Jaeyeol Im
Yonsei University · Medicine
About the Lab
Professor Jaeyeol Im's research lab specializes in regenerative medicine and tissue engineering, with a primary focus on salivary gland regeneration and radiation-induced tissue damage. The lab investigates the therapeutic potential of mesenchymal stem cells (MSCs), particularly human adipose-derived MSCs (hAdMSCs), in promoting tissue repair through paracrine signaling and secretome-mediated mechanisms. Key research directions include the development of injectable hydrogel scaffolds for vocal fold and salivary gland repair, the establishment of long-term salivary gland organoid cultures, and the use of hypoxia-preconditioned MSCs to enhance regenerative outcomes in irradiated tissues. The lab integrates preclinical models, 3D organoid systems, and molecular analyses to advance regenerative therapies for head and neck cancers and related side effects such as xerostomia.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15The findings of this study indicate that hAdMSCs have the potential to protect against irradiation-induced cell loss and to transdifferentiate into SGCs, and suggest that hAdMSC administration should be viewed as a candidate therapy for the treatment of radiation-induced SG damage.
Shamblin III had a high risk of postoperative neurovascular complications. Therefore, early detection and prompt surgical resection of CBTs will decrease surgical morbidity.
Salivary glands that produce and secrete saliva, which is essential for lubrication, digestion, immunity, and oral homeostasis, consist of diverse cells. The long-term maintenance of diverse salivary gland cells in organoids remains problematic. Here, we establish long-term murine and human salivary gland organoid cultures. Murine and human salivary gland organoids express gland-specific genes and proteins of acinar, myoepithelial, and duct cells, and exhibit gland functions when stimulated with
OBJECTIVES/HYPOTHESIS: The purpose of this study was to investigate the regenerative efficacy of an injectable hyaluronic acid/mildly cross-linked alginate hydrogel (HA/ALG hydrogel) containing human adipose-derived mesenchymal stem cells (hAdMSCs) for vocal fold (VF) wound healing. STUDY DESIGN: Animal research. METHODS: HA/ALG hydrogel containing hAdMSCs was injected into the VFs of rabbits immediately after direct injury. Endoscopic evaluations were performed at 1 and 3 months after injury, a
BACKGROUND AND PURPOSE: This study was conducted to determine whether a secretome from mesenchymal stem cells (MSC) modulated by hypoxic conditions to contain therapeutic factors contributes to salivary gland (SG) tissue remodeling and has the potential to improve irradiation (IR)-induced salivary hypofunction in a mouse model. MATERIALS AND METHODS: Human adipose mesenchymal stem cells (hAdMSC) were isolated, expanded, and exposed to hypoxic conditions (O2 < 5%). The hypoxia-conditioned medium
Abstract To explore the effects and mechanisms of paracrine factors secreted from human adipose mesenchymal stem cell (hAdMSCs) that are activated by hypoxia on radioprotection against irradiation-induced salivary hypofunction in subjects undergoing radiotherapy for head and neck cancers. An organotypic spheroid coculture model to mimic irradiation (IR)-induced salivary hypofunction was set up for in vitro experiments. Human parotid gland epithelial cells were organized to form three-dimensional
BACKGROUND: The purpose of this study was to determine whether sialendoscopy could ameliorate radioactive iodine-induced obstructive sialadenitis and restore the salivary gland dysfunction in recalcitrant radioactive iodine sialadenitis. METHODS: Ten patients with 15 parotid glands of chronic radioactive iodine sialadenitis who did not respond to medical treatment were enrolled in this prospective study. We assessed subjective symptom scores and evaluated the objective salivary gland functions b
Irradiation can cause salivary gland hypofunction, with hyposalivation producing discomfort, health risks, and reducing function in daily life. Despite increasing translational research interest in radioprotection, there are no satisfactory treatments available. Keratinocyte growth factor-1 stimulates proliferation of salivary epithelial cells or salivary stem/progenitor cells. However, the exact mechanism of its radioprotection against radiation-induced salivary hypofunction is not fully elucid
The fundamental frequency (FxM) of Yonekawa Type III was significantly lower than those of the other types of Reinke's edema, and the SD of the FxM, the percentage irregularity of the FxM (CFx) and the percentage irregularity of the amplitude were larger than those of the other types of Reinke's edema. The closed quotient was significantly higher in Yonekawa Type III. In addition, the mean flow rate (MFR), maximum phonation time and harmonics:noise ratio (HNR) differed significantly among the di
The present study shows that GM-CSF offers therapeutic potential for the remodeling of VF wounds and the promotion of VF regeneration.
Research Areas
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