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Chung I

Yonsei University · 医学

研究室紹介

Professor Chung I's research lab focuses on the cellular and molecular mechanisms underlying prostate development, function, and disease, with a particular emphasis on the interplay between neural regulation, stromal-epithelial interactions, and growth factor signaling in both normal and pathological conditions such as benign prostatic hyperplasia (BPH) and prostate cancer. The lab investigates the role of autonomic innervation, androgen sensitivity, and key growth factors like EGF and TGF-β in regulating prostate epithelial and stromal cell behavior. Using primary cell cultures, animal models, and detailed histological and biochemical analyses, the lab aims to uncover novel therapeutic targets for prostate diseases.

prostate biologygrowth factor signalingneural regulationstromal-epithelial interactionprostate cancer

Research Overview

Papers
400
Total Citations
9,638
Papers (5y)
27
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2022
2023
2024
2025
2026
Citations per year (5y)
172total
20222023202420252026

Selected Papers

15
1
Article|166 citations·1990
Prostatic Ductal System in Rats: Regional Variation in Morphological and Functional Activities1
Chung Lee, Julia A. Sensibar, Steven M. Dudek, Richard A. Hiipakka, Shutsung Liao
SJR Q1Biology of Reproduction

The rat prostate is a complex ductal system with branches and subbranches extending from one end to another. Owing to the relative distance of various regions of the duct from the urethra, the entire length of the ductal system can be arbitrarily divided into three segments, i.e., the proximal, intermediate, and distal segments. The present study was carried out to assess the regional variation in cellular activities in this ductal system. Ventral prostates from adult Sprague-Dawley rats were di

Reproductive MedicineMedicine
2
Review|154 citations·1999
Transforming growth factor-? in benign and malignant prostate
Chung Lee, Sharon M. Sintich, Eric P. Mathews, Ali Shah, Shilajit Kundu, Kent T. Perry, Jin Seon Cho, Kenneth Y. Ilio, Marcus V. Cronauer, Lynn Janulis, Julia A. Sensibar
SJR Q1The Prostate

Our future research should take advantage of this knowledge to devise therapeutic strategies aimed at eradicating prostate cancer.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|118 citations·1991
Requirement of Innervation for Maintenance of Structural and Functional Integrity in the Rat Prostate1
Jinmin Wang, Kevin E. McKenna, Kevin T. McVary, Chung Lee
SJR Q1Biology of Reproduction

The rat prostate is innervated by pelvic and hypogastric nerves through a single pelvic ganglion, removal of which would result in complete denervation of the prostatic complex. The present study was conducted to investigate the effect of denervation on the rat prostate. Adult Sprague-Dawley rats of 300 g in body weight were divided into two groups. Bilateral pelvic ganglion denervation was performed in one group of animals; the other group received a sham operation. Three weeks later, animals w

Pathology and Forensic MedicineMedicine
4
Article|105 citations·1996
Stromal cells of the human prostate: Initial isolation and characterization
Annette Kassen, Debra M. Sutkowski, Hanjong Ahn, Julia A. Sensibar, James M. Kozlowski, Chung Lee
SJR Q1The Prostate

The present study was conducted to isolate and to characterize stromal cells from the human prostate and to study the effects of androgen and different growth factors in this model system. Benign prostatic hyperplasia (BPH) tissue samples were obtained from transurethral resection of the prostate (TURP). Tissue specimens were mechanically and enzymatically dissociated by treatment with DNAse and collagenase. Epithelial cells were separated from stromal cells by discontinuous Percoll gradient cen

Pulmonary and Respiratory MedicineMedicine
5
Article|80 citations·1998
Prostate innervation
Kevin T. McVary, Kevin E. McKenna, Chung Lee
SJR Q1The Prostate

