Genome-Wide Expression Analysis Suggests Hypoxia-Triggered Hyper-Coagulation Leading to Venous Thrombosis at High Altitude

Author:

Jha Prabhash1,Sahu Anita1,Prabhakar Amit1,Tyagi Tarun1,Chatterjee Tathagata2,Arvind Prathima3,Nair Jiny3,Gupta Neha1,Kumari Babita1,Nair Velu4,Bajaj Nitin5,Shanker Jayashree3,Sharma Manish1,Kumar Bhuvnesh1,Ashraf Mohammad1

Affiliation:

1. Defense Institute of Physiology and Allied Sciences, Defense Research and Development Organisation, Delhi, India

2. Army Hospital (Research and Referral), New Delhi, India

3. Thrombosis Research Institute, India, Bangalore, Karnataka, India

4. Armed Forces Medical College, Pune, Maharashtra, India

5. Command Hospital (Western Command) Chandimandir, Panchkula, Haryana, India

Abstract

AbstractVenous thromboembolism (VTE), a multi-factorial disease, is the third most common cardiovascular disease. Established genetic and acquired risk factors are responsible for the onset of VTE. High altitude (HA) also poses as an additional risk factor, predisposing individuals to VTE; however, its molecular mechanism remains elusive. This study aimed to identify genes/pathways associated with the pathophysiology of deep vein thrombosis (DVT) at HA. Gene expression profiling of DVT patients, who developed the disease, either at sea level or at HA-DVT locations, resulted in differential expression of 378 and 875 genes, respectively. Gene expression profiles were subjected to bioinformatic analysis, followed by technical and biological validation of selected genes using quantitative reverse transcription-polymerase chain reaction. Both gene ontology and pathway analysis showed enrichment of genes involved in haemostasis and platelet activation in HA-DVT patients with the most relevant pathway being ‘response to hypoxia’. Thus, given the environmental condition the differential expression of hypoxia-responsive genes (angiogenin, ribonuclease, RNase A family, 5; early growth response 1; lamin A; matrix metallopeptidase 14 [membrane-inserted]; neurofibromin 1; PDZ and LIM domain 1; procollagen-lysine 1, 2-oxoglutarate 5-dioxygenase 1; solute carrier family 6 [neurotransmitter transporter, serotonin], member 4; solute carrier family 9 [sodium/hydrogen exchanger], member 1; and TEK tyrosine kinase, endothelial) in HA-DVT could be a determining factor to understand the pathophysiology of DVT at HA.

Publisher

Georg Thieme Verlag KG

Subject

Hematology

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