성균관대학교 · Engineering
Jae Hyung Park 교수의 연구실은 암의 대사 재편성과 암세포의 에너지 대사 변화를 중심으로, 나노소재 기반의 정밀 약물 전달 시스템을 개발하고 있습니다. 특히 히알루론산을 기반으로 한 자가조립 나노입자와 자극반응성 나노재료를 활용해 종양 세포에 특이적으로 약물을 전달하고, 암 치료뿐만 아니라 류마티스 관절염과 같은 염증성 질환의 면역조절 치료에도 응용하고 있습니다. 연구는 약물 전달의 효율성 향상과 부작용 감소를 목표로 하며, 생체 적합성과 기능성의 균형을 고려한 나노의학 기반의 혁신적 접근을 선도하고 있습니다.
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Aberrant metabolism is a major hallmark of cancer. Abnormal cancer metabolism, such as aerobic glycolysis and increased anabolic pathways, has important roles in tumorigenesis, metastasis, drug resistance, and cancer stem cells. Well-known oncogenic signaling pathways, such as phosphoinositide 3-kinase (PI3K)/AKT, Myc, and Hippo pathway, mediate metabolic gene expression and increase metabolic enzyme activities. Vice versa, deregulated metabolic pathways contribute to defects in cellular signal
Growth in the knowledge of cancer biology has led to the emergence and evolution of cancer nanomedicines by providing the rationale for leveraging nanotechnology to develop better treatment options. The discovery of nanometer-sized intercellular openings in the defective angiogenic tumor vasculature contributed to the development of an idea for the well-known cancer passive targeting regime, enhanced permeability and retention (EPR) effect, of the nanomedicines. Recently, reactive oxygen species
There is a rapidly increasing interest in developing stimuli-responsive nanomaterials for treating a variety of diseases. By enabling the activation of function locally at the sites of interest, it is possible to increase therapeutic efficacy significantly while simultaneously reducing adverse side effects. While there are many sophisticated nanomaterials available, they are often highly complex and not easily transferrable to industrial scales and clinical settings. However, nanomaterials based
Drug delivery has become increasingly important mainly due to the awareness of the difficulties associated with a variety of old and new drugs. Of the many polymeric drug delivery systems, biodegradable polymers have been used widely as drug delivery systems because of their biocompatibility and biodegradability. The majority of biodegradable polymers have been used in the form of microparticles, from which the incorporated drug is released to the environment in a controlled manner. The factors
To develop a nano-sized drug delivery system for cancer therapy, amphiphilic hyaluronic acid conjugates were synthesized by chemical conjugation of hydrophobic 5β-cholanic acid to the backbone of hyaluronic acid (HA). The HA conjugates could form nano-sized self-aggregates under physiological conditions (PBS, pH = 7.4, 37 °C) via the hydrophobic interaction among 5β-cholanic acids. The HA nanoparticles were spherical in shape and their sizes were in the range of 350–400 nm, depending on the degr
Despite the remarkable advances in therapeutics for rheumatoid arthritis (RA), a large number of patients still lack effective countermeasures. Recently, the reprogramming of macrophages to an immunoregulatory phenotype has emerged as a promising therapeutic strategy for RA. Here, we report metabolically engineered exosomes that have been surface-modified for the targeted reprogramming of macrophages. Qualified exosomes were readily harvested from metabolically engineered stem cells by tangentia
The biological significance and deregulation of the Hippo pathway during organ growth and tumorigenesis have received a surge of interest in the past decade. The Hippo pathway core kinases, MST1/2 and LATS1/2, are tumor suppressors that inhibit the oncogenic nuclear function of YAP/TAZ and TEAD. In addition to earlier studies that highlight the role of Hippo pathway in organ size control, cell proliferation, and tumor development, recent evidence demonstrates its critical role in cancer stem cel