Roles of the TGF-β-VEGF-C Pathway in Fibrosis-Related Lymphangiogenesis

被引:67
作者
Kinashi, Hiroshi [1 ]
Ito, Yasuhiko [1 ]
Sun, Ting [2 ]
Katsuno, Takayuki [1 ]
Takei, Yoshifumi [3 ]
机构
[1] Aichi Med Univ, Dept Nephrol & Rheumatol, Nagakute, Aichi 4801195, Japan
[2] Nagoya Univ, Grad Sch Med, Dept Nephrol & Renal Replacement Therapy, Nagoya, Aichi 4668550, Japan
[3] Aichi Gakuin Univ, Dept Med Biochem, Sch Pharm, Nagoya, Aichi 4648650, Japan
关键词
lymphangiogenesis; fibrosis; transforming growth factor-beta; vascular endothelial growth factor-C; TISSUE-GROWTH-FACTOR; PERITONEAL MESOTHELIAL CELLS; LYMPHATIC ABSORPTION RATE; TYPE-1; DIABETIC-PATIENTS; GLYCATION END-PRODUCTS; FACTOR RECEPTOR-3; SOLUTE TRANSPORT; ULTRAFILTRATION FAILURE; MONOCLONAL-ANTIBODY; DIALYSIS PATIENTS;
D O I
10.3390/ijms19092487
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lymphatic vessels drain excess tissue fluids to maintain the interstitial environment. Lymphatic capillaries develop during the progression of tissue fibrosis in various clinical and pathological situations, such as chronic kidney disease, peritoneal injury during peritoneal dialysis, tissue inflammation, and tumor progression. The role of fibrosis-related lymphangiogenesis appears to vary based on organ specificity and etiology. Signaling via vascular endothelial growth factor (VEGF)-C, VEGF-D, and VEGF receptor (VEGFR)-3 is a central molecular mechanism for lymphangiogenesis. Transforming growth factor-beta (TGF-beta) is a key player in tissue fibrosis. TGF-beta induces peritoneal fibrosis in association with peritoneal dialysis, and also induces peritoneal neoangiogenesis through interaction with VEGF-A. On the other hand, TGF-beta has a direct inhibitory effect on lymphatic endothelial cell growth. We proposed a possible mechanism of the TGF-beta-VEGF-C pathway in which TGF-beta promotes VEGF-C production in tubular epithelial cells, macrophages, and mesothelial cells, leading to lymphangiogenesis in renal and peritoneal fibrosis. Connective tissue growth factor (CTGF) is also involved in fibrosis-associated renal lymphangiogenesis through interaction with VEGF-C, in part by mediating TGF-beta signaling. Further clarification of the mechanism might lead to the development of new therapeutic strategies to treat fibrotic diseases.
引用
收藏
页数:19
相关论文
共 136 条
[41]   VEGF-C and TGF-β reciprocally regulate mesenchymal stem cell commitment to differentiation into lymphatic endothelial or osteoblastic phenotypes [J].
Igarashi, Yasuyuki ;
Chosa, Naoyuki ;
Sawada, Shunsuke ;
Kondo, Hisatomo ;
Yaegashi, Takashi ;
Ishisaki, Akira .
INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2016, 37 (04) :1005-1013
[42]   Glucose degradation product methylglyoxal enhances the production of vascular endothelial growth factor in peritoneal cells: role in the functional and morphological alterations of peritoneal membranes in peritoneal dialysis [J].
Inagi, R ;
Miyata, T ;
Yamamoto, T ;
Suzuki, D ;
Urakami, K ;
Saito, A ;
de Strihou, CV ;
Kurokawa, K .
FEBS LETTERS, 1999, 463 (03) :260-264
[43]   Connective tissue growth factor binds vascular endothelial growth factor (VEGF) and inhibits VEGF-induced angiogenesis [J].
Inoki, I ;
Shiomi, T ;
Hashimoto, G ;
Enomoto, H ;
Nakamura, H ;
Makino, K ;
Ikeda, E ;
Takata, S ;
Kobayashi, K ;
Okada, Y .
FASEB JOURNAL, 2001, 15 (14) :219-+
[44]  
Ishibashi Y, 2002, PERITON DIALYSIS INT, V22, P11
[45]   Lymphangiogenesis in myocardial remodelling after infarction [J].
Ishikawa, Y. ;
Akishima-Fukasawa, Y. ;
Ito, K. ;
Akasaka, Y. ;
Tanaka, M. ;
Shimokawa, R. ;
Kimura-Matsumoto, M. ;
Morita, H. ;
Sato, S. ;
Kamata, I. ;
Ishii, T. .
HISTOPATHOLOGY, 2007, 51 (03) :345-353
[46]  
Ito Y, 1998, KIDNEY INT, V53, P853, DOI 10.1111/j.1523-1755.1998.00820.x
[47]   Involvement of Connective Tissue Growth Factor in Human and Experimental Hypertensive Nephrosclerosis [J].
Ito, Yasuhiko ;
Aten, Jan ;
Nguyen, Tri Q. ;
Joles, Jaap A. ;
Matsuo, Seiichi ;
Weening, Jan J. ;
Goldschmeding, Roel .
NEPHRON EXPERIMENTAL NEPHROLOGY, 2011, 117 (01) :E9-E20
[48]   Inhibition of cyclooxygenase-2 suppresses lymph node metastasis via reduction of lymphangiogenesis [J].
Iwata, Caname ;
Kano, Mitsunobu R. ;
Komuro, Akiyoshi ;
Oka, Masako ;
Kiyono, Kunihiko ;
Johansson, Erik ;
Morishita, Yasuyuki ;
Yashiro, Masakazu ;
Hirakawa, Kosei ;
Kaminishi, Michio ;
Miyazono, Kohei .
CANCER RESEARCH, 2007, 67 (21) :10181-10189
[49]   CCBE1 Enhances Lymphangiogenesis via A Disintegrin and Metalloprotease With Thrombospondin Motifs-3-Mediated Vascular Endothelial Growth Factor-C Activation [J].
Jeltsch, Michael ;
Jha, Sawan Kumar ;
Tvorogov, Denis ;
Anisimov, Andrey ;
Leppanen, Veli-Matti ;
Holopainen, Tanja ;
Kivela, Riikka ;
Ortega, Sagrario ;
Karpanen, Terhi ;
Alitalo, Kari .
CIRCULATION, 2014, 129 (19) :1962-1971
[50]   Hyaluronan-induced VEGF-C promotes fibrosis-induced lymphangiogenesis via Toll-like receptor 4-dependent signal pathway [J].
Jung, Yu Jin ;
Lee, Ae Sin ;
Nguyen-Thanh, Tung ;
Kang, Kyung Pyo ;
Lee, Sik ;
Jang, Kyu Yun ;
Kim, Myung Ki ;
Kim, Sun Hee ;
Park, Sung Kwang ;
Kim, Won .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2015, 466 (03) :339-345