CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Innovative Breakthroughs for the Treatment of Advanced and Metastatic Synovial Sarcoma.
Innovative Breakthroughs for the Treatment of Advanced and Metastatic Synovial Sarcoma.
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滑膜肉瘤(SyS)是一种罕见且侵袭性强的软组织肉瘤,具有t(X;18)染色体易位,可编码SS18::SSX融合转录本。该融合致癌蛋白与BAF增强子复合物和多梳抑制复合物相互作用,导致全基因组表观遗传改变及独特的基因特征。超过80%的患者初诊时为局限性疾病,5年生存率为70%–80%,但50%的病例会发生转移性复发。晚期、不可切除或转移性疾病患者的5年生存率低于10%,是亟待解决的重要问题。本综述总结SyS的分子机制,并介绍一线、二线及后续治疗现状。作者分析了在SyS中使用免疫检查点抑制剂(ICI)的情况;SyS并非对ICI敏感的肿瘤,因此需要预测性基因特征和肿瘤免疫微环境生物标志物。文章重点介绍蛋白水解靶向嵌合体(PROTAC)蛋白降解剂、工程化免疫细胞过继转移等创新技术的临床转化。早期临床试验中,靶向特定癌-睾丸抗原的工程化T细胞受体细胞过继转移治疗已显示出对抗转移性SyS的前景;进一步改善则有望通过免疫细胞工程优化及增强肿瘤免疫微环境实现。
Synovial sarcoma (SyS) is a rare aggressive soft tissue sarcoma carrying the chromosomal translocation t(X;18), encoding the fusion transcript SS18::SSX. The fusion oncoprotein interacts with both BAF enhancer complexes and polycomb repressor complexes, resulting in genome-wide epigenetic perturbations and a unique altered genetic signature.
Over 80% of the patients are initially diagnosed with localized disease and have a 5-year survival rate of 70-80%, but metastatic relapse occurs in 50% of the cases. Advanced, unresectable, or metastatic disease has a 5-year survival rate below 10%, representing a critical issue. This review summarizes the molecular mechanisms behind SyS and illustrates current treatments in front line, second line, and beyond settings.
We analyze the use of immune check point inhibitors (ICI) in SyS that do not behave as an ICI-sensitive tumor, claiming the need for predictive genetic signatures and tumor immune microenvironment biomarkers.
We highlight the clinical translation of innovative technologies, such as proteolysis targeting chimera (PROTAC) protein degraders or adoptive transfer of engineered immune cells. Adoptive cell transfer of engineered T-cell receptor cells targeting selected cancer/testis antigens has shown promising results against metastatic SyS in early clinical trials and further improvements are awaited from refinements involving immune cell engineering and tumor immune microenvironment enhancement.
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