CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Identification of immune suppressor candidates utilizing comparative transcriptional profiling in histiocytic sarcoma.
Identification of immune suppressor candidates utilizing comparative transcriptional profiling in histiocytic sarcoma.
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组织细胞肉瘤(HS)是一种罕见但致死率高的恶性肿瘤,目前尚无确立的标准治疗方案。缺乏临床前模型限制了我们对HS发病机制的理解及治疗靶点的识别。犬HS在临床和遗传学方面与人类HS存在多项相似之处,因此可作为独特的转化研究模型。既往研究探讨了HS的免疫原性。尽管犬HS中TIL(肿瘤浸润淋巴细胞)密度升高与较好结局相关,几乎所有犬患者最终仍因疾病进展而死亡,反映抗肿瘤免疫最终失效。为寻找免疫肿瘤微环境(TME)的潜在调节因子,研究者比较了3例生存较长、肺部HS伴大量T细胞浸润的犬病例,与3例生存较短、缺乏显著T细胞炎症的脾HS病例的转录特征,并与接受尸检犬的相应肉眼正常组织进行比较。分析发现,犬HS中PDCD1(编码免疫检查点PD-1)和SPP1(编码促肿瘤分泌蛋白骨桥蛋白)为上调差异表达基因(DEG);编码肿瘤抑制因子TXNIP的TXNIP则是最显著的下调DEG。比较转录组学研究显示,犬与人类HS患者中富集(包括SPP1)及降低(包括TXNIP)的DEG具有保守性。免疫组化证实,犬和人类HS的TME中均存在骨桥蛋白。
综上,研究发现PD-1、骨桥蛋白和TXNIP可能是HS的可干预靶点,并进一步确立犬HS作为筛选该致命疾病新型免疫疗法的临床前平台。
Histiocytic sarcoma (HS) is a rare yet lethal malignancy with no established standard of care therapies. A lack of pre-clinical models limits our understanding of HS pathogenesis and identification of therapeutic targets. Canine HS shares multiple clinical and genetic similarities with human HS, supporting its use as a unique translational model. Prior studies have investigated the immunogenicity of HS. Although increased tumor infiltrating lymphocyte (TIL) density is associated with favorable outcomes in canine HS, virtually all canine patients eventually succumb to progressive disease consistent with ultimate failure of anti-tumor immunity. To investigate potential regulators of the immune tumor microenvironment (TME), we undertook a comparative transcriptional approach of three long-lived cases of canine pulmonary HS with heavy T cell infiltrate and three short-lived cases of splenic HS that lacked significant T cell inflammation and compared these data to corresponding grossly normal tissues from dogs undergoing necropsy.
This comparison identified PDCD1, encoding the immune checkpoint PD-1, and SPP1, encoding the secreted pro-tumorigenic protein osteopontin, as positive differentially expressed genes (DEGs) in canine HS. TXNIP, encoding the tumor suppressor TXNIP, was the most significant negative DEG. Comparative transcriptomic studies revealed conservation of enriched (including SPP1) and depleted (including TXNIP) DEGs between canine and human HS patients.
Immunohistochemistry demonstrated osteopontin in the TMEs of canine and human HS. Collectively, we uncover PD-1, osteopontin, and TXNIP as putative actionable targets in HS and further establish canine HS as a preclinical platform to screen novel immunotherapeutic approaches for this deadly disease.
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