Srisang, Siriwan
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Preferred name
Srisang, Siriwan
Main Affiliation
Email
siriwan.sr@kmitl.ac.th
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Item type:Publication, Layer-by-layer dip coating of Foley urinary catheters by chlorhexidine-loaded micelles(2019-02-01); Nasongkla, NorasedChlorhexidine-loaded poly(ethylene glycol)-block-poly(ε-caprolactone) micelles (CHX-micelles) were prepared by the solvent evaporation method and were used to coat urinary catheters. The layer-by-layer (LbL) dip coating technique was used to coat the micelles onto the catheters, which consisted of the alternation of coating with CHX-micelles and poly(acrylic acid). The number of LbL nanocoating cycles was varied, and the properties of the coated catheters were investigated for their drug content and the coating thickness. The optimal coated catheter had 90 bilayers, which provided the maximum CHX content at 32.3 ± 1.4 μg/cm<sup>2</sup>, and the thickness of the thin film on these coated catheters was 6.87 ± 0.36 μm. Coated catheters were studied in the in vitro CHX-release, antibacterial activity, cytotoxicity, and hemolytic activity. Drug release from the coated catheters was controlled, and bacteria proliferation was inhibited for up to 6 days. Results suggest that the antimicrobial activity of the coated catheter reduces the adherence of uropathogens to the catheter's surface. The cytotoxicity and hemolytic activity of the coated catheters showed biocompatible properties. The coated catheter presented the potential to inhibit uropathogen colonization and formation. This nanocoating technology can also be applied to other medical implants that carry the risk of infection. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Multilayer nanocoating of Foley urinary catheter by chlorhexidine-loaded nanoparticles for prolonged release and anti-infection of urinary tract(2020-11-21); ;Wongsuwan, Nattarat ;Boongird, Atthaporn ;Ungsurungsie, MalynWanasawas, PimphakaTwo types of chlorhexidine-loaded nanoparticles (CHX-loaded nanoparticles) were prepared: poly(ethylene glycol)-block-poly(ε-caprolactone) micelles and poly(ε-caprolactone) nanospheres. They were prepared by the solvent evaporation method and were used to coat the Foley urinary catheters. The 90 bilayers of dip coating with chlorhexidine-micelles and the 40 cycles of spray coating with chlorhexidine-nanospheres were investigated. The coating provided the CHX content as high as 93.59 ± 9.14 μg/cm<sup>2</sup> and the thickness of coating was 9.17 ± 0.08 μm. Coated catheters were also investigated in the in vitro chlorhexidine-release, antibacterial activity, and cytotoxicity. CHX release from the coated catheters was controlled. The bacteria proliferation was inhibited up to 28 days and showed the reduction of bacteria on the coated catheter surface. Coated catheters showed no biofilm on the surface. In addition, the cytotoxicity showed no cytotoxic effect from the coating. These nanocoating systems promoted potential uses for indwelling catheter and urinary tract infection.
