PO.CL05.08 · 临床研究

当应激扩散:可传播的ER应激作为PDAC免疫重塑的驱动因素

When stress spreads: Transmissible ER stress as a driver of immune remodeling in PDAC

编号 7794 展板 22 时间 4/22 09:00–12:00 区域 Section 43 主讲 Naveen Chintala Ramulu, PhD
分会场 Immunomodulatory Agents and Interventions
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作者与单位 Authors & Affiliations

Naveen Chintala Ramulu1, Shreya Pokharel1, Nishanthini Pirashanna2, Basel Abuaita2, Joseph Francis1

1Comparative Biomedical Sciences, Louisiana State University, Baton Rouge, LA,2Pathobiological Sciences, Louisiana State University, Baton Rouge, LA

摘要 Abstract

中文摘要
胰腺导管腺癌(PDAC)仍是最致命的恶性肿瘤之一,5年生存率仅为11%。在PDAC肿瘤微环境(TME)内,快速增殖的肿瘤细胞超越了血管供应,造成了诸如营养剥夺、缺氧和高代谢需求等恶劣的微环境条件。这反过来扰乱了内质网(ER)的蛋白折叠能力,从而引发一种'ER应激'的细胞状态。此外,肿瘤细胞可通过一种被称为'可传播ER应激'的过程,将ER应激扩散至TME内的基质细胞。尽管PDAC被认为是免疫学上的'冷'肿瘤,但ER应激似乎重新连接了宿主免疫系统以实现肿瘤细胞的免疫逃逸。就此而言,我们确定了骨髓来源的巨噬细胞(BMDM)是否易受'可传播'ER应激的影响。在本研究中,小鼠胰腺Panc02和KPC细胞(传递细胞)经thapsigargin(Tg)处理,ER应激条件培养基被用于培养小鼠BMDM(接收细胞)。我们的初步数据表明,在ER应激条件培养基中培养的BMDM表现出促炎调节因子的显著转录上调,包括iNOS、IRE1 alpha/Xbp1、核因子-kappaB(NF-κB)和环氧合酶-2(COX-2)。引人注目的是,这种炎症状态与Arg1增加同时出现,与免疫抑制性、促肿瘤的巨噬细胞表型一致。总体而言,这种转录谱反映了PDAC肿瘤相关巨噬细胞(TAM)特有的炎症-免疫调节混合状态。为阐明可传播ER应激调控BMDM免疫谱的机制,我们提出对经典应激途径(包括IRE1alpha、PERK和ATF6)进行基因消融和/或药理学抑制,以确定它们对BMDM极化的影响。总之,我们的发现为PDAC细胞与BMDM之间的动态串扰提供了新见解,突出了两个关键方面:a)ER应激后TME内同时存在促炎和免疫抑制特征所蕴含的复杂性;b)提出了这一现象可能促成内在抗肿瘤T细胞应答减弱的可能性。 关键词:胰腺导管腺癌、肿瘤微环境、ER应激、骨髓来源的巨噬细胞。
查看英文原文 English abstract
Pancreatic ductal adenocarcinoma (PDAC) remains one of the most lethal malignancies, with a 5-year survival rate of only 11%. Within the PDAC tumor microenvironment (TME), rapidly proliferating tumor cells outgrow the vascular supply, creating hostile microenvironmental conditions such as nutrient deprivation, hypoxia, and high metabolic demand. This, in turn, perturbs the protein folding capacity of the endoplasmic reticulum (ER), thereby provoking a cellular state of ‘ER Stress'. Also, tumor cells can disseminate ER stress to the stromal cells within the TME in a process known as ‘transmissible ER stress'. Although PDAC is considered an immunologically ‘cold' tumor, ER stress appears to rewire the host immune system for tumor cell immune evasion. In this regard, we determined if the bone marrow-derived macrophages (BMDM) are susceptible to “transmissible” ER stress. Herein, murine pancreatic Panc02 and KPC cells (transmitter cells) were treated with thapsigargin (Tg), and the ER stress-conditioned medium was used to culture the murine BMDMs (receiver cells). Our preliminary data demonstrated that BMDMs cultured in ER-stress-conditioned medium demonstrated a significant transcriptional upregulation of proinflammatory modulators, including iNOS , IRE1 alpha / Xbp1 , nuclear factor-kappaB ( NF-κB ), and cyclooxygenase-2 ( COX-2 ). Strikingly, this inflammatory state co-occurred with increased Arg1 , consistent with an immunosuppressive, tumor-promoting macrophage phenotype. Altogether, this transcriptional profile reflects a hybrid inflammatory-immunoregulatory state characteristic of PDAC tumor-associated macrophages (TAMs). To delineate the mechanism by which transmissible ER stress modulates the immune profile of BMDMs, we propose genetic ablation and/or pharmacological inhibition of the classical stress pathways, including IRE1alpha, PERK, and ATF6, to determine their effect on BMDM polarization. In conclusion, our findings provide new insights into the dynamic crosstalk between PDAC cells and BMDMs, highlighting two key aspects: a) the complexity underlying the concurrent pro-inflammatory and immunosuppressive features within the TME following ER stress, and b) raises the possibility that this phenomenon may contribute to the attenuation of intrinsic antitumor T-cell responses.. Key Words: Pancreatic ductal adenocarcinoma, tumor microenvironment, ER stress, bone marrow-derived macrophages.
利益披露 Disclosure
N. Chintala Ramulu, None.. S. Pokharel, None.. N. Pirashanna, None.. B. Abuaita, None.. J. Francis, None.

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