PO.TB10.19 · 肿瘤生物学

CD5L在调控肝脏免疫细胞中的作用

The role of CD5L in regulating liver immune cells

海报缩略图:CD5L在调控肝脏免疫细胞中的作用
编号 4985 展板 10 时间 4/21 09:00–12:00 区域 Section 32 主讲 Diala Alhousari, AA;BS
分会场 Tumor-Immune Crosstalk
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作者与单位 Authors & Affiliations

Diala S. Alhousari1, Handan Hong2, Taojian Tu2, Bangyan L. Stiles3

1USC School of Pharmacy, Los Angeles, CA,2USC - University of Southern California, Los Angeles, CA,3Assistant Professor, USC School of Pharmacy, Los Angeles, CA

摘要 Abstract

中文摘要
CD5样分子(CD5L)是一种主要由巨噬细胞产生和分泌的可溶性糖蛋白。作为清道夫受体富含半胱氨酸(SRCR)超家族的成员,CD5L调控多种生物学过程,如凋亡、病原体识别、免疫应答、自噬、细胞极化和脂质代谢,突显其在组织稳态中的关键作用及其在炎症和癌症中的参与。在肝癌中,脂肪性肝炎和肝细胞癌(HCC)患者中观察到血清CD5L水平升高,支持其作为诊断生物标志物的潜力。脂肪变性和脂肪性肝炎是促进HCC发展的关键合并症,并与不良治疗结局相关,尤其是对免疫检查点抑制剂的耐药。鉴于肝脏炎症和脂质代谢参与肝癌进展,二者均与CD5L活性密切相关,这提示CD5L可能在塑造HCC肿瘤微环境中发挥关键作用。在本研究中,我们发现CD5L主要由肝脏巨噬细胞产生,且其表达在多种肝损伤模型中显著上调。此外,我们观察到血清CD5L水平升高与肝损伤严重程度相关。临床上,我们发现肝细胞癌(HCC)患者的血清CD5L水平高于对照组,且CD5L水平升高与对免疫检查点治疗的较差应答相关。在功能上,我们证明CD5L增强肝细胞和肝星状细胞的脂质摄取,并在棕榈酸诱导的应激下促进巨噬细胞存活,这些发现与其先前报道的生物学作用一致。尽管CD5L在支持巨噬细胞存活中的作用已明确,但其在免疫调节中的确切作用仍不甚清楚。我们的数据表明,肝脏巨噬细胞产生的CD5L可以调节肝脏免疫细胞的趋化,特别是T细胞和NKT细胞。在巨噬细胞和脂肪细胞中,清道夫受体CD36介导CD5L对脂质代谢的作用。值得注意的是,CD8+ T细胞和调节性T细胞也表达CD36,提示CD5L可能通过CD36依赖性途径影响其功能。然而,我们的发现显示,虽然CD5L通过CD36作用于T细胞,但它通过CD36非依赖性机制影响NKT细胞。我们的研究进一步探讨了CD5L对肝脏免疫细胞功能特性的影响。总体而言,CD5L是一种上调的分泌蛋白,在肝脏疾病期间调控肝脏免疫细胞中发挥重要作用。
查看英文原文 English abstract
CD5-like molecule (CD5L) is a soluble glycoprotein primarily produced and secreted by macrophages. As a member of the scavenger receptor cysteine-rich (SRCR) superfamily, CD5L regulates many biological processes such as apoptosis, pathogen recognition, immune responses, autophagy, cell polarization, and lipid metabolism, highlighting its crucial role in tissue homeostasis and its involvement in inflammation and cancer. In liver cancer, elevated serum CD5L levels have been observed in patients with steatohepatitis and hepatocellular carcinoma (HCC), supporting its potential as a diagnostic biomarker. Steatosis and steatohepatitis are key comorbidities that promote HCC development and are linked to poor therapeutic outcomes, particularly resistance to immune checkpoint inhibitors. Given that liver inflammation and lipid metabolism are involved in the progression of liver cancer, both of which are closely correlated with CD5L activity, this suggests that CD5L could play a pivotal role in shaping the tumor microenvironment of HCC. In this study, we found that CD5L is predominantly produced by liver macrophages and that its expression is significantly upregulated in multiple models of liver injury. Additionally, we observed that elevated serum CD5L levels were observed to correlated with the severity of liver damage. Clinically, we found that patients with hepatocellular carcinoma (HCC) displayed higher serum CD5L levels compared to controls, and increased CD5L levels were associated with poorer responses to immune checkpoint therapies. Functionally, we demonstrated that CD5L enhances lipid uptake in hepatocytes and hepatic stellate cells and promotes macrophage survival under palmitic acid-induced stress, findings consistent with its previously reported biological roles. Although CD5L's role in supporting macrophage survival is well established, its precise role in immune regulation remains less clearly defined. Our data indicate that CD5L produced by liver macrophages can modulate the chemotaxis of hepatic immune cells, particularly T cells and NKT cells. In macrophages and adipocytes, CD36, a scavenger receptor, mediates CD5L's effects on lipid metabolism. Notably, CD8+ T cells and regulatory T cells also express CD36, suggesting that CD5L may influence their function through CD36-dependent pathways. However, our findings show that while CD5L acts on T cells via CD36, it impacts NKT cells through a CD36-independent mechanism. Our study further investigates the impact of CD5L on liver immune cells' functional properties. Overall, CD5L is an upregulated secreted protein that plays an important role in regulating liver immune cells during liver diseases.
利益披露 Disclosure
D. S. Alhousari, None.

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