通过靶向肿瘤相关巨噬细胞的嵌合受体工程化溶瘤病毒重振内源性抗肿瘤免疫
Rejuvenating endogenous antitumor immunity via a chimeric receptor-engineered oncolytic virus targeting tumor-associated macrophages.
我们的研究结果定义了一个精准溶瘤平台,该平台能够解除TAM介导的免疫抑制,同时增强适应性免疫,为癌症免疫治疗提供了一条有前景的转化途径。
英文原题:Emerging Therapies for Hepatocellular Carcinoma (HCC).
Emerging Therapies for Hepatocellular Carcinoma (HCC).
肝细胞癌(HCC)起源于肝细胞,占原发性肝癌的 90%。
肝细胞癌(HCC)起源于肝细胞,占原发性肝癌的 90%。根据 2020 年全球癌症发病率、死亡率和患病率(GLOBOCAN)数据,HCC 是全球第六大常见癌症,也是癌症相关死亡的第三大原因。HCC 预后仍差,原因在于早期无症状、确诊较晚,且对传统化疗和放疗耐受性显著。早期 HCC 首选肝移植;手术切除、射频消融(RFA)和经动脉化疗栓塞(TACE)则是获 FDA 批准的进展期治疗。进展期 HCC 的其他一线治疗包括广谱酪氨酸激酶抑制剂(TKI),如 sorafenib 和 lenvatinib,以及免疫治疗联合抗血管生成治疗(atezolizumab 联合 bevacizumab)。然而,这些策略仅有限延长生存,造成广泛毒性,患者最终还会产生治疗耐药。HCC 的一些常见突变(如端粒酶逆转录酶 [TERT]、β-catenin [CTNNB1] 和肿瘤蛋白 p53 [TP53] 基因突变)仍被认为不可成药。在此背景下,鉴定合适的基因靶点和特异性基因递送方法,为安全有效地开展基因和免疫疗法提供了可能。本文聚焦潜在基因靶点及溶瘤病毒载体、纳米颗粒、嵌合抗原受体(CAR)T 细胞、免疫疗法和规律成簇间隔短回文重复序列/CRISPR 相关蛋白 9(CRISPR/Cas9)等先进技术,阐述 HCC 治疗现状和未来前景。
Hepatocellular carcinoma (HCC) arises from hepatocytes and accounts for 90% of primary liver cancer. According to Global Cancer Incidence, Mortality and Prevalence (GLOBOCAN) 2020, globally HCC is the sixth most common cancer and the third most common cause of cancer-related deaths. Reasons for HCC prognosis remaining dismal are that HCC is asymptomatic in its early stages, leading to late diagnosis, and it is markedly resistant to conventional chemo- and radiotherapy. Liver transplantation is the treatment of choice in early stages, while surgical resection, radiofrequency ablation (RFA) and trans arterial chemoembolization (TACE) are Food and Drug Administration (FDA)-approved treatments for advanced HCC. Additional first line therapy for advanced HCC includes broad-spectrum tyrosine kinase inhibitors (TKIs), such as sorafenib and lenvatinib, as well as a combination of immunotherapy and anti-angiogenesis therapy, namely atezolizumab and bevacizumab. However, these strategies provide nominal extension in the survival curve, cause broad spectrum toxic side effects, and patients eventually develop therapy resistance. Some common mutations in HCC, such as in telomerase reverse transcriptase ( TERT ), catenin beta 1 ( CTNNB1 ) and tumor protein p53 ( TP53 ) genes, are still considered to be undruggable. In this context, identification of appropriate gene targets and specific gene delivery approaches create the potential of gene- and immune-based therapies for the safe and effective treatment of HCC. This review elaborates on the current status of HCC treatment by focusing on potential gene targets and advanced techniques, such as oncolytic viral vectors, nanoparticles, chimeric antigen receptor (CAR)-T cells, immunotherapy, and clustered regularly interspaced short palindromic repeats/CRISPR-associated protein 9 (CRISPR/Cas9), and describes future prospects in HCC treatment.
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