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Anti-angiogenic Effect of Triptolide in Rheumatoid Arthritis by Targeting Angiogenic Cascade

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Journal PLoS One
Date 2013 Nov 9
PMID 24204851
Citations 43
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Abstract

Rheumatoid arthritis (RA) is characterized by a pre-vascular seriously inflammatory phase, followed by a vascular phase with high increase in vessel growth. Since angiogenesis has been considered as an essential event in perpetuating inflammatory and immune responses, as well as supporting pannus growth and development of RA, inhibition of angiogenesis has been proposed as a novel therapeutic strategy for RA. Triptolide, a diterpenoid triepoxide from Tripterygium wilfordii Hook F, has been extensively used in treatment of RA patients. It also acts as a small molecule inhibitor of tumor angiogenesis in several cancer types. However, it is unclear whether triptolide possesses an anti-angiogenic effect in RA. To address this problem, we constructed collagen-induced arthritis (CIA) model using DA rats by the injection of bovine type II collagen. Then, CIA rats were treated with triptolide (11-45 µg/kg/day) starting on the day 1 after first immunization. The arthritis scores (P<0.05) and the arthritis incidence (P<0.05) of inflamed joints were both significantly decreased in triptolide-treated CIA rats compared to vehicle CIA rats. More interestingly, doses of 11~45 µg/kg triptolide could markedly reduce the capillaries, small, medium and large vessel density in synovial membrane tissues of inflamed joints (all P<0.05). Moreover, triptolide inhibited matrigel-induced cell adhesion of HFLS-RA and HUVEC. It also disrupted tube formation of HUVEC on matrigel and suppressed the VEGF-induced chemotactic migration of HFLS-RA and HUVEC, respectively. Furthermore, triptolide significantly reduced the expression of angiogenic activators including TNF-α, IL-17, VEGF, VEGFR, Ang-1, Ang-2 and Tie2, as well as suppressed the IL1-β-induced phosphorylated of ERK, p38 and JNK at protein levels. In conclusion, our data suggest for the first time that triptolide may possess anti-angiogenic effect in RA both in vivo and in vitro assay systems by downregulating the angiogenic activators and inhibiting the activation of mitogen-activated protein kinase downstream signal pathway.

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References
1.
Gu W, Brandwein S . Inhibition of type II collagen-induced arthritis in rats by triptolide. Int J Immunopharmacol. 1998; 20(8):389-400. DOI: 10.1016/s0192-0561(98)00035-6. View

2.
Guadagni F, Ferroni P, Palmirotta R, Portarena I, Formica V, Roselli M . Review. TNF/VEGF cross-talk in chronic inflammation-related cancer initiation and progression: an early target in anticancer therapeutic strategy. In Vivo. 2007; 21(2):147-61. View

3.
Xue M, Jiang Z, Liu J, Zhang L, Wang T, Wang H . Comparative study on the anti-inflammatory and immune suppressive effect of Wilforlide A. Fitoterapia. 2010; 81(8):1109-12. DOI: 10.1016/j.fitote.2010.07.007. View

4.
Ding Y, Zhang J, Hou L, Zhang J, Wang Q, Wang S . [Effects of triptolide on anti-angiogenesis by reducing expression of urokinase plasminogen activator]. Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2005; 22(4):778-81. View

5.
Konisti S, Kiriakidis S, Paleolog E . Hypoxia--a key regulator of angiogenesis and inflammation in rheumatoid arthritis. Nat Rev Rheumatol. 2012; 8(3):153-62. DOI: 10.1038/nrrheum.2011.205. View