Transcriptome profiling of immune rejection mechanisms in a porcine vascularized composite allotransplantation model

被引:2
作者
Zhang, Lei [1 ,2 ]
Hoyos, Isabel Arenas [1 ]
Helmer, Anja [2 ]
Banz, Yara [3 ]
Zubler, Cedric [1 ]
Lese, Ioana [1 ,2 ]
Hirsiger, Stefanie [1 ]
Constantinescu, Mihai [1 ]
Rieben, Robert [2 ]
Gultom, Mitra [2 ]
Olariu, Radu [1 ,2 ]
机构
[1] Inselspital Univ Hosp Bern, Dept Plast & Hand Surg, Bern, Switzerland
[2] Univ Bern, Fac Med, Dept Biomed Res, Bern, Switzerland
[3] Univ Bern, Inst Pathol, Fac Med, Bern, Switzerland
基金
瑞士国家科学基金会;
关键词
vascularized composite allotransplantation (VCA); immune rejection; transcriptome profiling; RNA sequencing; bioinformatics analysis; large animal model; GRAFT-SURVIVAL; TRANSPLANTATION; CLASSIFICATION; ALLOGRAFTS; HAND;
D O I
10.3389/fimmu.2024.1390163
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Background Vascularized composite allotransplantation (VCA) offers the potential for a biological, functional reconstruction in individuals with limb loss or facial disfigurement. Yet, it faces substantial challenges due to heightened immune rejection rates compared to solid organ transplants. A deep understanding of the genetic and immunological drivers of VCA rejection is essential to improve VCA outcomesMethods Heterotopic porcine hindlimb VCA models were established and followed until reaching the endpoint. Skin and muscle samples were obtained from VCA transplant recipient pigs for histological assessments and RNA sequencing analysis. The rejection groups included recipients with moderate pathological rejection, treated locally with tacrolimus encapsulated in triglycerol-monostearate gel (TGMS-TAC), as well as recipients with severe end-stage rejection presenting evident necrosis. Healthy donor tissue served as controls. Bioinformatics analysis, immunofluorescence, and electron microscopy were utilized to examine gene expression patterns and the expression of immune response markers.Results Our comprehensive analyses encompassed differentially expressed genes, Gene Ontology, and Kyoto Encyclopedia of Genes and Genomes pathways, spanning various composite tissues including skin and muscle, in comparison to the healthy control group. The analysis revealed a consistency and reproducibility in alignment with the pathological rejection grading. Genes and pathways associated with innate immunity, notably pattern recognition receptors (PRRs), damage-associated molecular patterns (DAMPs), and antigen processing and presentation pathways, exhibited upregulation in the VCA rejection groups compared to the healthy controls. Our investigation identified significant shifts in gene expression related to cytokines, chemokines, complement pathways, and diverse immune cell types, with CD8 T cells and macrophages notably enriched in the VCA rejection tissues. Mechanisms of cell death, such as apoptosis, necroptosis and ferroptosis were observed and coexisted in rejected tissues.Conclusion Our study provides insights into the genetic profile of tissue rejection in the porcine VCA model. We comprehensively analyze the molecular landscape of immune rejection mechanisms, from innate immunity activation to critical stages such as antigen recognition, cytotoxic rejection, and cell death. This research advances our understanding of graft rejection mechanisms and offers potential for improving diagnostic and therapeutic strategies to enhance the long-term success of VCA.
引用
收藏
页数:14
相关论文
共 62 条
[1]   The Effects of Tacrolimus on Tissue-Specific, Protein-Level Inflammatory Networks in Vascularized Composite Allotransplantation [J].
Aral, Ali Mubin ;
Zamora, Ruben ;
Barclay, Derek ;
Yin, Jinling ;
El-Dehaibi, Fayten ;
Erbas, Vasil E. ;
Dong, Liwei ;
Zhang, Zhaoxiang ;
Sahin, Huseyin ;
Gorantla, Vijay S. ;
Vodovotz, Yoram .
FRONTIERS IN IMMUNOLOGY, 2021, 12
[2]   InnateDB: systems biology of innate immunity and beyond-recent updates and continuing curation [J].
Breuer, Karin ;
Foroushani, Amir K. ;
Laird, Matthew R. ;
Chen, Carol ;
Sribnaia, Anastasia ;
Lo, Raymond ;
Winsor, Geoffrey L. ;
Hancock, Robert E. W. ;
Brinkman, Fiona S. L. ;
Lynn, David J. .
NUCLEIC ACIDS RESEARCH, 2013, 41 (D1) :D1228-D1233
[3]  
Buttemeyer R, 1996, PLAST RECONSTR SURG, V97, P139
[4]   Transcriptomic analysis of graft liver provides insight into the immune response of rat liver transplantation [J].
Cao, Wanyue ;
Lu, Jing ;
Li, Shanbao ;
Song, Fangbin ;
Xu, Junming .
FRONTIERS IN IMMUNOLOGY, 2022, 13
[5]   The Banff 2007 working classification of skin-containing composite tissue Allograft Pathology [J].
Cendales, L. C. ;
Kanitakis, J. ;
Schneeberger, S. ;
Burns, C. ;
Ruiz, P. ;
Landin, L. ;
Remmelink, M. ;
Hewitt, C. W. ;
Landgren, T. ;
Lyons, B. ;
Drachenberg, C. B. ;
Solez, K. ;
Kirk, A. D. ;
Kleiner, D. E. ;
Racusen, L. .
AMERICAN JOURNAL OF TRANSPLANTATION, 2008, 8 (07) :1396-1400
[6]  
Chen BB, 2018, METHODS MOL BIOL, V1711, P243, DOI 10.1007/978-1-4939-7493-1_12
[7]  
Colvin MM, 2023, AM J TRANSPLANT, V23, pS300, DOI 10.1016/j.ajt.2023.02.008
[8]   CIBERSORT analysis of TCGA and METABRIC identifies subgroups with better outcomes in triple negative breast cancer [J].
Craven, Kelly E. ;
Gokmen-Polar, Yesim ;
Badve, Sunil S. .
SCIENTIFIC REPORTS, 2021, 11 (01)
[9]   Differentiation of transplanted haematopoietic stem cells tracked by single-cell transcriptomic analysis [J].
Dong, Fang ;
Hao, Sha ;
Zhang, Sen ;
Zhu, Caiying ;
Cheng, Hui ;
Yang, Zining ;
Hamey, Fiona K. ;
Wang, Xiaofang ;
Gao, Ai ;
Wang, Fengjiao ;
Gao, Yun ;
Dong, Ji ;
Wang, Chenchen ;
Wang, Jinyong ;
Lan, Yu ;
Liu, Bing ;
Ema, Hideo ;
Tang, Fuchou ;
Gottgens, Berthold ;
Zhu, Ping ;
Cheng, Tao .
NATURE CELL BIOLOGY, 2020, 22 (06) :630-+
[10]   Local release of tacrolimus from hydrogel-based drug delivery system is controlled by inflammatory enzymes in vivo and can be monitored non-invasively using in vivo imaging [J].
Dzhonova, Dzhuliya ;
Olariu, Radu ;
Leckenby, Jonathan ;
Dhayani, Ashish ;
Vemula, Praveen Kumar ;
Prost, Jean-Christophe ;
Banz, Yara ;
Taddeo, Adriano ;
Rieben, Robert .
PLOS ONE, 2018, 13 (08)