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:Enterococcus faecalis induces MHC-II expression by the intestinal epithelium during murine graft-versus-host disease.
Enterococcus faecalis induces MHC-II expression by the intestinal epithelium during murine graft-versus-host disease.
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肠道肠球菌优势与异基因造血细胞移植(allo-HCT)后急性移植物抗宿主病(GVHD)死亡风险增加相关,allo-HCT 是血液系统恶性肿瘤患者的治愈性治疗。
在本研究中,我们探讨了肠球菌与肠道上皮之间的相互作用作为加重 GVHD 的机制。我们观察到,在 MHC 不匹配的小鼠 GVHD 模型中,内源性肠道肠球菌过度生长与 GVHD 死亡率增加以及结肠中肠道上皮细胞主要组织相容性复合体 II 类(MHC-II)表达增加相关。用粪肠球菌单定植未移植的悉生小鼠足以诱导结肠 MHC-II 表达。相反,肠球菌属内的部分菌种,以及包含 Blautia producta 在内的 4 种厌氧共生菌联合体,并未影响悉生小鼠结肠 MHC-II 表达。
此外,粪肠球菌定植诱导了结肠固有层 CD4+ T 细胞和NK 细胞的炎症反应,这 2 种细胞是驱动非专职抗原呈递细胞中 MHC-II 表达的干扰素 γ 产生的主要来源。
我们进一步探讨了在 allo-HCT 后通过给予产羊毛硫抗生素的 B producta 菌株建立对粪肠球菌的定植抵抗的潜在治疗获益。用包含产羊毛硫抗生素 B producta 菌株的共生菌联合体定植移植小鼠,可防止移植后肠道肠球菌优势并改善 GVHD 生存。
我们的结果证明了肠球菌通过增加肠道上皮细胞中MHC-II表达加重GVHD的潜在机制。因此,靶向肠球菌-上皮-MHC-II轴为预防致死性GVHD提供了治疗机会。
Intestinal Enterococcus domination has been associated with an increased risk of mortality from acute graft-versus-host disease (GVHD) after allogeneic hematopoietic cell transplantation (allo-HCT), a curative-intent treatment for patients with hematologic malignancies. In this study, we investigated interactions between Enterococcus and the intestinal epithelium as a mechanism to aggravate GVHD.
We observed that endogenous intestinal Enterococcus outgrowth was associated with increased GVHD mortality and major histocompatibility complex class II (MHC-II) expression by intestinal epithelial cells in the colon in an MHC-disparate mouse model of GVHD.
Monocolonization of nontransplanted gnotobiotic mice with Enterococcus faecalis was sufficient to induce colonic MHC-II expression. Conversely, select species within the genus Enterococcus, as well as a consortium of 4 anaerobic commensal bacteria including Blautia producta, did not affect colonic MHC-II expression in gnotobiotic mice.
In addition, E faecalis colonization induced inflammatory responses in CD4+ T cells and natural killer cells from the colonic lamina propria, the 2 main sources of interferon gamma production that drives MHC-II expression in nonprofessional antigen-presenting cells.
We further explored the potential therapeutic benefit of establishing colonization resistance against E faecalis through administration of a lantibiotic-producing B producta strain after allo-HCT. Colonization of transplanted mice with a consortium of commensal bacteria containing the lantibiotic-producing B producta strain prevented intestinal Enterococcus domination after transplantation and improved GVHD survival.
Our results demonstrate a potential mechanism by which Enterococcus aggravates GVHD through increased MHC-II expression in the intestinal epithelium. Targeting the Enterococcus-epithelium-MHC-II axis thus presents a therapeutic opportunity to prevent lethal GVHD.
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