The growth of the prostate gland has been considered to be controlled exclusively by endocrine means. The abundance of alpha adrenergic and muscarinic receptors and nerve fibers suggests that the autonomic nervous system may in fact play a role in the growth maturation and secretory functions of the prostate. The predominant adrenergic input to the prostate is from short adrenergic neurons, while cholinergic nerves are closely related to the glandular epithelium, presumably affecting a secretory

UrologyMedicine
6
Article|76 citations·1992
Interaction of epidermal growth factor and transforming growth factor beta in human prostatic epithelial cells in culture
Debra M. Sutkowski, Chau‐Jye Fong, Julia A. Sensibar, Alfred Rademaker, Edward R. Sherwood, James M. Kozlowski, Chung Lee
SJR Q1The Prostate

The present study was conducted to study the interaction between epidermal growth factor (EGF) and transforming growth factor-beta (TGF-beta) in benign human prostatic epithelial cells in culture. Primary cultures of human prostatic epithelial cells were grown in complete WAJC, which consisted of WAJC-404 medium and, in addition to other defined additives, EGF and bovine pituitary extract (BPE). Incomplete WAJC contained the same composition except EGF and BPE were deleted. TGF-beta was added in

HepatologyMedicine
7
Article|67 citations·1989
Demonstration of the Role of Prostate‐Specific Antigen in Semen Liquefaction by Two‐Dimensional Electrophoresis
Chung Lee, MARTIN KEEFER, Zhong Wen Zhao, Roger A. Kroes, Lori A. Berg, Xianxi Liu, Julia A. Sensibar
Journal of Andrology

Two-dimensional protein profiles of human semen, prostatic fluid, and seminal vesicle fluid were compared to demonstrate changes in the protein composition of human semen before and after liquefaction. Semen specimens were obtained from a volunteer. Prostatic fluid specimens were collected by rectal massage from patients visiting a urology clinic. Samples of seminal vesicle fluid were collected by needle aspiration from isolated seminal vesicles, which were removed at surgery. All specimens were

Reproductive MedicineMedicine
8
Article|65 citations·1991
Determination of prostatic secretion in rats: Effect of neurotransmitters and testosterone
Jin‐Min Wang, Kevin E. McKenna, Chung Lee
SJR Q1The Prostate

To study the neuronal and hormonal control of prostatic secretion, the prostatic urethra was cannulated in urethane anesthetized rats. The volume of prostatic secretion was measured following infusion of cholinergic and adrenergic agonists intact animals. Prostatic secretion was elicited by norepinephrine, phenylephrine and carbachol; but not by clonidine, isoproterenol, pilocarpine, or acetylcholine. Phenylephrine and norepinephrine infusions caused a high initial rate of secretion, which then

UrologyMedicine
9
Article|62 citations·1987
Proteins of The Rat Prostate. II. Synthesis of New Proteins in the Ventral Lobe During Castration-Induced Regression
Chung Lee, Julia A. Sensibar
SJR Q1The Journal of Urology

Ventral prostates from adult Sprague-Dawley rats at different days postcastration were cut into one to two mm.3 pieces and incubated in medium containing S35-methionine (100 uCi/ml.) at 37C under 95% oxygen and 5% carbon dioxide for four hours. The incubated tissues were subjected to two-dimensional electrophoresis and radiofluorography. Over 100 spots were developed in the fluorograms. Three groups of spots, representing cytoskeletal proteins, androgen-dependent proteins and castration-induced

Endocrinology, Diabetes and MetabolismMedicine
10
Review|55 citations·2014
Mysteries of TGF-β Paradox in Benign and Malignant Cells
Qiang Zhang, Nengwang Yu, Chung Lee
SJR Q2Frontiers in OncologyOA

TGF-β regulates a wide range of biological functions including embryonic development, wound healing, organogenesis, immune modulation, and cancer progression. Interestingly, TGF-β is known to inhibit cell growth in benign cells but promote progression in cancer cells; this phenomenon is known as TGF-β paradox. To date, the mechanism of this paradox still remains a scientific mystery. In this review, we present our experience, along with the literature, in an attempt to answer this mystery. First

