Peter Boros
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Explore the profile of Peter Boros including associated specialties, affiliations and a list of published articles.
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Articles
23
Citations
986
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0
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Recent Articles
1.
Boros P, Olvaszto S, Litauszky K, Bodnar F, Meszaros J, Toth C
Orv Hetil
. 2019 Sep;
160(37):1471-1475.
PMID: 31495189
The management of the abdominal aortic aneurysm is associated with several risk factors, especially in patients after renal transplantation. Endovascular aneurysm repair (EVAR) can be the proper treatment in feasible...
2.
Ochando J, Ordikhani F, Jordan S, Boros P, Thomson A
Transpl Int
. 2019 Sep;
33(2):113-127.
PMID: 31472079
Dendritic cells (DCs) are specialized cells of the innate immune system that are characterized by their ability to take up, process and present antigens (Ag) to effector T cells. They...
3.
Ochando J, Ordikhani F, Boros P, Jordan S
Cell Mol Immunol
. 2019 Feb;
16(4):350-356.
PMID: 30804476
Surgical trauma and ischemia reperfusion injury (IRI) are unavoidable aspects of any solid organ transplant procedure. They trigger a multifactorial antigen-independent inflammatory process that profoundly affects both the early and...
4.
Braza M, van Leent M, Lameijer M, Sanchez-Gaytan B, Arts R, Perez-Medina C, et al.
Immunity
. 2018 Nov;
49(5):819-828.e6.
PMID: 30413362
Inducing graft acceptance without chronic immunosuppression remains an elusive goal in organ transplantation. Using an experimental transplantation mouse model, we demonstrate that local macrophage activation through dectin-1 and toll-like receptor...
5.
Braza M, Conde P, Garcia M, Cortegano I, Brahmachary M, Pothula V, et al.
Am J Transplant
. 2018 Jan;
18(5):1247-1255.
PMID: 29314558
The colony-stimulating factor 1 (CSF1) regulates the differentiation and function of tissue macrophages and determines the outcome of the immune response. The molecular mechanisms behind CSF1-mediated macrophage development remain to...
6.
Papp G, Boros P, Nakken B, Szodoray P, Zeher M
Autoimmun Rev
. 2017 Mar;
16(5):435-444.
PMID: 28286106
In physiological circumstances, various tolerogenic mechanisms support the protection of self-structures during immune responses. However, quantitative and/or qualitative changes in regulatory immune cells and mediators can evoke auto-reactive immune responses,...
7.
Boros P, Ochando J, Zeher M
Hum Immunol
. 2016 Jun;
77(8):631-636.
PMID: 27240453
Myeloid-derived suppressor cells are a heterogeneous group of immature myeloid cells with immunoregulatory function. When activated and expanded, these cells can suppress T cell functions via cell-to cell interactions as...
8.
Conde P, Rodriguez M, van der Touw W, Jimenez A, Burns M, Miller J, et al.
Immunity
. 2015 Jun;
42(6):1143-58.
PMID: 26070485
Tissue effector cells of the monocyte lineage can differentiate into different cell types with specific cell function depending on their environment. The phenotype, developmental requirements, and functional mechanisms of immune...
9.
Boros P, Ochando J, Chen S, Bromberg J
Hum Immunol
. 2010 Aug;
71(11):1061-6.
PMID: 20705113
Myeloid derived suppressor cells (MDSC) contribute to the negative regulation of immune response in cancer patients. This review summarizes results on important issues related to MDSC biology, including expansion and...
10.
Rodriguez-Garcia M, Boros P, Bromberg J, Ochando J
Curr Opin Organ Transplant
. 2010 Jul;
15(4):416-21.
PMID: 20616727
Purpose Of Review: Understanding the interplay between myeloid dendritic cells and T cells under tolerogenic conditions, and whether their interactions induce the development of antigen-specific regulatory T cells (Tregs) is...