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Bisphosphonates inhibit stromelysin-1 (MMP-3), matrix metalloelastase (MMP-12), collagenase-3 (MMP-13) and enamelysin (MMP-20), but not urokinase-type plasminogen activator, and diminish invasion and migration of human malignant and endothelial cell lines

 

作者: Pia Heikkilä,   Olli Teronen,   Merja Moilanen,   Yrjö Konttinen,   Roeland Hanemaaijer,   Minna Laitinen,   Päivi Maisi,   Gabri van der Pluijm,   John Bartlett,   Tuula Salo,   Timo Sorsa,  

 

期刊: Anti-Cancer Drugs  (OVID Available online 2002)
卷期: Volume 13, issue 3  

页码: 245-254

 

ISSN:0959-4973

 

年代: 2002

 

出版商: OVID

 

关键词: Bisphosphonates;inhibition;invasion;matrix metalloproteinases;migration

 

数据来源: OVID

 

摘要:

Bisphosphonates (clodronate, alendronate, pamidronate and zoledronate) at therapeutically attainable non-cytotoxic concentrations inhibited MMP-3, -12, -13 and -20 as well as MMP-1, -2, -8 and -9, but not urokinase-type plasminogen activator (uPA), a serine proteinase and a pro-MMP activator. Dose-dependent inhibition was shown by three independent MMP assays. The inhibition was reduced in the presence of an increased concentration of Ca2+when compared to physiologic Ca2+concentration. Alendronate inhibited thein vitroinvasion (Matrigel) of human HT1080 fibrosarcoma and C8161 melanoma cells, and the random migration of these malignant and endothelial cell lines capable of expressing MMPs and uPA. The concentration of alendronate required to inhibit 50% of the activity (IC50=40–70 μM) of MMPs corresponded to the IC50of down-regulation ofin vitroinvasion and migration. The ability of bisphosphonates to down-regulate thein vitroinvasion and random migration was comparable or slighty better in relation to the selective gelatinase inhibitor CTTHWGFTLC peptide. Alendronate but not CTTHWGFTLC peptide promoted the adhesion of HT1080 fibrosarcoma and C8161 melanoma cell lines on fibronectin. Bisphosphonates are broad-spectrum MMP inhibitors and this inhibition involves cation chelation. Bisphosphonates further exert antimetastatic, anti-invasive and cell adhesion-promoting properties, which may prevent metastases not only into hard tissues but also to soft tissues.

 

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