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|40 citations·2002
Reconstitution of Lethally Irradiated Adult Mice with Dominant Negative TGF-β Type II Receptor-Transduced Bone Marrow Leads to Myeloid Expansion and Inflammatory Disease
Ali Shah, William Tabayoyong, Simon Kimm, Seong‐Jin Kim, Luk Van Parijs, Chung Lee
SJR Q1The Journal of ImmunologyOA

TGF-beta regulation of immune homeostasis has been investigated in the context of cytokine knockout (TGF-beta null) mice, in which particular TGF-beta isoforms are disrupted throughout the entire organism, as well as in B and T cell-specific transgenic models, but to date the immunoregulatory effects of TGF-beta have not been addressed in the context of an in vivo mouse model in which multi-isoform TGF-beta signaling is abrogated in multiple leukocyte lineages while leaving nonhemopoietic tissue

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|38 citations·2000
Absence of proximal duct apoptosis in the ventral prostate of transgenic mice carrying the C3(1)-TGF-? type II dominant negative receptor
Shilajit Kundu, Isaac Yi Kim, T.Y. Yang, Lynn Doglio, Sharon Lang, Xeujen Zhang, Ralph Buttyan, Seong‐Jin Kim, Jay Chang, Xiaoyan Cai, Zhou Wang, Chung Lee
SJR Q1The Prostate

These results demonstrated that a loss of sensitivity to TGF-beta results in the accumulation of multiple layers of epithelial cells in the proximal region of the ventral prostate. This abnormal growth illustrates that TGF-beta plays an important role in regulating prostate growth. The current transgenic system can be used as an experimental model to study the functional role of TGF-beta in prostatic growth and function.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|36 citations·2003
Dual Regulation of Proliferation and Growth Arrest in Prostatic Stromal Cells by Transforming Growth Factor-β1
Wei Zhou, Irwin Park, Michael Pins, James M. Kozlowski, Borko Jovanovic, Ju Zhang, Chung Lee, Kenneth Y. Ilio
SJR Q1EndocrinologyOA

In a preliminary study, we observed that TGF-beta1 induced both proliferation and growth arrest in prostatic stromal cells, depending on the concentration of TGF-beta1 used in the culture medium. In this study, we explored possible mechanisms of this dual effect of TGF-beta. Primary cultures of prostatic stromal cells, established from clinical surgical specimens and treated with low doses of TGF-beta1 (0.001-0.01 ng/ml), resulted in an increase in cell proliferation. The addition of neutralizin

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|36 citations·1985
Metabolic action of prolactin in regressing prostate: Independent of androgen action
Cornelius Smith, Dean G. Assimos, Chung Lee, John T. Grayhack
SJR Q1The Prostate

The mechanism of the observed synergistic effect of prolactin and androgen on the lateral lobe of the rat prostate is not established. The observation that prolactin alone delayed the rate of loss of weight, protein, and DNA of the lateral lobe in castrated rats has led us to question the assumption that the effect of prolactin is produced by a modification of recognized androgen-induced intracellular changes. The present study was conducted to explore whether or not the sites of prolactin actio

Endocrinology, Diabetes and MetabolismMedicine
15
Article|30 citations·2010
Overexpression of Transforming Growth Factor β1 in Malignant Prostate Cells is Partly Caused by a Runaway of TGF-β1 Auto-induction Mediated Through a Defective Recruitment of Protein Phosphatase 2A by TGF-β Type I Receptor
Nengwang Yu, James M. Kozlowski, Irwin I. Park, Lin Chen, Qiang Zhang, Danfeng Xu, Jennifer A. Doll, Susan E. Crawford, Charles B. Brendler, Chung Lee
SJR Q2UrologyOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyPulmonary and Respiratory MedicineOncologyEndocrinology, Diabetes and MetabolismSurgeryGastroenterology

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