민달희 교수
Dal Hee Min
서울대학교 · 생화학·유전·분자생물학
연구실 소개
민달희 교수의 연구실은 나노소재 기반의 의료응용 기술 개발을 핵심으로 하며, 특히 광역약물전달 및 다기능 나노하이브리드 시스템을 통해 정밀의료와 조합치료(theranostics)를 실현하고자 합니다. 주로 타겟팅 가능한 나노캐리어로써 탄소 나노입자, 그래핀 옥사이드, 메조포러스 실리카 등 다양한 나노소재를 활용해 암 치료 및 생체 영상 기술을 통합한 혁신적 접근을 연구하고 있습니다. 특히 광동역학치료, 유전자 치료 전달, 단백질 활성 분석 등 응용 분야로의 확장을 지속하고 있습니다.
연구 현황
연구 성과 추이
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주요 논문
15Photosensitizers (PSs) are light‐sensitive molecules that are highly hydrophobic, which poses a challenge to their use for targeted photodynamic therapy. Hence, considerable efforts have been made to develop carriers for the delivery of PSs. Herein, a novel design is described of highly biocompatible, fluorescent, folic acid (FA)‐functionalized carbon nanodots (CDs) as carriers for the PS zinc phthalocyanine (ZnPc) to achieve simultaneous biological imaging and targeted photodynamic therapy. FA
A large-scale, cost-effective, and environmentally friendly synthetic strategy for biocompatible reduced graphene oxide (RGO) by using dextran as a reducing and stabilization agent has been developed. Dextran-coated RGO (D-RGO) was readily soluble in water with high biocompatibility.
Among various nanoparticles, mesoporous silica nanoparticles (MSNs) have attracted extensive attention for developing efficient drug-delivery systems, mostly due to their high porosity and biocompatibility. However, due to the small pore size, generally below 5 nm in diameter, potential drugs that are loaded into the pore have been limited to small molecules. Herein, a small interfering RNA (siRNA) delivery strategy based on MSNs possessing pores with an average diameter of 23 nm is presented. T
Weighing in: Multiple kinases can be assayed simultaneously by using a method that combines peptide chips and MALDI-TOF mass spectrometry (MS). The method uses self-assembled monolayers that present a set of peptides that are each selective for a kinase. The kinase phosphorylates the peptide, changing its mass. MS analysis of the surface resolves each peptide and gives the activity of each kinase. Herein we describe a strategy that combines peptide chips with matrix-assisted laser desorption/ion
The paper reports a facile one-pot synthesis of core@shell nanoparticles (NPs) composed of Au core and graphene oxide nanocolloid (GON) shell. Unique properties of Au NPs and GON can be incorporated into a single nanohybrid structure to provide desirable functions for theranosis such as localized surface plasmon resonance, Raman scattering, amphiphilic surface, and photothermal conversion. Synthesis of Au@GON NPs is achieved by simple one-pot reaction in aqueous phase utilizing GON as a reducing
Long gold rods were directly grown on a reduced graphene oxide (RGO) surface by seed-mediated and seedless approaches for the fabrication of a novel Raman scattering platform. The Raman scattering signal from RGO was significantly enhanced by 34-fold at the tip of the grown gold rod.
Abstract Recently, there have been significant advances in the field of RNA‐based therapeutics harnessing exogenous RNAs including small interfering RNA (siRNA), microRNA (miRNA) mimics, and in vitro transcribed (IVT) mRNAs. RNA‐based therapeutics are one of the most attractive classes of drugs for treating a variety of diseases. In principle, RNA‐based therapeutics offer numerous advantages compared to the conventional small‐molecule‐based therapies. However, there are several drawbacks to over
The multifunctional DNAzyme (Dz) delivery system is developed based on nano-sized graphene oxide (nGO) for simultaneous detection and knockdown of the target gene. The Dz/nGO complex system allowed convenient monitoring of HCV mRNA in living cells and silencing of the HCV gene expression by Dz-mediated catalytic cleavage concurrently.
Nanozymatic reactions that produce or consume oxygen (O<sub>2</sub>) or reactive oxygen species (ROS) consist of oxidase, peroxidase, superoxide dismutase (SOD), and catalase-type activity. Although extensive studies were conducted to overcome hypoxia through nanozymatic reactions, the construction of an ideal system is challenging, given that the reactants and products are arranged in a recurring structure for continuous consumption in a full cycle. In this study, speckled Ru-Te hollow nanorods
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