纳米羟基磷灰石刺激PD-L1表达促进黑色素瘤联合免疫治疗

IF 15.8 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Nano Pub Date : 2022-10-31 DOI:10.1021/acsnano.2c07818
Yuedi Yang, Yani Cui, Wanxu Cao, Mingda Zhao, Weimin Lin, Ruiling Xu, Yang Xu, Yafang Chen, Hongjun Li, Jie Liang, Yunfeng Lin, Yujiang Fan*, Xingdong Zhang and Yong Sun*, 
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引用次数: 2

摘要

虽然检查点抑制剂免疫疗法取得了巨大的进步,但改善治疗过程中的免疫反应一直是迫切的临床问题。利用mRNA微阵列技术,我们发现短棒状纳米羟基磷灰石(nHA)可促进CD274和PD-L1相关基因转录的上调,并通过体外培养的B16、B16F10和4T1细胞中PD-L1表达水平的显著提高证实了这一点。因此,我们设计了一种可注射的含有nHA和PD-1/PD-L1抑制剂的原位反应性水凝胶储层,通过肿瘤周围给药进行联合免疫治疗。结果证实,该组合策略有效抑制肿瘤发生和肿瘤生长,恢复异常的乳酸脱氢酶、天冬氨酸转氨酶和丙氨酸转氨酶指标,显著延长荷瘤小鼠的寿命。实质性进展主要来源于nHA诱导肿瘤部位T细胞浸润增强和脾脏CD8+ T细胞极化,提示nHA可能作为一种免疫调节剂在黑色素瘤免疫治疗中发挥作用。
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Nanohydroxyapatite Stimulates PD-L1 Expression to Boost Melanoma Combination Immunotherapy

Although checkpoint-inhibitor immunotherapy held tremendous advances, improving immune response during treatment has always been an urgent clinical issue. With the help of mRNA microarray technology, it was found that short rod-like nanohydroxyapatite (nHA) promoted the upregulation of CD274 and PD-L1 related gene transcription, which was confirmed by the significantly enhanced PD-L1 expression level in B16, B16F10, and 4T1 cells in vitro. Hence, an injectable in situ responsive hydrogel reservoir embed with nHA and PD-1/PD-L1 inhibitor was engineered for a combination immunotherapy by peritumoral administration. The results confirmed that the combinational strategy effectively suppressed tumorigenesis and tumor growth, recovered the abnormal lactate dehydrogenase, aspartate transaminase, and alanine aminotransferase indicators, and significantly elongated the life span of a tumor-bearing mouse. The substantive progress mainly derived from nHA-induced T cell infiltration reinforcement in a tumor site and CD8+ T cell polarization in spleen, implying that nHA might function as an immunomodulator for melanoma immunotherapy.

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来源期刊
ACS Nano
ACS Nano 工程技术-材料科学:综合
CiteScore
26.00
自引率
4.10%
发文量
1627
审稿时长
1.7 months
期刊介绍: ACS Nano, published monthly, serves as an international forum for comprehensive articles on nanoscience and nanotechnology research at the intersections of chemistry, biology, materials science, physics, and engineering. The journal fosters communication among scientists in these communities, facilitating collaboration, new research opportunities, and advancements through discoveries. ACS Nano covers synthesis, assembly, characterization, theory, and simulation of nanostructures, nanobiotechnology, nanofabrication, methods and tools for nanoscience and nanotechnology, and self- and directed-assembly. Alongside original research articles, it offers thorough reviews, perspectives on cutting-edge research, and discussions envisioning the future of nanoscience and nanotechnology.
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