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Biology subjects

Prabhu, S. S.

Publications and source records attributed to Prabhu, S. S..

2 recordsLinked to original sources

NEUTROPHILS ARE INDISPENSABLE FOR ADVERSE CARDIAC REMODELING IN HEART FAILURE

Persistent immune activation contributes significantly to left ventricular (LV) dysfunction and adverse remodeling in heart failure (HF). In contrast to their well-known essential role in acute myocardial infarction (MI) as first responders that clear dead cells and facilitate subsequent reparative macrophage polarization, the role of neutrophils in the pathobiology of chronic ischemic HF is poorly defined. To determine the importance of neutrophils in the progression of ischemic cardiomyopathy, we measured their production, levels, and activation in a mouse model chronic HF 8 weeks after permanent coronary artery ligation and large MI. In HF mice, neutrophils were expanded both locally in failing myocardium (more in the border zone) and systemically in the blood, spleen and bone marrow, together with increased BM granulopoiesis. There were heightened stimuli for neutrophil recruitment and trafficking in HF, with increased myocardial expression of the neutrophil chemoattract chemokines CXCL1 and CXCL5, and increased neutrophil chemotactic factors in the circulation. HF neutrophil NETotic activity was increased in vitro with coordinate increases in circulating neutrophil extracellular traps (NETs) in vivo. Neutrophil depletion with either antibody-based or genetic approaches abrogated the progression of LV remodeling and fibrosis at both intermediate and late stages of HF. Moreover, analogous to murine HF, the plasma milieu in human acute decompensated HF strongly promoted neutrophil trafficking. Collectively, these results support a key tissue-injurious role for neutrophils and their associated cytotoxic products in ischemic cardiomyopathy and suggest that neutrophils are potential targets for therapeutic immunomodulation in this disease.

immunology↗

A pan-cancer analysis of matrisome proteins reveals CTHRC1and LOXL2 as major ECM regulators across cancers

The extracellular matrix as part of the tumor microenvironment can regulate cancer cell growth and progression. Using TCGA data from 30 cancer types, the top 5% of matrisome genes with amplifications or deletions that affect survival in cancers were identified. Eight of these genes show altered expression in ~50% or more cancers affecting survival in ~20% or more. Among them SNED1 is the most downregulated and CTHRC1 and LOXL2 most upregulated. Differential gene expression analysis of SNED-1 did not identify any genes it regulates across cancers, while CTHRC1 and LOXL2 affected 19 and 5 genes respectively in 3 or more cancers. STRING analysis of these genes classified them as extracellular, involved prominently in ECM organization. Their correlation and co-occurrence in context of their effect on survival and staging of the disease identified MMP13, POSTN and SFRP4 along with COL11A1, COL10A1, COL1A1, ADAMTS12 and PPAPDC1A as possible interactors of CTHRC1 and LOXL2 in cancers. These are implicated in collagen organization, making it vital to matrisome regulation of cancers. Clinical Proteomic Tumor Analysis Consortium data confirms the changes in expression of these genes along with CTHRC1 and LOXL2 in breast and lung cancer, further supporting their implication as vital pan-cancer matrisome mediators. HighlightsO_LICTHRC1 and LOXL2 are prominently upregulated pan-cancer matrisome genes. C_LIO_LIHigh CTHRC1 and LOXL2 expression is associated with disease progression and poor survival in cancers. C_LIO_LICTHRC1 with POSTN, MMP13 and SFRP4 and LOXL2 with COL11A1, COL10A1, COL1A1, ADAMTS12 and PPAPDC1A drive matrisome regulation of cancers. C_LIO_LICTHRC1 and LOXL2 could prominently drive collagen organization and function across cancers. C_LI

bioinformatics↗