An Overview on Nanoparticle-Enabled Wound Dressing Patch
Author(s):
Nisha Thakre
Keywords:
Nanoparticles, TDDS, Microneedles, Transdermal patches, Wound healing patch.
Abstract
The word "nanoscale" refers to particle sizes ranging from 1 to 100 nanometers; however nanoparticles in the range of 50 to 500 nanometers are suitable for medication delivery depending on the route of administration. The way a medication is administered can have a big impact on its effectiveness. When topical, regional, or systemic effects are required, the skin has long been a popular route for drug administration. Because of electrostatic interactions, nanoparticles have a strong affinity for biological membranes. Some studies have discovered that surface charge has an impact on membrane permeability, for example, the polymer charge density of dendrimers has been found to have a substantial impact on membrane permeability. Nanoparticles (NPs), which have the potential to improve medication penetration over the skin, have been used in recent developments in TDDS. NPs can also offer controlled release, administer both hydrophilic and hydrophobic medicines, and decrease adverse effects, and they are non-invasive when employed in a TDDS manner. Skin patches with microneedles are another emerging technique for TDDS. New studies have focused on incorporating two TDDS techniques to overcome the limitations of traditional drug delivery systems. Loaded nanoparticles are used to create the structures, which may also be used to make patches and wound healing materials. The goal of this review paper is to show how such patches and wound dressings may be processed in new ways.
Article Details
Unique Paper ID: 152709

Publication Volume & Issue: Volume 8, Issue 4

Page(s): 121 - 130
Article Preview & Download


Share This Article

Join our RMS

Conference Alert

NCSEM 2024

National Conference on Sustainable Engineering and Management - 2024

Last Date: 15th March 2024

Call For Paper

Volume 10 Issue 10

Last Date for paper submitting for March Issue is 25 June 2024

About Us

IJIRT.org enables door in research by providing high quality research articles in open access market.

Send us any query related to your research on editor@ijirt.org

Social Media

Google Verified Reviews