Lactoferrin Deficiency Impairs Proliferation of Satellite Cells via Downregulating the ERK1/2 Signaling Pathway.
Xiong WangFan LiuQin AnWenli WangZhimei ChengYunping DaiQingyong MengYali ZhangPublished in: International journal of molecular sciences (2022)
Lactoferrin ( Ltf ), a naturally active glycoprotein, possesses anti-inflammatory, anti-microbial, anti-tumor, and immunomodulatory activities. Many published studies have indicated that Ltf modulates the proliferation of stem cells. However, the role of Ltf in the proliferation of satellite cells, an important cell type in muscle regeneration, has not yet been reported. Here, by using Ltf systemic knockout mice, we illustrate the role of Ltf in skeletal muscle. Results shows that Ltf deficiency impaired proliferation of satellite cells (SCs) and the regenerative capability of skeletal muscle. Mechanistic studies showed that ERK1/2 phosphorylation was significantly downregulated after Ltf deletion in SCs. Simultaneously, the cell cycle-related proteins cyclin D and CDK4 were significantly downregulated. Intervention with exogenous recombinant lactoferrin ( R-Ltf ) at a concentration of 1000 μg/mL promoted proliferation of SCs. In addition, intraperitoneal injection of Ltf effectively ameliorated the skeletal muscle of mice injured by 1.2% BaCl 2 solution. Our results suggest a protective effect of Ltf in the repair of skeletal muscle damage. Ltf holds promise as a novel therapeutic agent for skeletal muscle injuries.
Keyphrases
- skeletal muscle
- signaling pathway
- induced apoptosis
- cell cycle
- stem cells
- pi k akt
- cell cycle arrest
- insulin resistance
- epithelial mesenchymal transition
- endoplasmic reticulum stress
- anti inflammatory
- oxidative stress
- randomized controlled trial
- cell therapy
- microbial community
- adipose tissue
- machine learning
- systematic review
- high fat diet induced
- deep learning
- metabolic syndrome
- artificial intelligence
- big data
- bone marrow