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71.
We have previously reported that murine peritoneal macrophages exposed to ultraviolet B (UV-B; 100 mJ/cm2) undergo apoptosis, as indicated by alterations in cell morphology, caspase-3 activation, poly (ADP-ribose) polymerase (PARP) cleavage, DNA fragmentation, sustained activation of p38/c-Jun N-terminal kinase (JNK) mitogen-activated protein kinases (MAPKs) and inactivation of p42/44 MAPKs. It is now reported that macrophages undergoing UV-B-induced apoptosis show enhanced expression of protein kinase Cdelta (PKCdelta) in a time-dependent manner. Pretreatment of macrophages with PKCdelta-specific inhibitor rottlerin prior to the UV-B irradiation inhibits activation of caspase-3, PARP cleavage, DNA fragmentation and release of intracellular Ca2+. Inhibition of PKCdelta also blocks the sustained activation of p38 and JNK MAPKs as well as inactivation of p42/44 MAPKs. PKCalpha and PKCbeta1 expression also increases during UV-B-induced apoptosis in macrophages. Inhibition of these two isoforms with Go6976 slightly suppresses caspase-3 activation, PARP cleavage, DNA fragmentation and release of intracellular Ca2+, but has no effect on the sustained activation of p38/JNK MAPKs or inactivation of p42/44 MAPKs. It is, therefore, suggested that activation of PKCdelta might play an important role in the UV-B-induced apoptosis and that specific activated isoforms of PKC may have distinct functions in cell death. 相似文献
72.
Jason C. Brophy Michael T. Hawkes Edson Mwinjiwa Gabriel Mateyu Sumeet K. Sodhi Adrienne K. Chan 《PloS one》2016,11(11)
BackgroundPediatric uptake and outcomes in antiretroviral treatment (ART) programmes have lagged behind adult programmes. We describe outcomes from a population-based pediatric ART cohort in rural southern Malawi.MethodsData were analyzed on children who initiated ART from October/2003 –September/2011. Demographics and diagnoses were described and survival analyses conducted to assess the impact of age, presenting features at enrolment, and drug selection.ResultsThe cohort consisted of 2203 children <15 years of age. Age at entry was <1 year for 219 (10%), 1–1.9 years for 343 (16%), 2–4.9 years for 584 (27%), and 5–15 years for 1057 (48%) patients. Initial clinical diagnoses of tuberculosis and wasting were documented for 409 (19%) and 523 (24%) patients, respectively. Median follow-up time was 1.5 years (range 0–8 years), with 3900 patient-years of follow-up. Over the period of observation, 134 patients (6%) died, 1324 (60%) remained in the cohort, 345 (16%) transferred out, and 387 (18%) defaulted. Infants <1 year of age accounted for 19% of deaths, with a 2.7-fold adjusted mortality hazard ratio relative to 5–15 year olds; median time to death was also shorter for infants (60 days) than older children (108 days). Survival analysis demonstrated younger age at ART initiation, more advanced HIV stage, and presence of tuberculosis to each be associated with shorter survival time. Among children <5 years, severe wasting (weight-for-height z-score </ = -3.0) was also associated with reduced survival.ConclusionsCumulative incidence of mortality was 5.2%, 7.1% and 7.7% after 1, 3, and 5 years, respectively, with disproportionate mortality in infants <1 year of age and those presenting with tuberculosis. These findings reinforce the urgent need for early diagnosis and treatment in this population, but also demonstrate that provision of pediatric care in a rural setting can yield outcomes comparable to more resourced urban settings of poor countries. 相似文献
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Jasper C. Lin Ruth A. Ettinger Jason T. Schuman Ai-Hong Zhang Muhammad Wamiq-Adhami Phuong-Cac T. Nguyen Shelley M. Nakaya-Fletcher Komal Puranik Arthur R. Thompson Kathleen P. Pratt 《PloS one》2015,10(1)
The development of neutralizing anti-factor VIII (FVIII) antibodies complicates the treatment of many hemophilia A patients. The C-terminal C2 domain is a particularly antigenic FVIII region. A crystal structure of recombinant FVIII-C2 bound to an Fab fragment of the patient-derived monoclonal antibody BO2C11, which recognizes an immunodominant inhibitor epitope on FVIII and blocks its ability to bind von Willebrand factor (VWF) and phospholipids, revealed that 15 amino acids in FVIII contact this antibody. Forty-three recombinant FVIII-C2 proteins, each with a surface-exposed side chain mutated to alanine or another residue, were generated, and surface plasmon resonance studies were carried