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Endothelial Cells as Tools to Model Tissue Microenvironment in Hypoxia-Dependent Pathologies.

Aleksandra MajewskaKinga WilkusKlaudia BrodaczewskaClaudine Kieda
Published in: International journal of molecular sciences (2021)
Endothelial cells (ECs) lining the blood vessels are important players in many biological phenomena but are crucial in hypoxia-dependent diseases where their deregulation contributes to pathology. On the other hand, processes mediated by ECs, such as angiogenesis, vessel permeability, interactions with cells and factors circulating in the blood, maintain homeostasis of the organism. Understanding the diversity and heterogeneity of ECs in different tissues and during various biological processes is crucial in biomedical research to properly develop our knowledge on many diseases, including cancer. Here, we review the most important aspects related to ECs' heterogeneity and list the available in vitro tools to study different angiogenesis-related pathologies. We focus on the relationship between functions of ECs and their organo-specificity but also point to how the microenvironment, mainly hypoxia, shapes their activity. We believe that taking into account the specific features of ECs that are relevant to the object of the study (organ or disease state), especially in a simplified in vitro setting, is important to truly depict the biology of endothelium and its consequences. This is possible in many instances with the use of proper in vitro tools as alternative methods to animal testing.
Keyphrases
  • endothelial cells
  • high glucose
  • vascular endothelial growth factor
  • stem cells
  • single cell
  • healthcare
  • gene expression
  • squamous cell carcinoma
  • working memory
  • oxidative stress
  • cell cycle arrest