PO.CL05.10 · 临床研究
肛门直肠黏膜黑色素瘤中独特的微生物群组成与免疫检查点抑制耐药相关
Distinct microbiota composition in anorectal mucosal melanoma is associated with resistance to immune checkpoint inhibition
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
肛门直肠黏膜黑色素瘤(AMM)是一种罕见且侵袭性强的黑色素瘤亚型,其特征是对免疫检查点抑制剂(ICI)治疗反应不佳。虽然皮肤黑色素瘤转移至胃肠道(GI)部位往往仍保持较强的ICI反应,但AMM反应不佳的机制仍不明确。鉴于AMM发生于微生物丰富的黏膜环境,我们假设肿瘤相关微生物群可能促成局部免疫抑制。为此,我们对原发性AMM肿瘤进行了16S rRNA基因测序,并将其微生物组成与皮肤黑色素瘤胃肠道转移灶(CM-GI-met)及正常黏膜参考样本(包括鼻腔、直肠和阴道拭子)进行比较。AMM肿瘤富集了厚壁菌门梭菌纲类群,包括毛螺菌科(Lactospiraceae)和瘤胃球菌科(Ruminococcaceae),这些是已知的丁酸产生菌,与免疫调节相关。相比之下,CM-GI-met肿瘤表现出独特的微生物特征,梭杆菌科(Fusobacteriaceae)和拟杆菌科(Bacteriodaceae)的相对丰度较高。这些患者的ICI反应明显优于AMM原发灶患者。功能分析提示,AMM微生物组的丁酸合成增加,已知丁酸可营造免疫抑制性肿瘤微环境,这可能促成ICI反应不佳。这些发现也见于我们的原位直肠小鼠黑色素瘤模型中,与对照组和单药治疗相比,接受万古霉素(一种针对厚壁菌门梭菌纲的革兰阳性菌选择性抗生素)联合抗PD-1治疗的小鼠肿瘤生长速率、肿瘤负荷和总体存活率均下降。我们的发现表明,AMM肿瘤含有独特的富丁酸微生物组,可能促成局部肿瘤免疫逃逸,而CM肿瘤则含有更有利于ICI的微生物组。
查看英文原文 English abstract
Anorectal mucosal melanoma (AMM) is a rare and aggressive melanoma subtype characterized by poor responses to immune checkpoint inhibitor (ICI) therapy. While cutaneous melanoma metastases to gastrointestinal (GI) sites often retain strong ICI responses, the mechanisms underlying poor responses in AMM remain unclear. Given that AMM arises in microbial rich mucosal environments, we hypothesized that tumor-associated microbiota may contribute to local immune suppression. To investigate this, we performed 16S rRNA gene sequencing on primary AMM tumors and compared their microbial composition with cutaneous melanoma GI metastases (CM-GI-met) and normal mucosal reference samples, including nasal, rectal, and vaginal swabs. AMM tumors were enriched with Firmicutes Clostridia taxa, including Lactospiraceae and Ruminococcaceae, known butyrate producers associated with immunomodulation. In contrast, CM-GI-met tumors exhibited distinct microbial signatures, with a relatively higher abundance of Fusobacteriaceae and Bacteriodaceae. These patients notably had improved ICI responses compared to AMM primaries. Functional profiling suggested that AMM microbiomes had increased butyrate synthesis, known to create an immunosuppressive tumor microenvironment, which may contribute to poor ICI response. These findings are also seen in our orthotopic rectal mouse melanoma model, which showed reduced tumor growth rates, tumor burden, and overall survival in mice treated with combination vancomycin (Gram-positive selective antibiotic which targets Firmicutes Clostridia) and anti-PD-1 therapy compared to controls and monotherapy. Our findings demonstrate that AMM tumors contain a distinct butyrate-rich microbiome that may contribute to local tumor evasion whereas CM tumors contain a more ICI-permissive microbiome.
利益披露 Disclosure
P. Parmar, None..
M. MacBeth, None..
M. Karr, None..
N. Nusbacher, None..
S. M. Bagby, None..
P. Whitty, None..
K. Michel, None..
R. P. Tobin, None..
M. McCarter, None..
T. Medina, None..
C. Lozupone, None..
W. A. Robinson, None..
K. Couts, None.