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281 related items for PubMed ID: 24499053
1. CD14+CD16+ and CD14+CD163+ monocyte subpopulations in kidney allograft transplantation. Sekerkova A, Krepsova E, Brabcova E, Slatinska J, Viklicky O, Lanska V, Striz I. BMC Immunol; 2014 Feb 06; 15():4. PubMed ID: 24499053 [Abstract] [Full Text] [Related]
2. Expression of CD206 and CD163 on intermediate CD14++CD16+ monocytes are increased in hemorrhagic fever with renal syndrome and are correlated with disease severity. Li X, Du N, Xu G, Zhang P, Dang R, Jiang Y, Zhang K. Virus Res; 2018 Jul 15; 253():92-102. PubMed ID: 29857122 [Abstract] [Full Text] [Related]
3. Monocyte implication in renal allograft dysfunction. Guillén-Gómez E, Guirado L, Belmonte X, Maderuelo A, Santín S, Juarez C, Ars E, Facundo C, Ballarín JA, Vidal S, Díaz-Encarnación MM. Clin Exp Immunol; 2014 Feb 15; 175(2):323-31. PubMed ID: 24134783 [Abstract] [Full Text] [Related]
4. Differential expression and predictive value of monocyte scavenger receptor CD163 in populations with different tuberculosis infection statuses. Liu Q, Ou Q, Chen H, Gao Y, Liu Y, Xu Y, Ruan Q, Zhang W, Shao L. BMC Infect Dis; 2019 Nov 28; 19(1):1006. PubMed ID: 31779590 [Abstract] [Full Text] [Related]
5. Activated Platelets Convert CD14+CD16- Into CD14+CD16+ Monocytes With Enhanced FcγR-Mediated Phagocytosis and Skewed M2 Polarization. Lee SJ, Yoon BR, Kim HY, Yoo SJ, Kang SW, Lee WW. Front Immunol; 2020 Nov 28; 11():611133. PubMed ID: 33488616 [Abstract] [Full Text] [Related]
6. Up-regulation of CD163 expression in subpopulations of blood monocytes after kidney allograft transplantation. Čurnová L, Mezerová K, Švachová V, Fialová M, Novotný M, Čečrdlová E, Viklický O, Stříž I. Physiol Res; 2020 Nov 16; 69(5):885-896. PubMed ID: 32901498 [Abstract] [Full Text] [Related]
7. Expression of CD163 and HLA-DR molecules on the monocytes in chronic lymphocytic leukemia patients. Kowalska W. Folia Histochem Cytobiol; 2020 Nov 16; 58(1):17-24. PubMed ID: 32176313 [Abstract] [Full Text] [Related]
8. The expansion of CD14+ CD163+ subpopulation of monocytes and myeloid cells-associated cytokine imbalance; candidate diagnostic biomarkers for celiac disease (CD). Babania O, Mohammadi S, Yaghoubi E, Sohrabi A, Sadat Seyedhosseini F, Abdolahi N, Yazdani Y. J Clin Lab Anal; 2021 Oct 16; 35(10):e23984. PubMed ID: 34449925 [Abstract] [Full Text] [Related]
9. Differential expression of CD163 on monocyte subsets in healthy and HIV-1 infected individuals. Tippett E, Cheng WJ, Westhorpe C, Cameron PU, Brew BJ, Lewin SR, Jaworowski A, Crowe SM. PLoS One; 2011 Oct 16; 6(5):e19968. PubMed ID: 21625498 [Abstract] [Full Text] [Related]
10. Elevated plasma soluble CD14 and skewed CD16+ monocyte distribution persist despite normalisation of soluble CD163 and CXCL10 by effective HIV therapy: a changing paradigm for routine HIV laboratory monitoring? Castley A, Berry C, French M, Fernandez S, Krueger R, Nolan D. PLoS One; 2014 Oct 16; 9(12):e115226. PubMed ID: 25544986 [Abstract] [Full Text] [Related]
