Araştırma Makalesi

The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films

Cilt: 3 Sayı: Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering 13 Ocak 2021
  • Gizem Kaleli Can
  • Hatice Ferda Özgüzar
  • Selahattin Kahriman
  • Miranda Türkal
  • Julide Sedef Göçmen
  • Erkan Yurtçu
  • Mehmet Mutlu
PDF İndir
EN

The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films

Öz

In this study, plasma polymerization technique for the production of antimicrobial surfaces was studied to inhibit the formation of biofilm of Staphylococcus aureus (S. aureus) and Candida albicans (C. albicans) for foreign materials in biomedical application. Low pressure RF-plasma system was used to coat Ti surfaces. Ti surfaces were exposed to diethyl phosphite (DEP) plasma generated with different discharge power varying from 25-90 W for 1-10 min of exposure times at a constant pressure of 0.15 mbar. Surface hydrophobicity and surface energies of unmodified and DEP modified Ti surfaces were used to enlighten surface wettability by the sessile drop method using contact angle analyser. All DEP coatings produced with different plasma conditions increased both the surface hydrophilicity from 100° to 30-48° and surface energies of Ti surfaces from 33mJ/m2 to 61-71mj/m2. Aging of the DEP coatings on Ti surfaces was analyzed in terms of change in surface energies by time within 30 days. Even though the stability of phosphorus containing thin films has been problematic due to the post-plasma oxidation, thin films produced with 25 W-5 min, 50 W-5 min, 75 W-10 min and 90 W-1 min were found more stable compared to the others. The antibacterial and antifungal activity of unmodified and DEP modified Ti surfaces was studied against S. aureus and C. albicans, respectively. While the adhesion and growth of both bacteria and fungi was observed on unmodified Ti surfaces, antimicrobial activity was observed after surface modification with DEP plasma with different plasma conditions. The highest efficiency for anti-fungal coating was obtained with 50 W-5 min, 75 W-10 min and 90 W-10 min and the highest antibacterial activity was achieved with 25 W- 1min, 50W-5 min, 50 W-10 min and 75 W-10 min. Additionally, surface modification with DEP plasma increased L929 fibroblast cell viability of Ti surfaces. The chosen precursor, DEP, solves problems in reducing the risk of infection associated with Ti implants with plasma polymerization technique.

Anahtar Kelimeler

Kaynakça

  1. 1. Holzapfel, B. M., Reichert, J. C., Schantz, J. T., Gbureck, U., Rackwitz, L., Nöth, U., ... & Hutmacher, D. W. (2013). How smart do biomaterials need to be? A translational science and clinical point of view. Advanced drug delivery reviews, 65(4), 581-603.
  2. 2. Donlan, R. M. (2002). Biofilms: microbial life on surfaces. Emerging infectious diseases, 8(9), 881.
  3. 3. Meyer, B. (2003). Approaches to prevention, removal and killing of biofilms. International biodeterioration & biodegradation, 51(4), 249-253.
  4. 4. Høiby, N., Ciofu, O., Johansen, H. K., Song, Z. J., Moser, C., Jensen, P. Ø., ... & Bjarnsholt, T. (2011). The clinical impact of bacterial biofilms. International journal of oral science, 3(2), 55-65.
  5. 5. Swartjes, J. J., Sharma, P. K., Kooten, T. G., van der Mei, H. C., Mahmoudi, M., Busscher, H. J., & Rochford, E. T. (2015). Current developments in antimicrobial surface coatings for biomedical applications. Current Medicinal Chemistry, 22(18), 2116-2129.
  6. 6. Yasuda, H., & Gazicki, M. (1982). Biomedical applications of plasma polymerization and plasma treatment of polymer surfaces. Biomaterials, 3(2), 68-77.
  7. 7. Tang, Z., Kong, N., Ouyang, J., Feng, C., Kim, N. Y., Ji, X., ... & Tao, W. (2020). Phosphorus science-oriented design and synthesis of multifunctional nanomaterials for biomedical applications. Matter, 2(2), 297-322.
  8. 8. Akdogan, E., Demirbilek, M., Sen, Y., Onur, M. A., Azap, O. K., Sonmez, E., ... & Mutlu, M. (2019). In vitro and in vivo bacterial antifouling properties of phosphite plasma-treated silicone. Surface Innovations, 7(2), 122-132.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yazarlar

