Published September 2020 | Version v1
Miscellaneous

Poly(vinyl alcohol) and functionalized ionic liquid-based smart hydrogels for doxorubicin release

  • 1. Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow (United Kingdom)
  • 2. Applied Chemistry Department, S.V. National Institute of Technology, Surat, Gujarat (India)

Description

Full text: Limitations associated with the traditional cancer therapies prompt the scientific community to develop effective, safer, smarter, and targeted drug carriers that improve the efficiency of the drug carrier, reduce the adverse effects of the drug on the healthy cells, and help in preventing the cancer recurrences. This research aims to design a stimuli-responsive, self-healable, adhesive, and injectable polymeric hydrogel with an ester-functionalized ionic liquid as one of the additives to improve the efficiency of the anticancer drug in encapsulation and localized delivery. The designed polymeric hydrogel responds to intracellular biological stimuli (e.g., acidic pH of cancerous cells and temperature), changes the morphology through changing the shape and size of the gelator within the hydrogel matrix, and releases encapsulated doxorubicin (DOX) at the tumor site efficiently. Molecular interactions, gel morphology, and mechanical strength of the hydrogel were characterized through various analytical techniques, including small-angle neutron scattering. Adhesive properties of the polymeric hydrogel were measured by lap-shear strength tests and the biocompatibility and cellular drug uptake study on human breast cancer (MCF-7) and human cervical carcinoma cells (HeLa). The in vitro cytotoxicity and drug release study showed that the hybrid hydrogel is more effective at killing the cancerous cells, and the targeted release of DOX occurred at intracellular acidic pH. The polymeric hydrogel provides an efficient therapeutic approach for the encapsulation and release of the drug. Overall, the study offers a proof of concept to test the feasibility of the hydrogel system whether the hydrogel formulation helped or hindered the total cellular DOX trafficking. (author)

Part of:
Neutron Scattering Symposium 2020. Abstract Booklet

Additional details

Publishing Information

Imprint Title
Neutron Scattering Symposium 2020. Abstract Booklet
Imprint Pagination
125 p.
Journal Page Range
p. 84
Report number
INIS-AU--0102

Conference

Title
ANBUG AINSE Neutron Scattering Symposium - Virtual Meeting
Acronym
AANSS 2020
Dates
11-13 Sep 2020
Place
Lucas Heights, NSW (Australia)

INIS

Country of Publication
Australia
Country of Input or Organization
Australia
INIS RN
52106095
Subject category
S36: MATERIALS SCIENCE; S60: APPLIED LIFE SCIENCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
BIOLOGICAL FUNCTIONS; DRUG DELIVERY; HYDROGELS; MECHANICAL PROPERTIES; MOLTEN SALTS; MORPHOLOGY; NEOPLASMS; SHEAR PROPERTIES; SMALL ANGLE SCATTERING; UPTAKE
Descriptors DEC
COLLOIDS; DISEASES; DISPERSIONS; GELS; MECHANICAL PROPERTIES; SALTS; SCATTERING

Optional Information