Author/Authors :
Kusuma, Hanna Sari Widya Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Widowati, Wahyu Faculty of Medicine - Maranatha Christian University - Bandung - West Java, Indonesia , Gunanegara, Rimonta Febby Faculty of Medicine - Maranatha Christian University - Bandung - West Java, Indonesia , Juliandi, Berry Department of Biology - Faculty of Mathematics and Natural Sciences - Bogor Agricultural University - IPB Darmaga Campus - Bogor - West Java, Indonesia , Lister, Nyoman Ehrich Universitas Prima Indonesia - Medan North Sumatera, Indonesia , Arumwardana, Seila Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Yusepany, Dewani Tediana Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Artie, Dwi Surya Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Nataya, Enden Dea Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Gunawan, Kamila Yashfa Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Sholihah, Ika Adhani Biomolecular and Biomedical Research Center - Aretha Medika - Utama - Bandung - West Java, Indonesia , Girsang, Ermi Universitas Prima Indonesia - Medan North Sumatera, Indonesia , Ginting, Chrismis Novalinda Universitas Prima Indonesia - Medan North Sumatera, Indonesia , Bachtiar, Indra Stem Cell and Cancer Institute - Jakarta, Indonesia , Murti, Harry Stem Cell and Cancer Institute - Jakarta, Indonesia
Abstract :
Osteoarthritis (OA) is a chronic disease that attacks joints and bones
which can be caused by trauma or other joint diseases. Stem cell and Conditioned
Medium (CM) of stem cells are developed for OA therapy, which is minimally invasive.
It can decrease inflammation and be a replacement for knee surgery. This study
aimed to utilize human Wharton’s Jelly-Mesenchymal Stem Cells (hWJMSCs) as an alternative
OA therapy.
Methods: CM from hWJMSCs induced by IGF1 was collected. The OA cells model (IL1β-
CHON002) culture was treated as follows: 1) with hWJMSCs-CM 15% (v/v); 2) with
hWJMSCs-CM 30% (v/v); 3) with IGF1-hWJMSCs (IGF1-hWJMSCs-CM) 15% (v/v); 4)
with IGF1-hWJMSCs-CM 30% (v/v). Parameters including inflammatory cytokines
(IL10 and TNFα), extracellular matrix degradation (MMP3 expression), and chondrogenic
marker (COL2 expression) were determined.
Results: The most significant increase in COL2 chondrogenic markers was found in
IL1β-CHON002 treatment using 15% CM of hWJMSCs induced with IGF1. CM of hWJMSCs
can reduce inflammatory cytokines (TNFα and IL10) and matrix degradation
mediator MMP3. Better result was gained from IGF1-induced hWJMSCs-CM.
Conclusion: CM of IGF1-hWJMSCs reduce inflammation while repairing injured joint in
the human chondrocyte OA model.
Keywords :
Wharton’s jelly , Proinflammatory , Osteoarthritis , IGF1 , Chondrocyte