11. Immunosuppression and monocyte subsets. Rogacev KS, Zawada AM, Hundsdorfer J, Achenbach M, Held G, Fliser D, Heine GH. Nephrol Dial Transplant; 2015 Jan 16; 30(1):143-53. PubMed ID: 25313167 [Abstract] [Full Text] [Related]
12. Circulating classical CD14++CD16- monocytes predict shorter time to initial treatment in chronic lymphocytic leukemia patients: Differential effects of immune chemotherapy on monocyte-related membrane and soluble forms of CD163. Lapuc I, Bolkun L, Eljaszewicz A, Rusak M, Luksza E, Singh P, Miklasz P, Piszcz J, Ptaszynska-Kopczynska K, Jasiewicz M, Kaminski K, Dabrowska M, Bodzenta-Lukaszyk A, Kloczko J, Moniuszko M. Oncol Rep; 2015 Sep 16; 34(3):1269-78. PubMed ID: 26135617 [Abstract] [Full Text] [Related]
13. IL-10 induces activated phenotypes of monocytes observed in virally-suppressed HIV-1-infected individuals. Takahashi N, Eltalkhawy YM, Nasu K, Abdelnaser RA, Monde K, Habash SA, Nasser H, Hiyoshi M, Ishimoto T, Suzu S. Biochem Biophys Res Commun; 2024 Oct 15; 729():150342. PubMed ID: 38981402 [Abstract] [Full Text] [Related]
14. Enhanced frequencies of CD14++CD16+, but not CD14+CD16+, peripheral blood monocytes in severe asthmatic patients. Moniuszko M, Bodzenta-Lukaszyk A, Kowal K, Lenczewska D, Dabrowska M. Clin Immunol; 2009 Mar 15; 130(3):338-46. PubMed ID: 18952503 [Abstract] [Full Text] [Related]
15. CD163 levels, pro- and anti-inflammatory cytokine secretion of monocytes in children with pulmonary tuberculosis. Aktas Cetin E, Pur Ozyigit L, Gelmez YM, Cakir E, Gedik AH, Deniz G. Pediatr Pulmonol; 2017 May 15; 52(5):675-683. PubMed ID: 27685837 [Abstract] [Full Text] [Related]
16. CD163 as a Potential Biomarker of Monocyte Activation in Ischemic Stroke Patients. Greco R, Demartini C, Zanaboni AM, Tumelero E, Persico A, Candeloro E, Morotti A, Amantea D, Tassorelli C. Int J Mol Sci; 2021 Jun 23; 22(13):. PubMed ID: 34201498 [Abstract] [Full Text] [Related]
17. A Novel, Five-Marker Alternative to CD16-CD14 Gating to Identify the Three Human Monocyte Subsets. Ong SM, Teng K, Newell E, Chen H, Chen J, Loy T, Yeo TW, Fink K, Wong SC. Front Immunol; 2019 Jun 23; 10():1761. PubMed ID: 31402918 [Abstract] [Full Text] [Related]
18. Circulating CD14+CD163+CD206+ M2 Monocytes Are Increased in Patients with Early Stage of Idiopathic Membranous Nephropathy. Hou J, Zhang M, Ding Y, Wang X, Li T, Gao P, Jiang Y. Mediators Inflamm; 2018 Jun 23; 2018():5270657. PubMed ID: 30034290 [Abstract] [Full Text] [Related]
19. Monocyte isolation techniques significantly impact the phenotype of both isolated monocytes and derived macrophages in vitro. Nielsen MC, Andersen MN, Møller HJ. Immunology; 2020 Jan 23; 159(1):63-74. PubMed ID: 31573680 [Abstract] [Full Text] [Related]
20. [Impact of qutan huayu jiedu herbs on monocyte subpopulations abnormality in patients with hyperlipidemia of phlegm-stagnancy obstruction syndrome pattern]. Ma YL, Wang YH, Han JY. Zhongguo Zhong Xi Yi Jie He Za Zhi; 2011 Jan 23; 31(1):23-7. PubMed ID: 21434338 [Abstract] [Full Text] [Related] Page: [Next] [New Search]