Hydrolyzed Collagen Tripeptide Promotes Longitudinal Bone Growth in Childhood Rats via Increases in Insulin-Like

Kang Hyun Leem1, Sanga Kim2, Junsik Lim1

  • 1College of Korean Medicine, Semyung University, Jecheon, Korea.

Journal of Medicinal Food
|October 20, 2023
PubMed

Insights

Collagen tripeptide 20 (CTP20) enhances bone and cartilage cell activity and promotes longitudinal bone growth in rats. This bioactive peptide may stimulate bone formation by boosting IGF-1 and BMPs.

Area of Science:

  • Biochemistry
  • Cell Biology
  • Orthopedics

Background:

  • Collagen tripeptide (CTP) shows health benefits, including skin aging protection and improved bone and cartilage health.
  • Collagen-Tripep20™ (CTP20) is a low-molecular-weight CTP from fish skin with high bioactive CTP content (Gly-Pro-Hyp >3.2%, tripeptide content >20%).

Purpose of the Study:

  • To investigate the osteogenic effects and mechanisms of CTP20 on osteoblast-like cells (MG-63) and chondrocytes (SW1353).
  • To evaluate the impact of CTP20 on longitudinal bone growth in juvenile rats.

Main Methods:

  • Assessed cell proliferation, alkaline phosphatase activity, collagen synthesis, and calcium deposition in MG-63 and SW1353 cells treated with CTP20.
  • Measured longitudinal bone growth and growth plate height in rats administered CTP20.
  • Analyzed protein expression of IGF-1, JAK2, STAT5, and BMPs in cells and rat growth plates.

Main Results:

  • CTP20 (100 μg/mL) significantly increased proliferation, alkaline phosphatase activity, collagen synthesis, and calcium deposition in both cell types.
  • CTP20 promoted longitudinal bone growth and increased tibia growth plate height in rats.
  • CTP20 enhanced IGF-1, JAK2, STAT5, and BMPs expression in cells and rat growth plates.

Conclusions:

  • CTP20 demonstrates significant osteogenic effects on bone and cartilage cells.
  • CTP20 promotes longitudinal bone growth in juvenile rats.
  • The findings suggest CTP20 may enhance endochondral ossification and bone growth via IGF-1 and BMP signaling pathways.