Skip to main content

묵인희 교수

In-Hee Mok

서울대학교 생화학과 · 의학

연구실 소개

묵인희 교수의 연구실은 알츠하이머병의 병태생리적 기전을 규명하고자 신경세포 손상, 아밀로이드 베타와 타우 단백질의 비정상적 축적, 미토콘드리아 기능 저하, 그리고 신경염증 반응 등 핵심 병리적 변화에 초점을 맞추고 있습니다. 특히 마이크ログ리아의 역할, 시냅스 기능 향상 및 천연물질의 신경보호 작용을 중심으로 뇌기능 회복 및 신약 타겟 탐색을 연구하고 있습니다. 뇌 영상, 분자생물학적 기법, 행동 실험을 융합한 다각적 접근을 통해 알츠하이머병의 조기 진단 및 치료 전략 개발을 목표로 하고 있습니다.

알츠하이머병아밀로이드 베타미토콘드리아 기능신경염증신경보호제

연구 현황

논문 수
294
총 인용 수
15,548
최근 5년 논문
45
주요 분야
의학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
45총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
661총합
20222023202420252026

주요 논문

15
1
논문|인용수 835·2019
A Breakdown in Metabolic Reprogramming Causes Microglia Dysfunction in Alzheimer's Disease
Sung-Hoon Baik, Seokjo Kang, Woochan Lee, Hayoung Choi, Sunwoo Chung, Jong‐Il Kim, Inhee Mook‐Jung
SJR Q1Cell MetabolismOA
NeurologyNeuroscience
2
논문|인용수 659·2016
Mitochondria-Targeting Ceria Nanoparticles as Antioxidants for Alzheimer’s Disease
Hyek Jin Kwon, Moon-Yong Cha, Dokyoon Kim, Dong‐Kyu Kim, Min Soh, Kwangsoo Shin, Taeghwan Hyeon, Inhee Mook‐Jung
SJR Q1ACS Nano

Mitochondrial oxidative stress is a key pathologic factor in neurodegenerative diseases, including Alzheimer's disease. Abnormal generation of reactive oxygen species (ROS), resulting from mitochondrial dysfunction, can lead to neuronal cell death. Ceria (CeO2) nanoparticles are known to function as strong and recyclable ROS scavengers by shuttling between Ce(3+) and Ce(4+) oxidation states. Consequently, targeting ceria nanoparticles selectively to mitochondria might be a promising therapeutic

Materials ChemistryMaterials Science
3
논문|인용수 230·2016
Microglia contributes to plaque growth by cell death due to uptake of amyloid β in the brain of Alzheimer's disease mouse model
Sung-Hoon Baik, Seokjo Kang, Sung Min Son, Inhee Mook‐Jung
SJR Q1Glia

Pathological hallmarks of Alzheimer's disease (AD) include extracellularly accumulated amyloid β (Aβ) plaques and intracellular neurofibrillary tangles in the brain. Activated microglia, brain-resident macrophages, are also found surrounding Aβ plaques. The study of the brain of AD mouse models revealed that Aβ plaque formation is completed by the consolidation of newly generated plaque clusters in vicinity of existed plaques. However, the dynamics of Aβ plaque formation, growth and the mechanis

NeurologyNeuroscience
4
논문|인용수 229·2012
Mitochondria-Specific Accumulation of Amyloid β Induces Mitochondrial Dysfunction Leading to Apoptotic Cell Death
Moon-Yong Cha, Sun-Ho Han, Sung Min Son, Hyun-Seok Hong, Young-Ju Choi, Jayoung Byun, Inhee Mook‐Jung
SJR Q1PLoS ONEOA

Mitochondria are best known as the essential intracellular organelles that host the homeostasis required for cellular survival, but they also have relevance in diverse disease-related conditions, including Alzheimer's disease (AD). Amyloid β (Aβ) peptide is the key molecule in AD pathogenesis, and has been highlighted in the implication of mitochondrial abnormality during the disease progress. Neuronal exposure to Aβ impairs mitochondrial dynamics and function. Furthermore, mitochondrial Aβ accu

