Tehran University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share By
Impact of Plasma Concentration of Transferrin on Targeting Capacity of Nanoparticles Publisher Pubmed



Sepand MR1 ; Ghavami M2 ; Zanganeh S3 ; Stacks S4 ; Ghasemi F5 ; Montazeri H6 ; Corbo C7, 8 ; Derakhshankhah H9 ; Ostad SN1 ; Ghahremani MH1 ; Mahmoudi M10
Authors

Source: Nanoscale Published:2020


Abstract

It is becoming increasingly accepted that various diseases have a capacity to alter the composition of plasma proteins. This alteration in protein composition may consequently change the targeting capacity of nanoparticles (NPs). In this study, the impact of a model targeting ligand's (i.e., Transferrin; Tf) concentration in human plasma on the targeting capacity of gold NPs (Au NPs), pre-conjugated with Tf, is investigated. Our findings demonstrate that the protein corona formation by both healthy and Tf depleted human plasma diminishes the targeting efficacy of Au NPs within human cancer cells despite a preservation of targeting ability by plasma with excess Tf (10-fold). Moreover, the plasma samples obtained from patients with various Tf levels (e.g., thalassemia major, sickle cell anemia, aplastic anemia, and iron deficiency anemia) have affected the accessibility of the targeting Tf in the corona layer and subsequently affected their targeting ability, which emphasizes the critical role of disease-specific protein corona on the efficacy of Au NPs. Ultimately, variations of protein concentration (e.g., due to disease occurrence and progress) in plasma affect its recruiting in corona formation, and in turn, affect the targeting and therapeutic efficacies of Au NPs. © The Royal Society of Chemistry 2020.
3. Protein Corona: Opportunities and Challenges, International Journal of Biochemistry and Cell Biology (2016)
Experts (# of related papers)
Other Related Docs
6. Gold Nanoparticles for Biomedical Imaging and Their Biological Response, New Developments in Gold Nanomaterials Research (2016)
12. Disease Specific Protein Corona, Progress in Biomedical Optics and Imaging - Proceedings of SPIE (2015)
15. Nanoparticles and Biological Environment Interactions, Advanced Structured Materials (2019)
17. Biomolecular Corona Dictates Aβ Fibrillation Process, ACS Chemical Neuroscience (2018)
19. Protein Corona: Challenges and Opportunities for Cancer Therapy, Functionalized Nanomaterials for Cancer Research: Applications in Treatments# Tools and Devices (2024)