CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Exploring the Potential of Nanocarriers for Cancer Immunotherapy: Insights into Mechanism, Nanocarriers, and Regulatory Perspectives.
Exploring the Potential of Nanocarriers for Cancer Immunotherapy: Insights into Mechanism, Nanocarriers, and Regulatory Perspectives.
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免疫疗法是一种前沿方法,利用先进技术靶向肿瘤特异性抗体并调节免疫系统以根除癌症,提升患者生活质量。生物信息学和遗传科学的进步使得利用免疫疗法技术对癌症患者进行诊断和治疗成为可能。
然而,当前针对癌症的免疫疗法因癌症相关抗原而临床获益有限,这些抗原往往无法与免疫细胞有效互动,且治疗靶向性不足,伴有意外副作用。为克服这一挑战,纳米颗粒系统已成为将免疫治疗药物运送到癌细胞并激活免疫细胞以对抗肿瘤的潜在策略。
因此,这一过程可能产生抗原特异性T细胞反应,有效抑制癌症生长。此外,纳米平台具有高特异性、高效性、诊断潜力和成像能力,使其成为癌症治疗的有前景工具。
然而,本文深入探讨了各种可用的免疫疗法,包括CAR-T 细胞疗法和免疫检查点阻断、细胞因子、癌症疫苗及单克隆抗体。此外,文章还探讨了治疗诊断纳米技术的概念,该技术整合了治疗与诊断,以实现更个性化的癌症治疗方法。
同时,文章涵盖了不同纳米载体系统的潜在益处,包括已上市的免疫治疗产品、临床试验、监管考量以及癌症免疫治疗的未来前景。
Immunotherapy is a cutting-edge approach that leverages sophisticated technology to target tumor-specific antibodies and modulate the immune system to eradicate cancer and enhance patients' quality of life. Bioinformatics and genetic science advancements have made it possible to diagnose and treat cancer patients using immunotherapy technology.
However, current immunotherapies against cancer have limited clinical benefits due to cancer-associated antigens, which often fail to interact with immune cells and exhibit insufficient therapeutic targeting with unintended side effects. To surmount this challenge, nanoparticle systems have emerged as a potential strategy for transporting immunotherapeutic agents to cancer cells and activating immune cells to combat tumors. Consequently, this process potentially generates an antigen-specific T cells response that effectively suppresses cancer growth.
Furthermore, nanoplatforms have high specificity, efficacy, diagnostic potential, and imaging capabilities, making them promising tools for cancer treatment.
However, this informative paper delves into the various available immunotherapies, including CAR T cells therapy and immune checkpoint blockade, cytokines, cancer vaccines, and monoclonal antibodies.
Furthermore, the paper delves into the concept of theragnostic nanotechnology, which integrates therapy and diagnostics for a more personalized treatment approach for cancer therapy.
Additionally, the paper covers the potential benefits of different nanocarrier systems, including marketed immunotherapy products, clinical trials, regulatory considerations, and future prospects for cancer immunotherapy.
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