Department of Experimental Medicine, University of Perugia, Perugia, Italy.
International Scientific Institute "Paul VI", Rome, Italy.
Front Endocrinol (Lausanne). 2021 Jan 7;11:611932. doi: 10.3389/fendo.2020.611932. eCollection 2020.
Sertoli cells (SC) are immune privileged cells with the capacity of modulating the immune response by expressing several immune-regulatory factors. SC have the capacity to respond to external stimuli through innate phagocytic and antibacterial activities. This evidence evoked a potential role of SC as drug carriers and therapeutic agents. Such stimuli drive SC towards a still unknown evolution, the clinical relevance of which as yet remains undisclosed. This study sought to investigate the effects of external stimuli in the form of polymeric microparticles (MP) and bacteria derived endotoxins, such as lipopolysaccharides (LPS), in order to identify the pathways potentially involved in cell phenotype modifications. Compared to single stimulation, when combined, MP and LPS provoked a significant increase in the gene expression of IDO, PD-L1, FAS-L, TLR-3, TLR-4, MHC-II, ICAM-1, TFGβ1, BDF123, BDF129, BDF3 and pEP2C. Western Blotting analysis demonstrated up-regulation of the ERK 1-2 and NF-kB p65 phosphorylation ratios. Our study, showing the exponential increase of these mediators upon combined MP and LPS stimulation, suggests a "switch" of SC function from typical cells of the blood-testicular barrier to nonprofessional tolerogenic antigen-presenting cells. Further studies should target the clinical and technological implications of such stimuli-induced SC transformation.
支持细胞 (SCs) 是具有免疫调节功能的免疫特权细胞,能够通过表达多种免疫调节因子来调节免疫反应。SCs 具有通过先天吞噬和抗菌活性对外部刺激做出反应的能力。这一证据暗示了SCs 作为药物载体和治疗剂的潜在作用。这些刺激促使SCs 朝着一个尚未确定的方向进化,其临床相关性尚不清楚。本研究旨在研究以聚合物微颗粒 (MP) 和细菌衍生的内毒素(如脂多糖 (LPS))形式的外部刺激对SCs 的影响,以鉴定可能参与细胞表型修饰的途径。与单一刺激相比,当 MP 和 LPS 联合刺激时,IDO、PD-L1、FAS-L、TLR-3、TLR-4、MHC-II、ICAM-1、TFGβ1、BDF123、BDF129、BDF3 和 pEP2C 的基因表达显著增加。Western Blotting 分析表明 ERK 1-2 和 NF-kB p65 磷酸化比率上调。我们的研究表明,在 MP 和 LPS 联合刺激下,这些介质呈指数增长,提示SCs 功能从典型的血睾屏障细胞向非专业的耐受原性抗原呈递细胞“转变”。进一步的研究应针对这种刺激诱导的SCs 转化的临床和技术意义。