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:Phenotypes and ontogeny of senescent hepatic stellate cells in metabolic dysfunction-associated steatohepatitis.
Phenotypes and ontogeny of senescent hepatic stellate cells in metabolic dysfunction-associated steatohepatitis.
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这些数据明确了人类和小鼠 MASH 中 HSC 衰老的特征,为将这些细胞作为未来抗纤维化治疗的一部分进行靶向提供了重要蓝图。
肝星状细胞(HSC)是代谢功能障碍相关脂肪性肝炎(MASH)纤维化的关键驱动因素;MASH是全球增长最快的肝细胞癌(HCC)病因。HSC具有异质性,其中一部分衰老HSC与肝纤维化和HCC相关。研究显示,给予抗尿激酶型纤溶酶原激活物受体(uPAR)CAR-T 细胞可清除小鼠模型中的衰老HSC并减轻纤维化。然而,MASH中衰老HSC的完整特征及其细胞来源尚未明确,因此本研究旨在全面描绘人和小鼠MASH中的HSC特征并确定其来源。
整合衰老相关β-半乳糖苷酶活性、免疫染色、流式细胞术及单核RNA测序(snRNA-seq),全面表征人和小鼠MASH中衰老HSC的表型和起源。将免疫组化特征与应用于snRNA-seq数据的衰老评分结合,以识别衰老HSC并描绘MASH中uPAR表达变化。
伪时间轨迹分析确定衰老HSC来源于活化HSC。MASH中虽有uPAR表达,但其表达量和细胞特异性会随疾病阶段变化。早期疾病中,uPAR主要见于活化及衰老HSC;疾病晚期,髓系细胞(包括Trem2+巨噬细胞和髓系来源抑制细胞)也表达uPAR。此外,我们发现人和小鼠MASH衰老HSC上表达的新型表面蛋白,可作为潜在治疗靶点。
这些数据描绘了人和小鼠MASH中HSC衰老特征,为未来将这些细胞作为抗纤维化疗法靶点提供了重要蓝图。 意义与启示:肝星状细胞是慢性肝病瘢痕形成的主要驱动细胞。损伤发展时,部分HSC进入衰老状态;这些细胞不增殖且促炎,会加重肝损伤。本研究显示,衰老HSC在人和小鼠MASH中扩增,并追溯其来源为活化HSC亚群。研究还表征了标记衰老HSC的uPAR,发现其在早期损伤时也表达于活化HSC,随着肝损伤进展还见于免疫细胞。通过整合高分辨率单核RNA测序、免疫染色和流式细胞术,我们还识别出衰老HSC表达的另外5种新蛋白,包括甘露糖受体CD206,有助于未来治疗研发。
To comprehensively characterize the phenotype and ontogeny of senescent HSCs in human and murine MASH, we integrated senescence-associated beta galactosidase activity with immunostaining, flow cytometry and single-nucleus RNA sequencing (snRNAseq). We integrated the immunohistochemical profile with a senescence score applied to snRNAseq data to characterize senescent HSCs and mapped the evolution of uPAR expression in MASH.
Using pseudotime trajectory analysis, we establish that senescent HSCs arise from activated HSCs. While uPAR is expressed in MASH, the magnitude and cell-specificity of its expression evolve with disease stage. In early disease, uPAR is more specific to activated and senescent HSCs, while it is also expressed by myeloid-lineage cells, including Trem2 + macrophages and myeloid-derived suppressor cells, in late disease. Furthermore, we identify novel surface proteins expressed on senescent HSCs in human and murine MASH that could be exploited as therapeutic targets.
These data define features of HSC senescence in human and murine MASH, establishing an important blueprint to target these cells as part of future antifibrotic therapies. IMPACT AND IMPLICATIONS: Hepatic stellate cells (HSCs) are the primary drivers of scarring in chronic liver diseases. As injury develops, a subset of HSCs become senescent; these cells are non-proliferative and pro-inflammatory, thereby contributing to worsening liver injury. Here we show that senescent HSCs are expanded in MASH (metabolic dysfunction-associated steatohepatitis) in humans and mice, and we trace their cellular origin from the activated HSC subset. We further characterize expression of uPAR (urokinase plasminogen activated receptor), a protein that marks senescent HSCs, and report that uPAR is also expressed by activated HSCs in early injury, and in immune cells as liver injury advances. We have integrated high-resolution single-nucleus RNA sequencing with immunostaining and flow cytometry to identify five other novel proteins expressed by senescent HSCs, including mannose receptor CD206, which will facilitate future therapeutic development.
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