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咪唑喹啉糖偶联物 BAIT628 作为 TLR7 激动剂前药用于前列腺癌的性能研究

英文原题:Performance of Imidazoquinoline Glycoconjugate BAIT628 as a TLR7 Agonist Prodrug for Prostate Cancer.

查看英文原题

Performance of Imidazoquinoline Glycoconjugate BAIT628 as a TLR7 Agonist Prodrug for Prostate Cancer.

PubMed 2025/05/27(内容时间) Pharmaceuticals (Basel) Q1 · IF 5.7(JCR 2025)

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中文摘要

尽管作为Toll样受体(TLR)7/8激动剂具有广泛的抗癌疗效,但咪唑喹啉类化合物由于炎症毒性,在全身给药或原位疫苗接种疗法中的使用仍然受限。应对这一挑战的一种方法是通过将咪唑喹啉类化合物笼蔽为糖偶联前药,从而更好地靶向其作用。在癌细胞内,咪唑喹啉糖偶联物被水解酶激活,随后经ABC转运蛋白外排,在此过程中借助邻近的旁观者免疫细胞(如TIL(肿瘤浸润淋巴细胞)和相关巨噬细胞)的协助引发杀肿瘤效应。虽然这种旁观者辅助免疫治疗(BAIT)的概念已在体外分子水平上得到确立,但BAIT的耐受性或疗效尚未在体内报道。

在此,我们在雄性C57BL/6小鼠TRAMP-C2前列腺癌模型中评估了先导BAIT前药(BAIT628)的MTD和肿瘤生长延迟疗效,以进一步确立该方法。

总体而言,我们发现全身给予BAIT628在超过母体咪唑喹啉剂量限制性炎症毒性5倍以上的剂量下(高达5 mg/小鼠/天,腹腔注射,持续10天)耐受良好。分析血清细胞因子显示,由甘露糖苷笼蔽基团引发的IL-10产生可能有助于提高MTD。将BAIT628用作原位疫苗接种免疫治疗(3周内7次)可显著延迟肿瘤生长并提高生存率,无论是单独使用还是与鼠源化α-PD-L1检查点阻断联合使用。肿瘤浸润免疫细胞亚群(CD4+、CD8+、CD11c+)的肿瘤组织学显示CD11c+群体显著增加,与TLR7/8激动作用一致。

总体而言,BAIT628耐受性良好,在TRAMP-C2模型中表现出显著疗效。这些结果证明,BAIT方法可优化咪唑喹啉类化合物的体内耐受性,并使其后续作为癌症免疫治疗药物发挥疗效。

展开英文摘要原文

Despite broad anti-cancer efficacy as Toll-Like Receptor (TLR) 7/8 agonists, imidazoquinolines remain limited in use via systemic administration or in situ vaccination therapies due to inflammatory toxicity. One approach to address this challenge involves better targeting the action of imidazoquinolines by caging them as glycoconjugate prodrugs.

Within cancer cells, imidazoquinoline glycoconjugates are activated by hydrolases prior to efflux by ABC transport proteins, where they then elicit tumoricidal effects from the assistance of bystander immune cells, such as tumor-infiltrating lymphocytes and associated macrophages, in local proximity. While this concept of Bystander-Assisted ImmunoTherapy (BAIT) has been established at a molecular level in vitro, tolerability or efficacy of BAIT has not been reported in vivo.

Here, we evaluate the MTD and tumor growth delay efficacy of a lead BAIT prodrug (BAIT628) in a male C57BL/6 mouse TRAMP-C2 prostate cancer model to further establish this methodology.

Overall, we find that systemic BAIT628 is well tolerated at over 5-fold the dose-limiting inflammatory toxicity of the parent imidazoquinoline (up to 5 mg/mouse/day I. P. for 10 days). Analyzing serum cytokines reveals that IL-10 production, elicited by the mannoside caging group, likely contributes to the enhanced MTD.

Using BAIT628 as an in situ vaccination immunotherapy (seven times over 3 weeks) resulted in significant tumor growth delay and increased survival, both alone and in combination with a murinized α-PD-L1 checkpoint blockade. The tumor histology of tumor-infiltrating immune cell subsets (CD4 + , CD8 + , CD11c + ) reveals significant increases in CD11c + populations, consistent with TLR7/8 agonism.

Overall, BAIT628 is well tolerated and exhibits significant efficacy in the TRAMP-C2 model. These results demonstrate how the BAIT approach can optimize imidazoquinolines for in vivo tolerability and subsequent efficacy as cancer immunotherapeutics.

论文信息

作者
Najibi SA、Pranto SMAM、Haroon M、Nielsen AE、Mancini RJ
单位
Department of Chemistry and Biochemistry, Miami University, 651 E. High Street, Oxford, OH 45056, USA.United States
期刊
Pharmaceuticals (Basel, Switzerland)2025 May 27
原文标识
PubMed 40573201 · DOI 10.3390/ph18060804