Cheonkwan Park
Sungkyunkwan University · 工学
研究室紹介
Professor Cheonkwan Park's research lab specializes in developing advanced biomaterials and nanotechnologies for cancer immunotherapy and RNA-based therapeutics. The lab focuses on designing smart drug delivery systems, particularly hydrogels and extracellular vesicles, to enhance targeted delivery, modulate the tumor microenvironment, and improve immune responses. Key research directions include engineering glycol chitosan-based hydrogels for sustained release of immunomodulatory agents, optimizing exosome and extracellular vesicle production under controlled culture conditions, and overcoming biological barriers in RNA therapeutic delivery.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15RNA therapeutics, including messenger RNA (mRNA) and small interfering RNA (siRNA), are genetic materials that mediate the translation of genetic direction from genes to induce or inhibit specific protein production. Although the interest in RNA therapeutics is rising globally, the absence of an effective delivery system is an obstacle to the clinical application of RNA therapeutics. Additionally, immunogenicity, short duration of protein expression, unwanted enzymatic degradation, and insuffici
The tumor microenvironment (TME) is a unique environment that is developed by the tumor and controlled by tumor-induced interactions with host cells during tumor progression. The TME includes immune cells, which can be classified into two types: tumor- antagonizing and tumor-promoting immune cells. Increasing the tumor treatment responses is associated with the tumor immune microenvironment. Targeting the TME has become a popular topic in research, which includes polarizing macrophage phenotype
Background: In order to produce and isolate the exosome derived from the cell of interests, a serum free environment (starvation) has been essential for excluding the unknown effect from serum-derived exosomes. Recently, serum-free culture media have been developed as a substitute for serum supplemented media so that MSC proliferates with maintaining the original characteristics of the cells in a serum free condition. Due to the different properties of the exosomes representing the states and ch
Extracellular vesicles (EVs) are nanosized particles that are released from cells and reflect the characteristics of the mother cell. Recently, the EVs have been used in several types of studies across many different fields. In the field of EV research, multiple cell culture and EV isolation techniques have been highlighted in importance. Various strategies, including exclusive component culture media, three-dimensional (3D) cultures, and hypoxic conditions, have been proposed for the cell cultu
Background: Cancer recurrence and metastasis are major contributors to treatment failure following tumor resection surgery. We developed a novel implantable drug delivery system utilizing glycol chitosan to address these issues. Glycol chitosan is a natural adjuvant, inducing dendritic cell activation to promote T helper 1 cell immune responses, macrophage activation, and cytokine production. Effective antigen production by dendritic cells initiates T-cell-mediated immune responses, aiding tumor
Cancer immunotherapy has become the new paradigm of cancer treatment. The introduction and discovery of various therapeutic agents have also accelerated the application of immunotherapy in clinical trials. However, despite the significant potency and demonstrated advantages of cancer immunotherapy, its clinical application to patients faces several safety and efficacy issues, including autoimmune reactions, cytokine release syndrome, and vascular leak syndrome-related issues. In addressing these
Adoptive cell therapy with chimeric antigen receptor (CAR)-engineered T cells (CAR-Ts) has emerged as an innovative immunotherapy for hematological cancer treatment. However, the limited effect on solid tumors, complex processes, and excessive manufacturing costs remain as limitations of CAR-T therapy. Nanotechnology provides an alternative to the conventional CAR-T therapy. Owing to their unique physicochemical properties, nanoparticles can not only serve as a delivery platform for drugs but al
To enhance oral drug bioavailability, we propose mucoadhesive, nanostructured microparticles (PLGA/ PEG NM) as a drug-delivery vehicle. The PLGA/PEG NM herein retain nanofibrous structures within microparticles, and possess a seven-fold increase in specific surface area than conventional spherical microparticles, allowing for synergistic improvement of a mucoadhesive property. In vivo evaluations demonstrated that PLGA/PEG NM showed prolonged retention in the gastrointestinal tract, as compared
Background To overcome the limitations of current alternative therapies for chronic kidney disease (CKD), tissue engineering-mediated regeneration strategies have demonstrated the possibilities for complete kidney tissue regeneration. Given the challenges associated with the reproducibility of renal basal cells, the incorporation of intermediate mesoderm (IM) cells and bioactive materials to control bioactivities of cells with supported scaffolds should be considered as a viable approach to enab
Antibodies have been widely used to provide targeting ability and to enhance bioactivity owing to their high specificity, availability, and diversity. Recent advances in biotechnology and nanotechnology permit site-specific engineering of antibodies and their conjugation to the surfaces of nanoparticles (NPs) in various orientations through chemical conjugations and physical adhesions. This study proposes the conjugation of poly(lactic- co -glycolic acid) (PLGA) NPs with antibodies by using two
Metal-organic frameworks (MOFs) represent a class of materials with exceptional potential for biomedical applications. In this study, a synergistic platform integrating photodynamic therapy (PDT) and immunotherapy was developed by loading the Toll-like receptor 7/8 agonist resiquimod (R848) into MOF525, a porphyrin-based metal–organic framework (R848@MOF525). Owing to the intrinsic photosensitizing properties of porphyrinic ligands and the high porosity of MOF525, R848@MOF525 was able to effecti
We developed a mathematical model to elucidate the absorption profile of an ocular drug, brimonidine,into the aqueous humour (AH) after its topical administration to the eye via microparticle formulations. For this, a compartment model with three distinct compartments of tear, cornea, and AH was proposed. The parameters were estimated, employing the experimental data of in vitro drug release, in vivopreocular retention, and drug concentration in the AH, which were obtained with four distinctmicr
Inflammatory bowel disease (IBD), including Crohn’s disease and ulcerative colitis, is a family of chronic disorders along the gastrointestinal tract. Because of its idiopathic nature, IBD does not have a fundamental cure; current available therapies for IBD are limited to prolonged doses of immunomodulatory agents. While these treatments may reduce inflammation, limited therapeutic efficacy, inconsistency across patients, and adverse side effects from aggressive medications remain as major draw
Human mesenchymal stem cells (hMSCs)-derived extracellular vesicles (EVs) have been known to possess the features of the origin cell with nano size and have shown therapeutic potentials for regenerative medicine in recent studies as alternatives for cell-based therapies. However, extremely low production yield, unknown effects derived from serum impurities, and relatively low bioactivities on doses must be overcome for translational applications. As several reports have demonstrated the tunabili