Kim Ja-Yeong
Hanyang University · Medicine
About the Lab
Professor Kim Ja-Yeong's research lab specializes in orthopedic regenerative medicine, focusing on the biological mechanisms underlying rotator cuff repair and muscle degeneration. The lab investigates molecular pathways involved in tendon healing, muscle atrophy, and fatty infiltration, with particular emphasis on growth factors (e.g., TGF-β1), water channels (AQP4), and metabolic regulators (e.g., FABP4). Using preclinical animal models and clinical tissue analysis, the lab develops and evaluates biomaterial-based delivery systems for sustained growth factor release to enhance tissue regeneration. Their work also explores the impact of lifestyle factors, such as smoking, on rotator cuff muscle physiology and surgical outcomes.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
10BACKGROUND: The failure rate for healing after rotator cuff repair is relatively high. PURPOSE: To establish a system for sustained release of transforming growth factor β1 (TGF-β1) using an alginate scaffold and evaluate the effects of the sustained release of TGF-β1 on rotator cuff healing in a rabbit model. STUDY DESIGN: Controlled laboratory study. METHODS: Before the in vivo animal study, a standard MTS assay was performed to evaluate cell proliferation and metabolic activity on the alginat
The water channel aquaporin 4 (AQP4) regulates the flux of water across the cell membrane, maintaining cellular homeostasis. Since AQP4 is enriched in the sarcolemma of skeletal muscle, a functional defect in AQP4 may cause skeletal muscle dysfunction. To investigate a novel mechanism underlying skeletal muscle atrophy, we examined AQP4 expression and its regulation in muscle using the rotator cuff tear (RCT) model. Human and mouse AQP4 expression was significantly decreased in atrophied muscle
BACKGROUND: A rotator cuff tear (RCT) induces fatty acid-binding protein 4 (FABP4) expression, resulting in ectopic fat accumulation in the rotator cuff muscle. PURPOSE: To evaluate whether FABP4 inhibition reduces fatty infiltration and improves muscle physiology after RCT in a rat model. STUDY DESIGN: Controlled laboratory study. METHODS: Human supraspinatus muscle and deltoid muscle tissues were acquired from patients with RCTs during arthroscopic surgery, and FABP4 expression in the supraspi
BACKGROUND: There is a lack of knowledge about the changes in perianchor cysts over time and the factors related to perianchor cysts. PURPOSE: To evaluate the changes in perianchor cyst formation and anchor absorption over time after arthroscopic rotator cuff repair with a biocomposite suture anchor and to evaluate the factors affecting perianchor cyst persistence and their relationship with patient outcomes. STUDY DESIGN: Case-control study; Level of evidence, 3. METHODS: Forty consecutive pati
Background: The healing failure rate after rotator cuff repair is considerably high. Purpose: To evaluate the effect of a porous suture containing transforming growth factor beta 1 (TGF-β1) on the sustained release of TGF-β1 and rotator cuff healing in a rat model. Study Design: Controlled laboratory study. Methods: A porous suture was developed, and its tensile strength was measured. TGF-β1 was delivered using the porous suture, and a TGF-β1 release test and human fibroblast proliferation assay
PURPOSE: To evaluate the altered gene and protein expression patterns in the rotator cuff muscles of smokers and non-smokers with rotator cuff tears and to identify the smoking-associated key genetic factor(s) involved in rotator cuff muscle physiology. METHODS: Twenty-four samples of rotator cuff muscle from 12 current heavy smokers (mean age 61.8 ± 5.1 years) and age- and sex-matched 12 non-smokers (mean age 61.8 ± 6.9 years) with medium-sized tears were acquired during arthroscopic surgery. A
Rotator cuff tear is a muscle-tendinous injury representative of various musculoskeletal disorders. In general, rotator cuff tear occurs in the tendon, but it causes unloading of the muscle resulting in muscle degeneration including fatty infiltration. These muscle degenerations lead to muscle weakness, pain, and loss of shoulder function and are well known as important factors for poor functional outcome after rotator cuff repair. Given that rotator cuff tear in various animal species results i
Research Areas
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