Characterization of CD31 expression in CD4+ and CD8+T cell subpopulations in chronic untreated HIV infection

Author(s):  
Olivia Briceño ◽  
Amy Peralta-Prado ◽  
Daniela Garrido-Rodríguez ◽  
Karla Romero-Mora ◽  
Monserrat Chávez-Torres ◽  
...  
2020 ◽  
Vol 11 ◽  
Author(s):  
Jianguo Li ◽  
Jin Zhou ◽  
Shuangshuang Kai ◽  
Can Wang ◽  
Daijun Wang ◽  
...  

Blood ◽  
2004 ◽  
Vol 104 (11) ◽  
pp. 744-744 ◽  
Author(s):  
Pierluigi Porcu ◽  
Robert Baiocchi ◽  
Maureen Buckner ◽  
John C. Byrd ◽  
Cynthia M. Magro

Abstract Cutaneous T-cell lymphoma (CTCL) is a group of chronic lymphoproliferative disorders mostly of skin-homing CD4+ T-cells associated with profound suppression of cell-mediated immunity and loss of T-cell reportoire. The immunological effects of current CTCL therapies and their impact on response have not been studied in large samples of patients. Bexarotene is a synthetic retinoic X receptor (RXR) agonist that induces apoptosis in malignant T-cells and has significant clinical activity in CTCL. Bexarotene also exerts multiple effects on normal T-cells. We investigated the in-vivo immunomodulatory effects of bexarotene in patients with CTCL and correlated them with response. 37 patients (pts) with stage IB-III CTCL (33 Mycosis Fungoides, 1 ALCL, 3 pleomorphic small cell) received oral bexarotene (150–300 mg/m2/day) for a median duration of 13 months (range 4–18). Peripheral blood (PB) T-cell subpopulations were measured by multicolor flow cytometry at baseline and during therapy. Circulating CTCL cells were defined as CD4+ CD7− T-cells. 32/37 patients had an elevated PB CD4/CD8 ratio at diagnosis, regardless of the presence of circulating CTCL cells (3/37 pts) and 33/37 pts had a low absolute CD8+ T-cell count (median 98 cells/mm3, normal 150–1000/mm3). After a median time of 6.5 weeks on bexarotene (range 3.5–12) the CD8+ T-cell count had returned within normal range in 26/33 pts and the CD4/CD8 ratio had decreased in 27/32 pts. Responses (defined as Pysician Global Assessment [PGA] of clinical condition) were observed in 24/37 pts (64.8%). Responders had significantly higher peak CD8+ T-cell counts compared to non-responders (median 975/mm3 vs 221/mm3, P=0.002) and lower CD4/CD8 ratios (median 0.8 vs 2.4, P=0.005). At this time 21 pts have relapsed, with median duration of response 9.5 months. A ≥50% decrease in the PB CD8+ T-cell count preceded cutaneous relapse in 17/21 pts (81%) by a median time of 4.5 weeks (range 3–6.5 weeks). Functional analysis (mitogenic response, cytokine secretion, antigenic repertoire) of PB T-cell subpopulations from these pts at baseline and during therapy with bexarotene is in progress. Bexarotene appears to have a profound in vivo T-cell immunomodulatory effect in CTCL pts. The importance of these immune effects for clinical response vis-a-vis direct induction of apoptosis in CTCL needs to be further studied. If these results are confirmed in larger samples, monitoring of PB T-cell subpopulations may provide clinically valuable information in predicting response and relapse.


2015 ◽  
Vol 98 (5) ◽  
pp. 851-857 ◽  
Author(s):  
J. Zeng ◽  
Z. Song ◽  
X. Cai ◽  
S. Huang ◽  
W. Wang ◽  
...  

2007 ◽  
Vol 23 (3) ◽  
pp. 471-476 ◽  
Author(s):  
Xiaoyan Zhan ◽  
Julia L. Hurwitz ◽  
Scott A. Brown ◽  
Karen S. Slobod

2018 ◽  
Author(s):  
Sebastian Scheer ◽  
Suzanne Ackloo ◽  
Tiago S. Medina ◽  
Matthieu Schapira ◽  
Fengling Li ◽  
...  

SUMMARYProtein methyltransferases (PMTs) comprise a major class of epigenetic regulatory enzymes with therapeutic relevance. Here we present a collection of chemical probes and associated reagents and data to elucidate the function of human and murine PMTs in cellular studies. Our collection provides inhibitors and antagonists that together modulate most of the key regulatory methylation marks on histones H3 and H4, providing an important resource for modulating cellular epigenomes. We describe a comprehensive and comparative characterization of the probe collection with respect to their potency, selectivity, and mode of inhibition. We demonstrate the utility of this collection in CD4+ T cell differentiation assays revealing the remarkable potential of individual probes to alter multiple T cell subpopulations with important implications for T cell-mediated processes such as inflammation and immuno-oncology. In particular, we demonstrate a role for DOT1L in limiting Th1 cell differentiation and maintaining lineage integrity.


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