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1.
J Korean Med Sci ; 36(40): e259, 2021 Oct 18.
Article in English | MEDLINE | ID: mdl-34664799

ABSTRACT

BACKGROUND: Titanium dioxide films exhibit good biocompatibility and may be effective as drug-binding matrices for drug-eluting stents. We conducted a mid-term evaluation of a novel polymer-free everolimus-eluting stent using nitrogen-doped titanium dioxide film deposition (TIGEREVOLUTION®) in comparison with a commercial durable polymer everolimus-eluting stent (XIENCE Alpine®) in a porcine coronary restenosis model. METHODS: Twenty-eight coronary arteries from 14 mini-pigs were randomly allocated to TIGEREVOLUTION® stent and XIENCE Alpine® stent groups. The stents were implanted in the coronary artery at a 1.1-1.2:1 stent-to-artery ratio. Eleven stented coronary arteries in each group were finally analyzed using coronary angiography, optical coherence tomography, and histopathologic evaluation 6 months after stenting. RESULTS: Quantitative coronary analysis showed no significant differences in the pre-procedural, post-procedural, and 6-month lumen diameters between the groups. In the volumetric analysis of optical coherence tomography at 6 months, no significant differences were observed in stent volume, lumen volume, and percent area stenosis between the groups. There were no significant differences in injury score, inflammation score, or fibrin score between the groups, although the fibrin score was zero in the TIGEREVOLUTION® stent group (0 vs. 0.07 ± 0.11, P = 0.180). CONCLUSION: Preclinical evaluation, including optical coherence tomographic findings 6 months after stenting, demonstrated that the TIGEREVOLUTION® stent exhibited efficacy and safety comparable with the XIENCE Alpine® stent, supporting the need for further clinical studies on the TIGEREVOLUTION® stent.


Subject(s)
Coronary Restenosis/drug therapy , Drug-Eluting Stents , Everolimus/therapeutic use , Animals , Coronary Angiography , Coronary Restenosis/pathology , Coronary Vessels/diagnostic imaging , Coronary Vessels/pathology , Disease Models, Animal , Drug Evaluation, Preclinical , Everolimus/chemistry , Polymers/chemistry , Swine , Swine, Miniature , Titanium/chemistry , Tomography, Optical Coherence
2.
Mol Med ; 21: 584-96, 2015 Jul 08.
Article in English | MEDLINE | ID: mdl-26181632

ABSTRACT

Folate receptor (FR)-ß has been identified as a promising target for antimacrophage and antiinflammatory therapies. In the present study, we investigated EC0565, a folic acid-derivative of everolimus, as a FR-specific inhibitor of the mammalian target of rapamycin (mTOR). Because of its amphiphilic nature, EC0565 was first evaluated for water solubility, critical micelle formation, stability in culture and FR-binding specificity. Using FR-expressing macrophages, the effect of EC0565 on mTOR signaling and cellular proliferation was studied. The pharmacokinetics, metabolism and bioavailability of EC0565 were studied in normal rats. The in vivo activity of EC0565 was assessed in rats with adjuvant arthritis, a "macrophage-rich" model with close resemblance to rheumatoid arthritis. EC0565 forms micellar aggregates in physiological buffers and demonstrates good water solubility as well as strong multivalent FR-binding capacity. EC0565 inhibited mTOR signaling in rat macrophages at nanomolar concentrations and induced G0/G1 cell cycle arrest in serum-starved RAW264.7 cells. Subcutaneously administered EC0565 in rats displayed good bioavailability and a relatively long half-life (~12 h). When given at 250 nmol/kg, EC0565 selectively inhibited proliferating cell nuclear antigen expression in thioglycollate-stimulated rat peritoneal cells. With limited dosing regimens, the antiarthritic activity of EC0565 was found superior to that of etanercept, everolimus and a nontargeted everolimus analog. The in vivo activity of EC0565 was also comparable to that of a folate-targeted aminopterin. Folate-targeted mTOR inhibition may be an effective way of suppressing activated macrophages in sites of inflammation, especially in nutrient-deprived conditions, such as in the arthritic joints. Further investigation and improvement upon the physical and biochemical properties of EC0565 are warranted.


Subject(s)
Arthritis, Rheumatoid/drug therapy , Everolimus/analogs & derivatives , Everolimus/administration & dosage , Folic Acid/analogs & derivatives , Folic Acid/administration & dosage , Inflammation/drug therapy , TOR Serine-Threonine Kinases/genetics , Animals , Anti-Inflammatory Agents/administration & dosage , Anti-Inflammatory Agents/chemistry , Arthritis, Experimental/drug therapy , Arthritis, Experimental/genetics , Arthritis, Experimental/pathology , Arthritis, Rheumatoid/genetics , Arthritis, Rheumatoid/pathology , Cell Proliferation/drug effects , Everolimus/chemistry , Folate Receptor 2/genetics , Folate Receptor 2/metabolism , Folic Acid/chemistry , Humans , Inflammation/genetics , Inflammation/pathology , Rats , Signal Transduction/drug effects , TOR Serine-Threonine Kinases/antagonists & inhibitors
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