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:Nanocarriers for pancreatic cancer imaging, treatments, and immunotherapies.
Nanocarriers for pancreatic cancer imaging, treatments, and immunotherapies.
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胰腺肿瘤具有高度促结缔组织增生和免疫抑制特性。由于内在的物理和生化应激导致间质液压力增加、血管受压和缺氧,药物在胰腺肿瘤内的递送和分布受到损害。基于免疫治疗的方法,包括治疗性疫苗、免疫检查点抑制、CAR-T 细胞治疗和过继性T细胞疗法,受到免疫抑制性肿瘤微环境的挑战。广泛的纤维化和免疫抑制共同对胰腺癌治疗方法的开发构成了重大挑战。
在此背景下,纳米颗粒作为癌症及其他疾病治疗的递送平台和佐剂已被广泛研究。纳米技术的最新进展已促成多种基于纳米载体的制剂的开发,这些制剂不仅改善了药物递送,还增强了针对胰腺癌的基于免疫治疗的方法。本综述讨论并批判性分析了用于药物递送和免疫调节以提高治疗疗效的新型纳米尺度策略,包括新出现的基于免疫治疗的方法。本综述还就未来研究方向提出了重要观点,这些方向将指导合理设计新型且稳健的纳米尺度平台以治疗胰腺肿瘤,特别是在靶向治疗和免疫治疗方面。这些见解将为下一代临床治疗提供信息,以帮助患者管理这一使人衰弱的疾病并提高生存率。
Pancreatic tumors are highly desmoplastic and immunosuppressive. Delivery and distribution of drugs within pancreatic tumors are compromised due to intrinsic physical and biochemical stresses that lead to increased interstitial fluid pressure, vascular compression, and hypoxia. Immunotherapy-based approaches, including therapeutic vaccines, immune checkpoint inhibition, CAR-T cell therapy, and adoptive T cell therapies, are challenged by an immunosuppressive tumor microenvironment.
Together, extensive fibrosis and immunosuppression present major challenges to developing treatments for pancreatic cancer. In this context, nanoparticles have been extensively studied as delivery platforms and adjuvants for cancer and other disease therapies. Recent advances in nanotechnology have led to the development of multiple nanocarrier-based formulations that not only improve drug delivery but also enhance immunotherapy-based approaches for pancreatic cancer.
This review discusses and critically analyzes the novel nanoscale strategies that have been used for drug delivery and immunomodulation to improve treatment efficacy, including newly emerging immunotherapy-based approaches.
This review also presents important perspectives on future research directions that will guide the rational design of novel and robust nanoscale platforms to treat pancreatic tumors, particularly with respect to targeted therapies and immunotherapies. These insights will inform the next generation of clinical treatments to help patients manage this debilitating disease and enhance survival rates.
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