M1-巨细胞膜伪装的纳米框架通过过载和光声敏化激活多重免疫力
Yinjing Shen1, Nuo Yu1, Wenjing Zhao1
1State Key Laboratory of Advanced Fiber Materials, Institute of Functional Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.
这项研究引入了仿生纳米框架,通过释放和使用光和超声波来逆转免疫抑制瘤微环境 (TME). 这种方法可以增强免疫疗法,并显著抑制瘤生长和转移.
科学领域:
- 生物材料科学 生物材料科学
- 癌症免疫疗法癌症免疫疗法
- 纳米技术纳米技术
背景情况:
- 免疫疗法的有效性受到免疫抑制性瘤微环境 (TME) 的限制.
- 逆转TME对于加强抗转移治疗至关重要.
- 需要开发新的策略来激活多个免疫反应.
研究的目的:
- 开发能够逆转TME并激活多重免疫力的仿生纳米框架.
- 使用这些新的纳米框架来抑制瘤转移.
- 研究作用机制,包括释放和光声敏化.
主要方法:
- 在纳米框架 (Ca-PpIX) 中组装离子 (Ca2+) 和Protoporphyrin IX (PpIX).
- 将M1巨细胞膜封装到Ca-PpIX (Ca-PpIX@M) 上.
- 利用近红外光和超声波刺激进行光声敏化和Ca2+释放.
主要成果:
- Ca-PpIX@M 呈现了依赖pH的Ca2+释放,1O2生成和光热转化.
- 诱导氧化应激,线粒体功能障碍,降低ATP水平,增强光热废除.
- 再极化巨细胞 (M1/M2比率从0.25增加到2.45) 并诱导免疫细胞死亡,激活树突细胞和T细胞.
结论:
- 生物仿真纳米框架有效地逆转了免疫抑制的TME.
- 光声敏化和过载激活了多种免疫反应,以抑制转移.
- 这种方法为增强癌症免疫疗法和克服TME挑战提供了一个有希望的策略.
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