• Title of article

    Optimization of the Static Human Osteoblast/Osteoclast Co-culture System

  • Author/Authors

    Jolly, James Jam Departments of Pharmacology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia - Jalan Yaacob Latif - Banda - Tun Razak, 56000 Cheras - Wilayah Persekutuan Kuala Lumpur, Malaysia , Chin, Kok-Yong Departments of Pharmacology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia - Jalan Yaacob Latif - Banda - Tun Razak, 56000 Cheras - Wilayah Persekutuan Kuala Lumpur, Malaysia , Farhana, Mohd Fozi Nur Departments of Pharmacology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia - Jalan Yaacob Latif - Banda - Tun Razak, 56000 Cheras - Wilayah Persekutuan Kuala Lumpur, Malaysia , Hasan, Wan Nuraini Wan Departments of Pharmacology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia - Jalan Yaacob Latif - Banda - Tun Razak, 56000 Cheras - Wilayah Persekutuan Kuala Lumpur, Malaysia , Ima-Nirwana, Soelaiman Departments of Pharmacology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia - Jalan Yaacob Latif - Banda - Tun Razak, 56000 Cheras - Wilayah Persekutuan Kuala Lumpur, Malaysia , Alias, Ekram Departments of Biochemistry - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia, Jalan Yaacob Latif, Bandar Tun Razak, 56000 Cheras, Wilayah Persekutuan Kuala Lumpur, Malaysia , Chua, Kien Hui Departments of Physiology - Faculty of Medicine - Pusat Perubatan University Kebangsaan Malaysia, Jalan Yaacob Latif, Bandar Tun Razak, 56000 Cheras, Wilayah Persekutuan Kuala Lumpur, Malaysia

  • Pages
    6
  • From page
    208
  • To page
    213
  • Abstract
    Abstract Osteoblasts (OBs) and osteoclasts (OCs) are 2 major groups of bone cells. Their cell-to-cell interactions are important to ensure the continuity of the bone-remodeling process. Therefore, the present study was carried out to optimize an OB/OC co-culture system utilizing the human OB cell line hFOB 1.19 and OCs extracted from peripheral blood mononuclear cells (PBMNCs). It was a 2-step procedure, involving the optimization of the OB culture and the co-culture of the OBs with PBMNCs at an optimum ratio. Firstly, pre-OBs were cultured to 90% confluency and the time required for differentiation was determined. OB differentiation was determined using the van Gieson staining to detect the presence of collagen and Alizarin Red for calcium. Secondly, OBs and OCs were co-cultured at the ratios of 1 OC: 1 OB, 1 OC: 4 OBs, 2 OCs: 1 OB, and 1 OC: 2 OBs. Tartrateresistant acid phosphatase (TRAP) staining was used to detect the differentiation of the OCs. The results showed that collagen was present on day 1, whereas calcium was detected as early as day 3. Based on the result of TRAP staining, 1 OC: 2 OBs was taken as the most appropriate ratio. No macrophage colonystimulating factor and receptor activator of the nuclear factor-κB ligand were added because they were provided by the OBs. In conclusion, these optimization processes are vital as they ensure the exact time point and ratio of the OB/OC co-culture in order to produce a reliable and reproducible co-culture system.
  • Keywords
    Bone and Bones , Coculture Techniques , Osteoblasts , Osteoclasts , Bone Remodeling
  • Journal title
    Astroparticle Physics
  • Serial Year
    2018
  • Record number

    2445657