纳米递送系统在增强 CAR-T/CRISPR-Cas9 介导的癌症治疗中的新兴优势
Emerging advantages of nano delivery systems in enhancing CAR-T/CRISPR-Cas9 mediated cancer therapeutics.
病毒载体长期以来一直是癌症免疫治疗的核心,尤其是用于体外嵌合抗原受体(CAR)-T 细胞工程和癌症疫苗开发。
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Emerging advantages of nano delivery systems in enhancing CAR-T/CRISPR-Cas9 mediated cancer therapeutics.
病毒载体长期以来一直是癌症免疫治疗的核心,尤其是用于体外嵌合抗原受体(CAR)-T 细胞工程和癌症疫苗开发。
Synergizing immunity: lipid nanoparticle-mediated mRNA and gene delivery as a next-gen paradigm in cancer immunotherapy.
这些见解强调了LNP作为下一代mRNA癌症免疫疗法的变革性载体,并指出了克服递送和免疫微环境障碍的未来方向。
Precision immuno-oncology in NSCLC: integrating ADCs, therapeutic vaccines, and adoptive cell therapies for next-generation systemic treatment.
这些正在发展的免疫治疗平台共同构成了一个更为光明的范式,为NSCLC提供了更加个性化和有效的全身治疗途径。
Immunotherapy in triple-negative breast cancer: From molecular mechanisms to precision medicine-overcoming resistance and optimizing clinical outcomes
帕博利珠单抗化疗免疫治疗成为首个在早期TNBC中显示出最终总生存优势的方案(KEYNOTE-522),pCR率达65%,5年生存率达86.6%,确立了新的标准治疗。
Enhanced BNT162b2 vaccine-induced cellular immunity in anti-CD19 CAR T cell-treated patients.
这些数据强调了在CD19 CAR-T细胞治疗后接种COVID-19疫苗的重要性,即使存在长期B细胞发育不全。
The innate regenerome: Harnessing mesenchymal niches and engineered cytotoxic killers for solid tumor immunotherapy.
实体瘤通过MHC I类分子下调、基质屏障和T细胞耗竭逃逸适应性免疫,使传统免疫疗法在“冷”病灶中无效。
mRNA-engineered T cells against telomerase: a novel immunotherapy approach for cancer.
Advances and challenges in cancer immunotherapy: Strategies for personalized treatment.
癌症免疫疗法通过利用免疫系统特异性靶向癌细胞,彻底改变了肿瘤学领域,与传统疗法相比,其全身毒性更低。
A new era of cancer immunotherapy: vaccines and miRNAs.
癌症免疫治疗改变了治疗格局,为对抗多种类型的癌症引入了新策略。
Enhancement of anti-sarcoma immunity by NK cells engineered with mRNA for expression of a EphA2-targeted CAR.
该研究为 EphA2 靶向 CAR-NK 细胞治疗在一系列儿童肉瘤中的临床评价提供了基础依据。
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