PCa‐targeted diagnostic and therapeutic efficacy while avoiding side effects. Moreover, it holds promise for expanding into the diagnosis and treatment of other diseases, with potential for clinical translation. Additionally, it offers novel insights into nanomedicine‐based combination therapy.
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