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Nonionic, water self-dispersible "hairy-Rod" poly(p -phenylene)-g-poly(ethylene glycol) copolymer/carbon nanotube conjugates for targeted cell imaging

  • Merve Yuksel
  • , Demet Goen Colak
  • , Mehriban Akin
  • , Ioan Cianga
  • , Manolya Kukut
  • , E. Ilker Medine
  • , Mustafa Can
  • , Serhan Sakarya
  • , Perihan Unak
  • , Suna Timur
  • , Yusuf Yagci*
  • *Corresponding author for this work
  • Ege University
  • Istanbul Technical University
  • Petru Poni Institute of Macromolecular Chemistry
  • Adnan Menderes University
  • Faculty of Sciences, King Abdulaziz University

Research output: Contribution to journalArticlepeer-review

34 Citations (Scopus)

Abstract

The generation and fabrication of nanoscopic structures are of critical technological importance for future implementations in areas such as nanodevices and nanotechnology, biosensing, bioimaging, cancer targeting, and drug delivery. Applications of carbon nanotubes (CNTs) in biological fields have been impeded by the incapability of their visualization using conventional methods. Therefore, fluorescence labeling of CNTs with various probes under physiological conditions has become a significant issue for their utilization in biological processes. Herein, we demonstrate a facile and additional fluorophore-free approach for cancer cell-imaging and diagnosis by combining multiwalled CNTs with a well-known conjugated polymer, namely, poly(p-phenylene) (PP). In this approach, PP decorated with poly(ethylene glycol) (PEG) was noncovalently (π-π stacking) linked to acid-treated CNTs. The obtained water self-dispersible, stable, and biocompatible f-CNT/PP-g-PEG conjugates were then bioconjugated to estrogen-specific antibody (anti-ER) via -COOH functionalities present on the side-walls of CNTs. The resulting conjugates were used as an efficient fluorescent probe for targeted imaging of estrogen receptor overexpressed cancer cells, such as MCF-7. In vitro studies and fluorescence microscopy data show that these conjugates can specifically bind to MCF-7 cells with high efficiency. The represented results imply that CNT-based materials could easily be fabricated by the described approach and used as an efficient "fluorescent probe" for targeting and imaging, thereby providing many new possibilities for various applications in biomedical sensing and diagnosis.

Original languageEnglish
Pages (from-to)2680-2691
Number of pages12
JournalBiomacromolecules
Volume13
Issue number9
DOIs
Publication statusPublished - 10 Sept 2012

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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