» Articles » PMID: 32254798

Enzymatic Synthesis of PEG-poly(amine-co-thioether Esters) As Highly Efficient PH and ROS Dual-responsive Nanocarriers for Anticancer Drug Delivery

Overview
Journal J Mater Chem B
Date 2020 Apr 8
PMID 32254798
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Novel multifunctional drug nanocarriers have been successfully fabricated from a new type of enzymatically synthesized, biodegradable block copolymer, PEG-poly(ω-pentadecalactone-co-N-methyldiethyleneamine-co-3,3'-thiodipropionate) (PEG-PPMT), which was responsive to tumor-relevant acidic pH (5.0-6.5) and intracellular reactive oxygen species (ROS) of tumor cells. The PEG-PPMT copolymers could self-assemble to form nano-scaled particles in aqueous solutions, which are stable in physiological solutions, but swell substantially upon reducing the pH from 7.4 to 5.0 and/or in the presence of ROS on account of the protonation of the tertiary amino groups and oxidation of the thioether groups, causing a hydrophobic to hydrophilic transition in the nanoparticle cores. Consistently, docetaxel (DTX) encapsulated in PEG-PPMT nanoparticles can be triggered in a synergistic manner by acidic pH and a high-ROS environment in tumor cells to release the hydrophobic drug at accelerated rates for efficient tumor growth inhibition. In particular, DTX encapsulated in PEG-PPMT-11% PDL and PEG-PPMT-28% PDL nanoparticles exhibit extraordinarily enhanced potency (95% and 93% tumor-inhibiting efficiency, respectively) in inhibiting the growth of ROS-rich CT-26 tumors xenografted in mice. Importantly, biosafety analyses show minimal toxicity of DTX-loaded PEG-PPMT nanoparticles toward normal organs including liver and kidneys during the in vivo antitumor treatments. These results demonstrate that the PEG-PPMT nanoparticles are promising pH and ROS dual-responsive multifunctional nanocarriers for tumor site specific, controlled release of anticancer drugs to treat ROS-rich tumors.

Citing Articles

Biomaterials and Extracellular Vesicle Delivery: Current Status, Applications and Challenges.

Leung K, Shirazi S, Cooper L, Ravindran S Cells. 2022; 11(18).

PMID: 36139426 PMC: 9497093. DOI: 10.3390/cells11182851.


The potential of oxygen and nitrogen species-regulating drug delivery systems in medicine.

Soltan M, Bartusik-Aebisher D, Aebisher D Front Bioeng Biotechnol. 2022; 10:973080.

PMID: 36110312 PMC: 9468659. DOI: 10.3389/fbioe.2022.973080.


Targeted Cancer Therapy via pH-Functionalized Nanoparticles: A Scoping Review of Methods and Outcomes.

Morarasu S, Morarasu B, Ghiarasim R, Coroaba A, Tiron C, Iliescu R Gels. 2022; 8(4).

PMID: 35448133 PMC: 9030880. DOI: 10.3390/gels8040232.


Multiple stimuli-responsive nanosystem for potent, ROS-amplifying, chemo-sonodynamic antitumor therapy.

Tang J, Zhang X, Cheng L, Liu Y, Chen Y, Jiang Z Bioact Mater. 2022; 15:355-371.

PMID: 35356815 PMC: 8935089. DOI: 10.1016/j.bioactmat.2021.12.002.


CXCL12/CXCR4 Axis-Targeted Dual-Functional Nano-Drug Delivery System Against Ovarian Cancer.

Xue J, Li R, Gao D, Chen F, Xie H Int J Nanomedicine. 2020; 15:5701-5718.

PMID: 32848392 PMC: 7426108. DOI: 10.2147/IJN.S257527.