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Dual-Specificity Phosphatase 6 Deficiency Attenuates Arterial-Injury-Induced Intimal Hyperplasia in Mice
Candra D. Hamdin
, Meng Ling Wu
, Chen Mei Chen
, Yen Chun Ho
,
Wei Cheng Jiang
, Pei Yu Gung
, Hua Hui Ho
, Huai Chia Chuang
, Tse Hua Tan
, Shaw Fang Yet
*
*
此作品的通信作者
醫學系解剖學及細胞生物學科
研究成果
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同行評審
4
引文 斯高帕斯(Scopus)
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Keyphrases
Adhesion Molecules
6%
Arterial Injury
100%
Arterial Wall
6%
Cell Cycle Inhibitors
6%
Cell Proliferation
6%
Cellular Migration
6%
Dephosphorylate
6%
DUSP6
100%
ERK2
33%
Gene-deficient Mice
6%
Interleukin-1β
33%
Intimal Hyperplasia
100%
Migratory Phenotype
6%
N-cadherin
13%
Neointima
6%
Neointima Formation
6%
Novel Functions
6%
Response to Injury
6%
U0126
6%
Vascular Smooth muscle Cell Migration
20%
Vascular Smooth muscle Cell Proliferation
20%
Vascular Smooth muscle Cells
20%
Vessel Wall
6%
Wild Mice
6%
Medicine and Dentistry
Artery Injury
100%
Cell Adhesion Proteins
7%
Cell Cycle
7%
Cell Migration
28%
Cell Proliferation
28%
Dual Specificity Phosphatase 6
100%
In Vitro
7%
Interleukin-1
35%
Intimal Hyperplasia
100%
Mitogen Activated Protein Kinase 3
35%
Neointima
14%
Nerve Cell Adhesion Molecule
14%
U0126
7%
Vascular Smooth Muscle Cell
42%
Pharmacology, Toxicology and Pharmaceutical Science
1,4 Diamino 1,4 Bis(2 Aminophenylthio) 2,3 Dicyanobutadiene
7%
Artery Injury
100%
Blood Vessel Injury
7%
Cell Adhesion Proteins
7%
Dual Specificity Phosphatase 6
100%
Hyperplasia
100%
Mitogen Activated Protein Kinase 3
35%
Neointima
14%
Nerve Cell Adhesion Molecule
14%
Wild Type Mouse
7%