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内溶酶体聚合物囊泡提高环状二核苷酸 STING 激动剂的活性,增强癌症免疫治疗。

Endosomolytic polymersomes increase the activity of cyclic dinucleotide STING agonists to enhance cancer immunotherapy.

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, TN, USA.

Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, TN, USA.

出版信息

Nat Nanotechnol. 2019 Mar;14(3):269-278. doi: 10.1038/s41565-018-0342-5. Epub 2019 Jan 21.

Abstract

Cyclic dinucleotide (CDN) agonists of stimulator of interferon genes (STING) are a promising class of immunotherapeutics that activate innate immunity to increase tumour immunogenicity. However, the efficacy of CDNs is limited by drug delivery barriers, including poor cellular targeting, rapid clearance and inefficient transport to the cytosol where STING is localized. Here, we describe STING-activating nanoparticles (STING-NPs)-rationally designed polymersomes for enhanced cytosolic delivery of the endogenous CDN ligand for STING, 2'3' cyclic guanosine monophosphate-adenosine monophosphate (cGAMP). STING-NPs increase the biological potency of cGAMP, enhance STING signalling in the tumour microenvironment and sentinel lymph node, and convert immunosuppressive tumours to immunogenic, tumoricidal microenvironments. This leads to enhanced therapeutic efficacy of cGAMP, inhibition of tumour growth, increased rates of long-term survival, improved response to immune checkpoint blockade and induction of immunological memory that protects against tumour rechallenge. We validate STING-NPs in freshly isolated human melanoma tissue, highlighting their potential to improve clinical outcomes of immunotherapy.

摘要

环状二核苷酸 (CDN) 是干扰素基因刺激物 (STING) 的激动剂,是一类很有前途的免疫治疗药物,它能激活先天免疫,增加肿瘤的免疫原性。然而,CDN 的疗效受到药物传递障碍的限制,包括细胞靶向性差、清除速度快以及向 STING 所在的细胞质内的有效转运效率低。在这里,我们描述了 STING 激活纳米颗粒 (STING-NP)——一种经过合理设计的聚合物囊泡,用于增强 STING 的内源性 CDN 配体 2'3' 环状鸟苷酸-腺苷酸 (cGAMP) 的细胞质内递送。STING-NP 提高了 cGAMP 的生物学效力,增强了肿瘤微环境和哨兵淋巴结中的 STING 信号转导,并将免疫抑制性肿瘤转化为免疫原性、杀伤性的微环境。这导致 cGAMP 的治疗效果增强,肿瘤生长受到抑制,长期生存率提高,对免疫检查点阻断的反应改善,并诱导免疫记忆,从而防止肿瘤再次侵袭。我们在新鲜分离的人类黑色素瘤组织中验证了 STING-NP,突出了它们提高免疫治疗临床效果的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a008/6402974/42a19d1fe759/nihms-1514496-f0001.jpg

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