Sun Gun Chung
Seoul National University · 医学
研究室紹介
Professor Sun Gun Chung's research lab specializes in regenerative medicine and orthopedic biomechanics, focusing on mesenchymal stem cell (MSC) therapy for tendon and joint disorders. The lab investigates the therapeutic potential of allogeneic adipose-derived MSCs in treating tendinopathy and adhesive capsulitis, with an emphasis on optimizing delivery methods and enhancing cell functionality through pre-treatment strategies. Key research directions include understanding the biomechanical and clinical effects of capsule-preserving versus rupturing hydraulic distension in stiff shoulders, and elucidating the paracrine mechanisms underlying MSC-mediated tissue repair.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Mesenchymal stem cell therapy is a novel regenerative approach for treating tendinopathy. Here, we evaluated the safety and efficacy of allogeneic adipose-derived mesenchymal stem cells (allo-ASC) in treating lateral epicondylosis (LE). Under ultrasound guidance, allo-ASCs mixed with fibrin glue were injected into the hypoechoic common extensor tendon lesions of 12 participants with chronic LE; 6 subjects each were administered 10(6) or 10(7) cells in 1 ml. Safety was evaluated at day 3 and week
In tendon injury, MSCs can enhance tendon healing by secreting their own protein and have potential as a therapeutic option in human tendinopathy.
Capsular stiffness of the glenohumeral joint significantly correlated with limitation in shoulder ROM, especially in the abduction and external rotation directions, whereas there were no meaningful relationships with shoulder pain during motion or rest. This is the first study to reveal the relationships between in vivo quantified capsular stiffness and shoulder ROM limitations.
The effect of intraarticular hydraulic distension (IHD) for a painful stiff shoulder (or adhesive capsulitis) has been affirmed, but whether rupturing the joint capsule during this process is beneficial remains controversial. By monitoring real-time pressure-volume (PV) profiles during IHD, we could infuse the largest possible volume without rupturing the capsule. Using the novel technique, we compared the short-term effects of IHD when the capsule was preserved versus when it was ruptured. Fift
Various therapeutic effects of mesenchymal stem cells (MSCs) have been reported. However, the rapid clearance of these cells in vivo, difficulties in identifying their therapeutic mechanism of action, and insufficient production levels remain to be resolved. We investigated whether a pioglitazone pre-treatment of MSCs (Pio-MSCs) would stimulate the proliferation of co-cultured tenocytes. Pioglitazone increased the proliferation of MSCs and enhanced the secretion of VEGF (vascular endothelial gro
Capsule-preserving hydraulic distension changed the biomechanical properties of the glenohumeral joint capsule, lessening the stiffness and enlarging the volume capacity. These alterations were accompanied by improved range of motion and relief of pain. Repeated capsule-preserving hydraulic distension with saline solution and corticosteroid would be useful to treat adhesive capsulitis and to evaluate the treatment results.
The steeply rising, high IA pressure can be considered as a predominant characteristic of the PSS compared with other conditions that showed flat, low-pressure profiles, suggesting the P-V profiles might be used in evaluation of the capsular tightness of various shoulder problems. The triphasic curve appears to be a preruptural sign; however, there are several practical limitations to terminating hydraulic distension before rupture occurs.
Intraarticular hydraulic distension (IHD) has been utilized to treat painful stiff shoulders by distending and then rupturing the joint capsules. However, no attempts have been made to optimize the capsule distension, which might give a better clinical outcome. To set up a prerequisite technique for a maximal distension without rupturing the capsule, real-time pressure monitoring of IHD procedures was performed in 16 patients, which revealed triphasic pressure-volume profiles in 10 patients and
Spasticity, contracture, and muscle weakness are major sources of disability in stroke. Changes of torque-generating capacity as well as reflex and non-reflex properties of ankle plantar flexors induced by strenuous stretching in chronic hemiplegia were investigated. Twelve subjects with a unilateral stroke and 10 healthy controls underwent 30 minutes of strenuous intelligent stretching treatment. Reflex and non-reflex components of spastic hypertonia and force-generating capacity of ankle plant