Isfahan University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share this content! On (X network) By
Anti-Cd24 Bio Modified Pegylated Gold Nanoparticles As Targeted Computed Tomography Contrast Agent Publisher



Fazel Ghaziyani M1 ; Pourhassan Moghaddam M2, 3 ; Shahbazigahrouei D1 ; Ghavami M4 ; Mohammadi A2 ; Abbasi MM5 ; Baradaran B2
Authors
Show Affiliations
Authors Affiliations
  1. 1. Department of Medical Physics, School of Medicine, Isfahan University of Medical Sciences, Isfahan, Iran
  2. 2. Immunology Research Center, Tabriz University of Medical Sciences, Tabriz, Iran
  3. 3. Department of Medical Biotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran
  4. 4. Department of Radiology, Paramedical School, Tabriz University of Medical Sciences, Tabriz, Iran
  5. 5. Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran

Source: Advanced Pharmaceutical Bulletin Published:2018


Abstract

Purpose: Molecular imaging is one of the import methods for recognition of cancer at the early stage in order to enhance the capacity of remedy. This study was aimed to introduce a new contrast agent that was targeted with CD24 so as to improve the CT scan detection of cancer cells with higher CD24 expression. Methods: The surface modifications of gold nanoparticles (Au-NPs) were done with long PEG (HS-PEG-CH3O) and short PEG (HS-PEG-COOH) chains to enhance their stability and capacity for immobilization of different antibodies. MTT assay was carried out to assess the biocompatibility of the NPs. The obtained contrast agent was implemented in the targeted CT imaging based on in vitro and in vivo studies of breast cancer. Results: The results revealed that the attached CD24 to the cell surface of PEGylated Au-NPs could enhance significantly the cells CT number (40.45 HU in 4T1, while it was 16.61 HU in CT26) It was shown that the attenuation coefficient of the molecularly targeted cells was more than 2 times excessive than the control groups. Further, the tumor region in model of xenograft tumor has higher density compare to the omnipaque groups, 60 min after injection (45 Hu vs.81 Hu). These results showed that the nanoparticles stayed in tumor region for longer time. Conclusion: It is predicted that the synthesized nanoparticle can be used as computed tomography contrast agent. Also, it can be used to identify the tumor cells with higher expression of CD24 at the early stages more efficiently compare to the other routine methods. © 2018 The Authors. This is an Open Access article distributed under the terms of the Creative Commons Attribution (CC BY), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.
Other Related Docs
13. Recent Progress in Cancer Immunotherapy: Application of Nano-Therapeutic Systems, Journal of Drug Delivery Science and Technology (2024)
21. Advanced Nanosystems for Cancer Therapeutics: A Review, ACS Applied Nano Materials (2023)
36. Nanoparticles on a Breast Carcinoma Tumor Model in Balb/C Mice, International Journal of Radiation Research (2020)
44. Gold Nanostructures in Medicine and Biology, Nanoparticles in Medicine (2019)