College of Pharmacy, Shenyang Pharmaceutical University, Wenhua Road, No. 103, Shenyang 110016, China.
College of Pharmacy, Shenyang Pharmaceutical University, Wenhua Road, No. 103, Shenyang 110016, China.
Life Sci. 2022 Dec 1;310:121081. doi: 10.1016/j.lfs.2022.121081. Epub 2022 Oct 20.
Sialic acid derivatives (SA-derivatives) provide a nanomedicine platform for tumor-targeted delivery and treatment, and allow modulation of immunosuppressive tumor microenvironments with excellent therapeutic effects. Further, the multi-reactive groups of sialic acid (SA) contribute to the diversity of SA derivatives, which inevitably has implications for drug delivery systems and tumor therapy. However, relevant research remains lacking at present. Therefore, this study aimed to explore the effects of SA derivatives on SA-mediated drug delivery systems.
Four SA-derivatives with different linking bonds (ester and amide bonds), different linking groups (hydroxyl and carboxyl), and different linking objects (cholesterol, octadecanoic acid, and octadecylamine) were synthesized and the respective SA derivative-modified doxorubicin liposomes were prepared. In-depth research was conducted using both cells and animals.
We found that an SA-cholesterol conjugate (SA-CH; linking bond, amide bond; linking group, carboxyl; linking object, cholesterol) could improve liposome stability, reduce liposome adsorption to plasma proteins, and enhance the targeting of liposomes for killing tumor-associated macrophages (TAMs). Reduced TAMs in the immunosuppressive tumor microenvironment lead to enhanced tumor infiltration of CD8 T cells.
The results of this experiment provide clarity for research and development on SA-derivatives and a theoretical basis for clinical trials of SA-derivative-modified nanoparticles.
唾液酸衍生物 (SA-derivatives) 为肿瘤靶向递药和治疗提供了一个纳米医学平台,并允许通过调节免疫抑制性肿瘤微环境来实现优异的治疗效果。此外,唾液酸 (SA) 的多反应基团有助于 SA 衍生物的多样性,这不可避免地对药物传递系统和肿瘤治疗产生影响。然而,目前相关研究仍然缺乏。因此,本研究旨在探讨 SA 衍生物对 SA 介导的药物传递系统的影响。
合成了四种具有不同连接键(酯键和酰胺键)、不同连接基团(羟基和羧基)和不同连接物(胆固醇、十八烷酸和十八烷基胺)的 SA 衍生物,并制备了各自的 SA 衍生物修饰的阿霉素脂质体。通过细胞和动物进行了深入研究。
我们发现,SA-胆固醇缀合物 (SA-CH;连接键,酰胺键;连接基团,羧基;连接物,胆固醇) 可以提高脂质体的稳定性,减少脂质体对血浆蛋白的吸附,并增强脂质体对杀伤肿瘤相关巨噬细胞 (TAMs) 的靶向性。免疫抑制性肿瘤微环境中的 TAMs 减少导致 CD8 T 细胞浸润肿瘤增强。
该实验结果为 SA 衍生物的研究和开发提供了清晰的认识,并为 SA 衍生物修饰的纳米颗粒的临床试验提供了理论基础。