• Türkçe
    • English
  • English 
    • Türkçe
    • English
  • Login
View Item 
  •   DSpace@İSÜ
  • Araştırma Çıktıları | TR-Dizin | WoS | Scopus | PubMed | DergiPark
  • WoS İndeksli Yayınlar Koleksiyonu
  • View Item
  •   DSpace@İSÜ
  • Araştırma Çıktıları | TR-Dizin | WoS | Scopus | PubMed | DergiPark
  • WoS İndeksli Yayınlar Koleksiyonu
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Antiamoebic properties of ceftriaxone and zinc-oxide-cyclodextrin-conjugated ceftriaxone

Thumbnail

View/Open

Tam Metin / Full Text (1.469Mb)

Date

2022

Author

Makhlouf, Zinb
Akbar, Noor
Khan, Naveed Ahmed
Shah, Muhammad Raza
Alharbi, Ahmad M.
Alfahemi, Hasan
Siddiqui, Ruqaiyyah

Metadata

Show full item record

Citation

Makhlouf, Z., Akbar, N., Khan, N. A., Shah, M. R., Alharbi, A. M., Alfahemi, H., & Siddiqui, R. (2022). Antiamoebic Properties of Ceftriaxone and Zinc-Oxide–Cyclodextrin-Conjugated Ceftriaxone. Antibiotics, 11(12), 1721.

Abstract

Acanthamoeba castellanii is a ubiquitous free-living amoeba capable of instigating keratitis and granulomatous amoebic encephalitis in humans. Treatment remains limited and inconsistent. Accordingly, there is a pressing need for novel compounds. Nanotechnology has been gaining attention for enhancing drug delivery and reducing toxicity. Previous work has shown that various antibiotic classes displayed antiamoebic activity. Herein, we employed two antibiotics: ampicillin and ceftriaxone, conjugated with the nanocarrier zinc oxide and beta-cyclodextrin, and tested them against A. castellanii via amoebicidal, amoebistatic, encystment, excystment, cytopathogenicity, and cytotoxicity assays at a concentration of 100 mu g/mL. Notably, zinc oxide beta-cyclodextrin ceftriaxone significantly inhibited A. castellanii growth and cytopathogenicity. Additionally, both zinc oxide beta-cyclodextrin ceftriaxone and ceftriaxone markedly inhibited A. castellanii encystment. Furthermore, all the tested compounds displayed negligible cytotoxicity. However, minimal anti-excystment or amoebicidal effects were observed for the compounds. Accordingly, this novel nanoconjugation should be employed in further studies in hope of discovering novel anti-Acanthamoeba compounds.

Source

Antibiotics-Basel

Volume

11

Issue

12

URI

http://dx.doi.org/10.3390/antibiotics11121721
https://hdl.handle.net/20.500.12713/3968

Collections

  • Scopus İndeksli Yayınlar Koleksiyonu [1937]
  • WoS İndeksli Yayınlar Koleksiyonu [2061]



DSpace software copyright © 2002-2015  DuraSpace
Contact Us | Send Feedback
Theme by 
@mire NV
 

 




| Instruction | Guide | Contact |

DSpace@İSÜ

by OpenAIRE
Advanced Search

sherpa/romeo

Browse

All of DSpaceCommunities & CollectionsBy Issue DateAuthorsTitlesSubjectsTypeLanguageDepartmentCategoryPublisherAccess TypeInstitution AuthorThis CollectionBy Issue DateAuthorsTitlesSubjectsTypeLanguageDepartmentCategoryPublisherAccess TypeInstitution Author

My Account

LoginRegister

Statistics

View Google Analytics Statistics

DSpace software copyright © 2002-2015  DuraSpace
Contact Us | Send Feedback
Theme by 
@mire NV
 

 


|| Guide|| Instruction || Library || İstinye University || OAI-PMH ||

İstinye University, İstanbul, Turkey
If you find any errors in content, please contact:

Creative Commons License
İstinye University Institutional Repository is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 4.0 Unported License..

DSpace@İSÜ:


DSpace 6.2

tarafından İdeal DSpace hizmetleri çerçevesinde özelleştirilerek kurulmuştur.