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MeSH:(Scleroderma, Systemic/*metabolism/pathology)

2.Transdifferentiation of fibroblasts into myofibroblasts in the skin lesion of systemic sclerosis: role of transforming growth factor β1 and its signal transduction.

Tong LIU ; Xiao-ding HU

Journal of Southern Medical University 2011;31(11):1840-1845

3.Transforming growth factor-beta and its receptors in scleroderma.

Huan QIAN ; Min ZHENG

Journal of Zhejiang University. Medical sciences 2009;38(4):415-421

4.Serum Elastin-Derived Peptides and Anti-Elastin Antibody in Patients with Systemic Sclerosis.

Yoo Jin HONG ; Jinhyun KIM ; Bo Ram OH ; Yun Jong LEE ; Eun Young LEE ; Eun Bong LEE ; Seung Hyo LEE ; Yeong Wook SONG

Journal of Korean Medical Science 2012;27(5):484-488

5.Effects of artemether and dihydroarteannuin on mouse model of scleroderma.

Jie MA ; Lihua CHEN ; Rong LIAO ; Shuguang XU ; Min LI ; Donghui XU ; Weidong LI

China Journal of Chinese Materia Medica 2009;34(2):204-207

6.Role of Wnt 2, Wnt 3a and β-catenin in skin lesions of patients with scleroderma.

Jinjuan LIU ; Tong LIU

Journal of Southern Medical University 2012;32(12):1781-1786

7.Involvement of collagen-binding heat shock protein 47 in scleroderma-associated fibrosis.

Haiyan CHU ; Ting WU ; Wenyu WU ; Wenzhen TU ; Shuai JIANG ; Sidi CHEN ; Yanyun MA ; Qingmei LIU ; Xiaodong ZHOU ; Li JIN ; Jiucun WANG

Protein & Cell 2015;6(8):589-598

8.Role of PDGF-A/PDGFR-α in proliferation and transdifferentiation of fibroblasts from skin lesions of patients with systemic sclerosis.

Tong LIU ; Jing ZHANG

Journal of Southern Medical University 2012;32(4):496-501

9.Preventive and therapeutic effects of safflower water extract on systemic scleroderma in mice and its mechanism.

Chun-Fang FAN ; Hong-Xia ZHANG ; Yi-Hao TANG ; Hai-Huan XU ; Dong SONG

Chinese Journal of Applied Physiology 2019;35(4):351-354

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