Logo-apb
Adv Pharm Bull. 2024;14(3): 634-645.
doi: 10.34172/apb.2024.054
PMID: 39494252
PMCID: PMC11530877
  Abstract View: 440
  PDF Download: 198

Research Article

Dual-stage Acting Dendrimeric Nanoparticle for Deepened Chemotherapeutic Drug Delivery to Tumor Cells

Mohammad Shahpouri 1,2 ORCID logo, Mohammad Amin Adili-Aghdam 1, Hossein Mahmudi 1, Saeedeh Ghiasvand 2, Hamed Dadashi 1, Aysan Salemi 1, Sajjad Alimohammadvand 1, Leila Roshangar 3, Abolfazl Barzegari 1, Mehdi Jaymand 4,5*, Rana Jahanban-Esfahlan 1* ORCID logo

1 Department of Medical Biotechnology, Faculty of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
2 Department of Biology, Faculty of Science, Malayer University, Malayer, Iran.
3 Stem Cell Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
4 Nano Drug Delivery Research Center, Health Technology Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.
5 Student Research Committee, Kermanshah University of Medical Sciences, Kermanshah, Iran.
*Corresponding Authors: Mehdi Jaymand, Email: m.jaymand@gmail.com; Rana Jahanban-Esfahlan, Email: jahanbanr@tbzmed.ac.ir

Abstract

Purpose: We report on the design of hypoxia-induced dual-stage acting dendrimeric nanoparticles (NPs) for selective delivery of two chemotherapeutic model drugs doxorubicin (DOX) and tirapazamin (TPZ) for deepened drug delivery into hypoxic tumors in vitro.

Methods: PAMAM G5 dendrimers were crosslinked with a hypoxic azo linker, attached to a mPEG to form a detachable corona on the dendrimer surface (PAP NPs). NPs were characterized by Zeta sizer, transmission electron microscope (TEM), Fourier transforms infrared (FTIR) and drug release kinetics. The anti-cancer performance of PAPs was evaluated by numerous tests in 2D and 3D cultured MDA-MB-231 breast cancer cells.

Results: MTT assay showed a significant difference between PAP and PAMAMG5 in terms of biocompatibility, and the effect of PAP@DOX was significantly greater than free DOX in hypoxic conditions. The results of DAPI and Annexin V-FITC/PI cell staining also confirmed uniform drug penetration as validated by induction of 90% cell apoptosis in spheroids and a high level of PAP@DOX-induced ROS generation under hypoxia conditions. Mechanistically, PAP@DOX significantly reduced the expression of mTOR, and Notch1, while the expression of Bax and Caspase3 was considerably unregulated, compared to the controls. Importantly, hypoxia-responsive disintegration and hypoxia-induced activation of HAP drug were synergized to promote deep and homogenous HAP distribution in whole microtumor regions to efficiently eliminate residual tumor cells.

Conclusion: Our results indicate the safety and high therapeutic potential of PAP system for targeted drug delivery of chemotherapeutics in particular HAPs which show maximum anti-cancer activity against hypoxic solid tumors.

First Name
Last Name
Email Address
Comments
Security code


Abstract View: 439

Your browser does not support the canvas element.


PDF Download: 198

Your browser does not support the canvas element.