out to evaluate effects of these substitutions on BO2C11/FVIII-C2 binding affinity. Thermodynamic analysis of experiments carried out at three temperatures indicated that one beta hairpin turn at the antigen-antibody interface (FVIII-F2196, N2198, M2199 and F2200) plus two non-contiguous arginines (FVIII-R2215 and R2220), contributed appreciably to the affinity. B-domain-deleted (BDD) FVIII-F2196A, FVIII-F2196K and FVIII-M2199A were generated and characterized. Their pro-coagulant activities and binding to VWF were similar to those of WT-BDD-FVIII, and FVIII-F2196K avoided neutralization by BO2C11 and murine inhibitory mAb 1B5. This study suggests specific sites for amino acid substitutions to rationally design FVIII variants capable of evading immunodominant neutralizing anti-FVIII antibodies. 相似文献
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Mycobacterium indicus pranii (MIP), also known as Mw, is a saprophytic, non-pathogenic strain of Mycobacterium and is commercially available as a heat-killed vaccine for leprosy and recently tuberculosis (TB) as part of MDT. In this study we provide evidence that cell-free supernatant collected from original MIP suspension induces rapid and enhanced apoptosis in mouse peritoneal macrophages in vitro. It is demonstrated that the MIP cell-free supernatant induced apoptosis is mitochondria-mediated and caspase independent and involves mitochondrial translocation of Bax and subsequent release of AIF and cytochrome c from the mitochondria. Experiments with pharmacological inhibitors suggest a possible role of PKC in mitochondria-mediated apoptosis of macrophages. 相似文献
78.
Jham BC Ma T Hu J Chaisuparat R Friedman ER Pandolfi PP Schneider A Sodhi A Montaner S 《PloS one》2011,6(4):e19103
Background
Kaposi''s sarcoma (KS) is a vascular neoplasm characterized by the dysregulated expression of angiogenic and inflammatory cytokines. The driving force of the KS lesion, the KSHV-infected spindle cell, secretes elevated levels of vascular endothelial growth factor (VEGF), essential for KS development. However, the origin of VEGF in this tumor remains unclear.Methodology/Principal Findings
Here we report that the KSHV G protein-coupled receptor (vGPCR) upregulates VEGF in KS through an intricate paracrine mechanism. The cytokines secreted by the few vGPCR-expressing tumor cells activate in neighboring cells multiple pathways (including AKT, ERK, p38 and IKKβ) that, in turn, converge on TSC1/2, promoting mTOR activation, HIF upregulation, and VEGF secretion. Conditioned media from vGPCR-expressing cells lead to an mTOR-dependent increase in HIF-1α and HIF-2α protein levels and VEGF upregulation. In a mouse allograft model for KS, specific inhibition of the paracrine activation of mTOR in non-vGPCR-expressing cells was sufficient to inhibit HIF upregulation in these cells, and abolished the ability of the vGPCR-expressing cells to promote tumor formation in vivo. Similarly, pharmacologic inhibition of HIF in this model blocked VEGF secretion and also lead to tumor regression.Conclusions/Significance
Our findings provide a compelling explanation for how the few tumor cells expressing vGPCR can contribute to the dramatic amplification of VEGF secretion in KS, and further provide a molecular mechanism for how cytokine dysregulation in KS fuels angiogenesis and tumor development. These data further suggest that activation of HIF by vGPCR may be a vulnerable target for the treatment of patients with KS. 相似文献79.
80.
Komal Kamra Harpreet Kaur Shashi Jeeva Susan Abraham Sripoorna Somasundaram Seema Makhija Ravi Toteja Alan Warren Renu Gupta 《The Journal of eukaryotic microbiology》2020,67(2):296-299
Ciliated protists have attracted wide interest among researchers from the Indian subcontinent in the last few years. An International Symposium on Ciliate Biology (ISCB) 2018 was held on 04–06 April 2018 at the India Habitat Centre, New Delhi, India. The symposium represented a synergy with International Research Coordination Network for Biodiversity of Ciliates (IRCN‐BC), an affiliate society of International Society of Protistologists (ISOP). The symposium provided a platform for Indian and International delegates to exchange knowledge, present their latest research findings, and establish collaborations as well as creating a networking opportunity for undergraduate and postgraduate students. Nine foreign delegates from 5 countries and 300 Indian delegates actively participated in the event which included 22 oral and 57 poster presentations. 相似文献