RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:A photodynamic nanohybrid system reverses hypoxia and augment anti-primary and metastatic tumor efficacy of immunotherapy.
A photodynamic nanohybrid system reverses hypoxia and augment anti-primary and metastatic tumor efficacy of immunotherapy.
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光动力免疫治疗是一种有前景的癌症治疗策略。然而,功能失调的肿瘤血管系统导致肿瘤缺氧和药物递送效率低下,这反过来限制了光动力免疫治疗的抗癌效果。
在本研究中,我们设计了光敏脂质纳米颗粒。合成的PFBT@Rox Lip纳米颗粒在光照下可通过PFBT的电子转移或能量转移产生I/II型活性氧(ROS)。
此外,该纳米系统可通过Roxadustat缓解肿瘤缺氧并促进血管正常化。在白光照射下,PFBT@Rox Lip纳米颗粒原位产生的ROS扰乱钙稳态并触发内质网应激,进一步促进损伤相关分子模式的释放,增强抗原呈递,并刺激有效的适应性免疫应答,最终与Roxadustat的缺氧缓解和血管正常化共同启动肿瘤微环境(TME)。确实,体内结果表明,PFBT@Rox Lip纳米颗粒促进肿瘤相关巨噬细胞的M1极化,招募更多NK 细胞,并增强T细胞浸润,从而导致高效的光动力免疫治疗,并增强PD-1抗体的抗原发性和转移性肿瘤疗效。
总之,PFBT@Rox Lip纳米颗粒的光动力免疫治疗通过诱导免疫原性和氧合有效编程TME,并通过免疫原性细胞死亡和增强的抗肿瘤免疫有效抑制肿瘤生长。
Photodynamic immunotherapy is a promising strategy for cancer treatment.
However, the dysfunctional tumor vasculature results in tumor hypoxia and the low efficiency of drug delivery, which in turn restricts the anticancer effect of photodynamic immunotherapy. In this study, we designed photosensitive lipid nanoparticles. The synthesized PFBT@Rox Lip nanoparticles could produce type I/II reactive oxygen species (ROS) by electron or energy transfer through PFBT under light irradiation.
Moreover, this nanosystem could alleviate tumor hypoxia and promote vascular normalization through Roxadustat. Upon irradiation with white light, the ROS produced by PFBT@Rox Lip nanoparticles in situ dysregulated calcium homeostasis and triggered endoplasmic reticulum stress, which further promoted the release of damage-associated molecular patterns, enhanced antigen presentation, and stimulated an effective adaptive immune response, ultimately priming the tumor microenvironment (TME) together with the hypoxia alleviation and vessel normalization by Roxadustat.
Indeed, in vivo results indicated that PFBT@Rox Lip nanoparticles promoted M1 polarization of tumor-associated macrophages, recruited more natural killer cells, and augmented infiltration of T cells, thereby leading to efficient photodynamic immunotherapy and potentiating the anti-primary and metastatic tumor efficacy of PD-1 antibody.
Collectively, photodynamic immunotherapy with PFBT@Rox Lip nanoparticles efficiently program TME through the induction of immunogenicity and oxygenation, and effectively suppress tumor growth through immunogenic cell death and enhanced anti-tumor immunity.
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