• Title of article

    Inhibition of Angiogenesis: A Novel Effect of Zataria Multiflora

  • Author/Authors

    Norooznezhad, Amir Hossein Medical Biology Research Center - Kermanshah University of Medical Sciences, Kermanshah, Iran , Keshavarz, Maryam Medical Biology Research Center - Kermanshah University of Medical Sciences, Kermanshah, Iran , Norooznezhad, Fatemeh Medical Biology Research Center - Kermanshah University of Medical Sciences, Kermanshah, Iran , Mansouri, Kamran Medical Biology Research Center - Kermanshah University of Medical Sciences, Kermanshah, Iran

  • Pages
    6
  • From page
    96
  • To page
    101
  • Abstract
    Background: Angiogenesis, the formation of new blood vessels from preexisting ones, is among the most important physiological and pathological processes that occur in the body. Under pathological conditions such as tumor growth, psoriasis, corneal neovascularization and rheumatoid arthritis, angiogenesis is substantial for the development of the disease. Zataria multiflora is a member of the Labiatae family with a vast range of traditional uses which has been long known and applied in Iran old medicine. The aim of this study was the evaluation of anti-angiogenic potential of Zataria multiflora. Materials and Methods: In this study, human umbilical vein endothelial cells (HUVECs) were isolated from newborn umbilical veins and then cultured for cytotoxicity (LDH test) assay. Regarding LDH results, following tests such as angiogenesis (cytodex-3 micro carrier) and migration (wound healing) tests were designed. Results: The cytotoxicity assays showed no toxicity of Z.multiflora toward HUVECs in the range of 10-450μg/mL of the extract. This extract was also able to inhibit angiogenesis and migration at 200μg/mL. Conclusion: Our data clearly demonstrated an inhibitory effect of Z. multiflora on angiogenesis and migration of HUVECs. Z. multiflora could be introduced as a significant angiogenesis inhibitor for angiogenesis-dependent diseases in further complementary studies.
  • Keywords
    Cell migration , Endothelial cells , Zataria multiflora , Angiogenesis
  • Journal title
    International Journal of Hematology-Oncology and Stem Cell Research (IJHOSCR)
  • Serial Year
    2017
  • Record number

    2517241