预测增殖性狼疮性肾炎治疗反应的肾脏和外周血转录组特征-一项前瞻性研究。

IF 4.9 3区 医学 Q2 IMMUNOLOGY
Immunology Pub Date : 2025-01-28 DOI:10.1111/imm.13891
Sree Nethra Bulusu, Anitha Nagaraj Bavikatte, Sanket Shah, Sneha Surya Narayana Murthy, Vallayyachari Kommoju, Christina Mary Mariaselvam, Chengappa Kavadichanda, Shruthi Sridhar Vembar, Molly Mary Thabah, Vir Singh Negi
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引用次数: 0

摘要

导致狼疮性肾炎(LN)治疗无反应的机制尚不清楚。我们对环磷酰胺(CYC)治疗前后LN患者配对外周血单核细胞(pbmc)和肾组织的转录组进行了表征,并确定了预测治疗反应的标志物。在Illumina Novaseq-6000平台上,从16例增殖性LN患者的配对pbmc (n = 32)和肾组织(n = 25)中分离出总RNA,分别在CYC治疗前、治疗后6个月和肾脏发作期间进行测序。治疗后,8例患者有临床反应(CR),其中4例发生反应(FL), 8例无反应(NR)。使用DESeq2对CR、NR和FL组治疗前后的转录组学进行比较分析。采用加权基因共表达网络分析(WGCNA)和ROC分析来鉴定和验证预测治疗反应的枢纽基因。基于此,我们观察到CR PBMCs处理后细胞周期蛋白降解、G0和G1期蛋白表达和凋亡等途径上调,而IFN-γ信号传导和ECM组织下调。cyc处理后,NR肾组织中ECM分子、类化修饰和BCR信号通路上调,而在NR肾组织中,TLR、IFN和NF-κB信号通路上调。在FL PBMCs中,中性粒细胞脱颗粒和吞噬细胞中ROS和RNS的产生在治疗后下调,而在相应的肾组织中,细胞- ecm相互作用和ISG15抗病毒机制下调。经过WGCNA和随后的ROC分析,pbmc的TENM2、NLGN1和AP005230.1分别预测NR (AUC-0.91;p = 0.03),而联合模型改善了预测(AUC-0.94;p = 0.02)。肾组织AP005230.1也预测无反应(AUC-0.94;p = 0.01)和AC092436.3预测肾耀斑(AUC-0.81;p = 0.04)。我们的研究确定了不同治疗结果特异性的显著deg /途径和预测无反应和肾脏耀斑的中心基因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Renal and Peripheral Blood Transcriptome Signatures That Predict Treatment Response in Proliferative Lupus Nephritis—A Prospective Study

Renal and Peripheral Blood Transcriptome Signatures That Predict Treatment Response in Proliferative Lupus Nephritis—A Prospective Study

Mechanisms contributing to non-response to treatment in lupus nephritis (LN) are unclear. We characterised the transcriptome of paired peripheral blood mononuclear cells (PBMCs) and renal tissues in LN before and after cyclophosphamide (CYC) treatment and identified markers that predicted treatment response. Total RNA isolated from paired PBMCs (n = 32) and renal tissues (n = 25) of 16 proliferative LN before CYC treatment, 6 months post-treatment, and during renal flare, was sequenced on Illumina Novaseq-6000 platform. Post-treatment, eight patients were clinical responders (CR), of whom four flared (FL), and eight were non-responders (NR). Comparative transcriptomic analyses before and after treatment within CR, NR, and FL groups was performed using DESeq2. Weighted gene co-expression network analysis (WGCNA) and ROC analysis was performed to identify and validate hub genes predictive of treatment response. Based on this, we observed that pathways such as degradation of cell cycle proteins, expression of G0 and G1 phase proteins, and apoptosis, were upregulated in CR PBMCs post-treatment, while IFN-γ signalling and ECM organisation were downregulated. In NR PBMCs, ECM molecules, neddylation and BCR signalling were upregulated post-CYC treatment, while in NR renal tissue, TLR, IFN and NF-κB signalling pathways were upregulated. In FL PBMCs, neutrophil degranulation and ROS and RNS production in phagocytes were downregulated following treatment, whereas, in the corresponding renal tissue, cell-ECM interactions and ISG15 antiviral mechanism were downregulated. After WGCNA and subsequent ROC analysis, TENM2, NLGN1 and AP005230.1 from PBMCs each predicted NR (AUC-0.91; p = 0.03), while combined model improved prediction (AUC-0.94; p = 0.02). AP005230.1 from renal tissue also predicted non-response (AUC-0.94; p = 0.01) and AC092436.3 from PBMCs predicted renal flare (AUC-0.81; p = 0.04). Our study identified significant DEGs/pathways specific to different treatment outcomes and hub genes that predicted non-response and renal flare.

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来源期刊
Immunology
Immunology 医学-免疫学
CiteScore
11.90
自引率
1.60%
发文量
175
审稿时长
4-8 weeks
期刊介绍: Immunology is one of the longest-established immunology journals and is recognised as one of the leading journals in its field. We have global representation in authors, editors and reviewers. Immunology publishes papers describing original findings in all areas of cellular and molecular immunology. High-quality original articles describing mechanistic insights into fundamental aspects of the immune system are welcome. Topics of interest to the journal include: immune cell development, cancer immunology, systems immunology/omics and informatics, inflammation, immunometabolism, immunology of infection, microbiota and immunity, mucosal immunology, and neuroimmunology. The journal also publishes commissioned review articles on subjects of topical interest to immunologists, and commissions in-depth review series: themed sets of review articles which take a 360° view of select topics at the heart of immunological research.
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