PhysiologyMedicine
5
논문|인용수 218·2021
A logical network-based drug-screening platform for Alzheimer’s disease representing pathological features of human brain organoids
Jong‐Chan Park, So‐Yeong Jang, Dongjoon Lee, Jeong-Ha Lee, Uiryong Kang, Hongjun Chang, Haeng Jun Kim, Sun-Ho Han, Jinsoo Seo, Murim Choi, Dong Young Lee, Min Soo Byun
SJR Q1Nature CommunicationsOA

Developing effective drugs for Alzheimer's disease (AD), the most common cause of dementia, has been difficult because of complicated pathogenesis. Here, we report an efficient, network-based drug-screening platform developed by integrating mathematical modeling and the pathological features of AD with human iPSC-derived cerebral organoids (iCOs), including CRISPR-Cas9-edited isogenic lines. We use 1300 organoids from 11 participants to build a high-content screening (HCS) system and test blood-

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
논문|인용수 200·2015
Two-Photon Absorbing Dyes with Minimal Autofluorescence in Tissue Imaging: Application toin VivoImaging of Amyloid-β Plaques with a Negligible Background Signal
Dokyoung Kim, Hyunsoo Moon, Sung-Hoon Baik, Subhankar Singha, Yong Woong Jun, Taejun Wang, Ki Hean Kim, Byung Sun Park, Junyang Jung, Inhee Mook‐Jung, Kyo Han Ahn
SJR Q1Journal of the American Chemical Society

Fluorescence imaging of tissues offer an essential means for studying biological systems. Autofluorescence becomes a serious issue in tissue imaging under excitation at UV-vis wavelengths where biological molecules compete with the fluorophore. To address this critical issue, a novel class of fluorophores that can be excited at ∼900 nm under two-photon excitation conditions and emits in the red wavelength region (≥600 nm) has been disclosed. The new π-extended dipolar dye system shows several ad

BiophysicsBiochemistry, Genetics and Molecular Biology
7
논문|인용수 190·2018
Plasma tau/amyloid-β1–42 ratio predicts brain tau deposition and neurodegeneration in Alzheimer’s disease
Jong‐Chan Park, Sun-Ho Han, Dahyun Yi, Min Soo Byun, Jun Ho Lee, Sukjin Jang, Kang Ko, So Yeon Jeon, Yun‐Sang Lee, Yu Kyeong Kim, Dong Young Lee, Inhee Mook‐Jung
SJR Q1BrainOA

One of the hallmarks of Alzheimer's disease is abnormal deposition of tau proteins in the brain. Although plasma tau has been proposed as a potential biomarker for Alzheimer's disease, a direct link to brain deposition of tau is limited. Here, we estimated the amount of in vivo tau deposition in the brain by PET imaging and measured plasma levels of total tau (t-tau), phosphorylated tau (p-tau, T181) and amyloid-β1-42. We found significant correlations of plasma p-tau, t-tau, p-tau/amyloid-β1-42

PhysiologyMedicine
8
논문|인용수 175·2014
Migration of neutrophils targeting amyloid plaques in Alzheimer's disease mouse model
Sung-Hoon Baik, Moon-Yong Cha, Young‐Min Hyun, Hansang Cho, Bashar Hamza, Dong‐Kyu Kim, Sun-Ho Han, Hee-Sun Choi, Kyung Ho Kim, Minho Moon, Jeewoo Lee, Minsoo Kim
SJR Q1Neurobiology of AgingOA
PhysiologyMedicine
9
논문|인용수 164·2005
Amyloid peptide attenuates the proteasome activity in neuronal cells
Sang-Soo Oh, Hyun Seok Hong, Enmi Hwang, Hae Jin Sim, Woojin Lee, Su Jeon Shin, Inhee Mook‐Jung
SJR Q1Mechanisms of Ageing and Development
Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 154·2015
Aβ-induced degradation of BMAL1 and CBP leads to circadian rhythm disruption in Alzheimer’s disease
Hyundong Song, Minho Moon, Han Kyoung Choe, Dong-Hee Han, Changhwan Jang, Ahbin Kim, Sehyung Cho, Kyungjin Kim, Inhee Mook‐Jung
SJR Q1Molecular NeurodegenerationOA