Gizem Kaleli Can Bu kişi benim
0000-0002-4411-622X
Türkiye

Hatice Ferda Özgüzar Bu kişi benim
0000-0003-1205-6629
Türkiye

Selahattin Kahriman Bu kişi benim
Türkiye

Miranda Türkal Bu kişi benim
Türkiye

Julide Sedef Göçmen Bu kişi benim
0000-0001-8207-8749
Türkiye

Yayımlanma Tarihi

13 Ocak 2021

Gönderilme Tarihi

15 Aralık 2020

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2021 Cilt: 3 Sayı: Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering

Kaynak Göster

APA
Kaleli Can, G., Özgüzar, H. F., Kahriman, S., Türkal, M., Göçmen, J. S., Yurtçu, E., & Mutlu, M. (2021). The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films. Natural and Applied Sciences Journal, 3(Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering), 102-111. https://izlik.org/JA26NH76PK
AMA
1.Kaleli Can G, Özgüzar HF, Kahriman S, vd. The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films. IDU Natural and Applied Sciences Journal (IDUNAS). 2021;3(Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering):102-111. https://izlik.org/JA26NH76PK
Chicago
Kaleli Can, Gizem, Hatice Ferda Özgüzar, Selahattin Kahriman, vd. 2021. “The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films”. Natural and Applied Sciences Journal 3 (Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering): 102-11. https://izlik.org/JA26NH76PK.
EndNote
Kaleli Can G, Özgüzar HF, Kahriman S, Türkal M, Göçmen JS, Yurtçu E, Mutlu M (01 Ocak 2021) The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films. Natural and Applied Sciences Journal 3 Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering 102–111.
IEEE
[1]G. Kaleli Can vd., “The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films”, IDU Natural and Applied Sciences Journal (IDUNAS), c. 3, sy Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering, ss. 102–111, Oca. 2021, [çevrimiçi]. Erişim adresi: https://izlik.org/JA26NH76PK
ISNAD
Kaleli Can, Gizem - Özgüzar, Hatice Ferda - Kahriman, Selahattin - Türkal, Miranda - Göçmen, Julide Sedef - Yurtçu, Erkan - Mutlu, Mehmet. “The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films”. Natural and Applied Sciences Journal 3/Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering (01 Ocak 2021): 102-111. https://izlik.org/JA26NH76PK.
JAMA
1.Kaleli Can G, Özgüzar HF, Kahriman S, Türkal M, Göçmen JS, Yurtçu E, Mutlu M. The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films. IDU Natural and Applied Sciences Journal (IDUNAS). 2021;3:102–111.
MLA
Kaleli Can, Gizem, vd. “The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films”. Natural and Applied Sciences Journal, c. 3, sy Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering, Ocak 2021, ss. 102-11, https://izlik.org/JA26NH76PK.
Vancouver
1.Gizem Kaleli Can, Hatice Ferda Özgüzar, Selahattin Kahriman, Miranda Türkal, Julide Sedef Göçmen, Erkan Yurtçu, Mehmet Mutlu. The Effect of Plasma Treatment Parameters on Antibacterial and Antifungal Activity of Plasma Polymerized Diethyl Phosphite Thin Films. IDU Natural and Applied Sciences Journal (IDUNAS) [Internet]. 01 Ocak 2021;3(Special Issue: Full Papers of 2nd International Congress of Updates in Biomedical Engineering):102-11. Erişim adresi: https://izlik.org/JA26NH76PK