Effect of doxycycline on proliferation, MMP production, and adhesion in LAM-related cells
William Y C Chang1, Debbie Clements, Simon R Johnson
1Division of Therapeutics and Molecular Medicine and Respiratory Biomedical Research Unit, University of Nottingham, Queen's Medical Centre, Nottingham, NG7 2UH United Kingdom. william.chang@nottingham.ac.uk
Abstract:
Matrix metalloproteinases (MMPs) have been implicated in lung cyst formation in lymphangioleiomyomatosis (LAM). As doxycycline inhibits MMP activity in vivo, some patients take doxycycline, as one report has suggested a possible benefit in LAM. However, there have been no randomized controlled clinical trials of doxycycline for LAM, and any mechanism of action is unclear. Here, we examine previously proposed mechanisms of actions. Cell proliferation and adhesion were examined using 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT) reduction and Cytomatrix cell adhesion kits. Apoptosis was examined by TdT-mediated dUTP nick end labeling (TUNEL) assay. MMP-2 expression was examined by quantitative real-time PCR and zymography in doxycycline-treated ELT3 cells and tumor growth using angiomyolipoma-derived tumor xenografts in nude mice. In ELT3 cells, >or=25 microg/ml doxycycline decreased proliferation, increased apoptosis, and caused a change in cell morphology associated with redistribution of actin stress filaments. Reduction in proliferation was also seen in human angiomyolipoma-derived cells. Cell adhesion to ECM proteins was decreased by doxycycline at 50 microg/ml and prevented detachment of already adherent cells. There was no effect of doxycycline on MMP-2 expression or activity in vitro. In the xenograft model, doxycycline (30 mg*kg(-1)*day(-1)) had no effect on tumor growth, final tumor weight, or tumor lysate MMP levels. Doxycycline at doses >or= 25 microg/ml inhibited cell proliferation and adhesion, possibly by a toxic effect. Doxycycline had no effect on MMP-2 expression or activity or tumor growth in the xenograft model. Any possible in vivo effect is unlikely to be mediated by MMP-2 or reduced cell proliferation.
Insights
Doxycycline did not affect matrix metalloproteinase-2 (MMP-2) in lymphangioleiomyomatosis (LAM) cells or tumors. While it reduced cell proliferation and adhesion in vitro, this was likely due to toxicity, not MMP inhibition.
Area of Science:
- Biomedical research
- Cell biology
- Pharmacology
Background:
- Matrix metalloproteinases (MMPs) are implicated in lymphangioleiomyomatosis (LAM) lung cyst formation.
- Doxycycline inhibits MMP activity and has been anecdotally suggested to benefit LAM patients.
- The precise mechanism of doxycycline's action in LAM remains unclear, necessitating further investigation.
Purpose of the Study:
- To investigate the proposed mechanisms of doxycycline's action in LAM.
- To evaluate the effects of doxycycline on cell proliferation, apoptosis, and adhesion in LAM-related cells.
- To assess the impact of doxycycline on MMP-2 expression and activity, and on tumor growth in vivo.
Main Methods:
- Cell proliferation assessed by MTT assay; cell adhesion by Cytomatrix kits.
- Apoptosis evaluated using TdT-mediated dUTP nick end labeling (TUNEL) assay.
- MMP-2 expression and activity measured by quantitative real-time PCR and zymography; tumor growth in xenograft models.
Main Results:
- Doxycycline (>or=25 microg/ml) decreased proliferation and increased apoptosis in ELT3 cells, altering cell morphology.
- Doxycycline (50 microg/ml) reduced cell adhesion and prevented detachment of adherent cells.
- No significant effect of doxycycline on MMP-2 expression or activity was observed in vitro or in vivo; tumor growth was unaffected in xenografts.
Conclusions:
- Doxycycline inhibits cell proliferation and adhesion in vitro, potentially through cytotoxic effects rather than MMP inhibition.
- Doxycycline does not appear to affect MMP-2 expression or activity in LAM-related cells or tumors.
- The study suggests that any potential in vivo benefits of doxycycline in LAM are unlikely to be mediated by MMP-2 or reduced cell proliferation.
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