BACKGROUND: Patients with Alzheimer's disease (AD) frequently experience disruption of their circadian rhythms, but whether and how circadian clock molecules are perturbed by AD remains unknown. AD is an age-related neurological disorder and amyloid-β (Aβ) is one of major causative molecules in the pathogenesis of AD. RESULTS: In this study, we investigated the role of Aβ in the regulation of clock molecules and circadian rhythm using an AD mouse model. These mice exhibited altered circadian beh

Endocrine and Autonomic SystemsNeuroscience
11
논문|인용수 145·2001
Ginsenoside Rb1 and Rg1 improve spatial learning and increase hippocampal synaptophysin level in mice
Inhee Mook‐Jung, Hyun‐Seok Hong, Jung Hyun Boo, Kang Hee Lee, Sung Hwan Yun, Mi Young Cheong, In-Soo Joo, Kyoon Huh, Min Whan Jung
SJR Q2Journal of Neuroscience Research

We investigated the cognition enhancing effects of ginsenoside Rb1 and Rg1. Mice were trained in a Morris water maze following injection (i.p.) of Rb1 (1 mg/kg) or Rg1 (1 mg/kg) for 4 days. Both Rb1- and Rg1-injected mice showed enhanced spatial learning compared to control animals. The hippocampus, but not the frontal cortex, of treated mice contained higher density of a synaptic marker protein, synaptophysin, compared to control mice. Electrophysiological recordings in hippocampal slices revea

Cellular and Molecular NeuroscienceNeuroscience
12
논문|인용수 137·1999
Protective effects of asiaticoside derivatives against beta-amyloid neurotoxicity
Inhee Mook‐Jung, Jieun Shin, Sung Hwan Yun, Kyoon Huh, Jae Young Koh, Hyung Keun Park, Sang‐sup Jew, Min Whan Jung
SJR Q2Journal of Neuroscience ResearchOA

Asiaticoside (AS) derivatives were tested for potential protective effects against Abeta-induced cell death. Of the 28 AS derivatives tested, asiatic acid (AA), asiaticoside 6 (AS6), and SM2 showed strong inhibition of Abeta-induced death of B103 cells at 1 microM. The three AS derivatives were further tested for their effects on free radical injury and apoptosis. All three AS derivatives reduced H(2)O(2)-induced cell death and lowered intracellular free radical concentration, but AA showed the

Complementary and alternative medicineMedicine
13
논문|인용수 135·2011
Aβ-induced formation of autophagosomes is mediated by RAGE-CaMKKβ-AMPK signaling
Sung Min Son, Eun Sun Jung, Hong Joon Shin, Jayoung Byun, Inhee Mook‐Jung
SJR Q1Neurobiology of Aging
Clinical BiochemistryBiochemistry, Genetics and Molecular Biology
14
논문|인용수 130·2016
Insulin-degrading enzyme secretion from astrocytes is mediated by an autophagy-based unconventional secretory pathway in Alzheimer disease
Sung Min Son, Moon-Yong Cha, Hee-Sun Choi, Seokjo Kang, Hyunjung Choi, Myung‐Shik Lee, Sun Ah Park, Inhee Mook‐Jung
SJR Q1AutophagyOA

The secretion of proteins that lack a signal sequence to the extracellular milieu is regulated by their transition through the unconventional secretory pathway. IDE (insulin-degrading enzyme) is one of the major proteases of amyloid beta peptide (Aβ), a presumed causative molecule in Alzheimer disease (AD) pathogenesis. IDE acts in the extracellular space despite having no signal sequence, but the underlying mechanism of IDE secretion extracellularly is still unknown. In this study, we found tha

PhysiologyMedicine
15
논문|인용수 125·2002
Lovastatin enhances Aβ production and senile plaque deposition in female Tg2576 mice
In-Ho Park, Eun Mi Hwang, Hyun Seok Hong, Jung Hyun Boo, Sang Soo Oh, Jeewoo Lee, Min Whan Jung, Oh Young Bang, Seung Up Kim, Inhee Mook‐Jung
SJR Q1Neurobiology of Aging
PhysiologyMedicine

대표 연구 분야

PhysiologyMolecular BiologyNeurologySpectroscopyCellular and Molecular NeuroscienceClinical Biochemistry

묵인희 교수의 연구를 Nubint에서 더 깊이 살펴보세요

이 연구실의 논문을 앱에서 열어 AI와 함께 읽고, 핵심을 요약하고, 내 글에 인용하세요.