A review on wound dressings: Antimicrobial agents, biomaterials, fabrication techniques, and stimuli-responsive drug release

E Naseri, A Ahmadi - European Polymer Journal, 2022 - Elsevier
Skin, the largest organ of the body, protects the inner organs against the ambient
environment, and it is prone to internal and external injuries in the form of wounds. The …

Electroconductive multi-functional polypyrrole composites for biomedical applications

EN Zare, T Agarwal, A Zarepour, F Pinelli… - Applied Materials …, 2021 - Elsevier
Polypyrrole is an example of inherently electrically conductive polymer that is employed in
the biomedical arena because of its low cost, excellent electroconductive properties, and …

[HTML][HTML] Electropolymerized polypyrrole silver nanocomposite coatings on porous Ti substrates with enhanced corrosion and antibacterial behavior for biomedical …

C García-Cabezón, V Godinho… - Materials Today …, 2023 - Elsevier
This work proposes an innovative strategy that combines two well-known easy and
economical preparation techniques: powder metallurgy based space-holder (SH) technique …

[HTML][HTML] Stimuli-responsive chitosan-based nanocarriers for drug delivery in wound dressing applications: a review

SM Naghib, S Amiri, MR Mozafari - Carbohydrate Polymer Technologies …, 2024 - Elsevier
Wound care poses a significant global challenge, imposing substantial financial strain on
governments across the globe. The exploration of wound dressings (WDs) with the potential …

Electroactive Polymers for On‐Demand Drug Release

ME Alkahtani, M Elbadawi… - Advanced …, 2024 - Wiley Online Library
Conductive materials have played a significant role in advancing society into the digital era.
Such materials are able to harness the power of electricity and are used to control many …

Flexible wearable MXene Ti3C2-Based power patch running on sweat

JV Vaghasiya, CC Mayorga-Martinez, J Vyskočil… - Biosensors and …, 2022 - Elsevier
Flexible supercapacitors (FSCs) have received a lot of interest as portable power sources for
wearable electronics. The biocompatibility of electrodes and electrolytes in wearable FSCs …

Revolutionizing drug delivery and therapeutics: the biomedical applications of conductive polymers and composites-based systems

S Paramshetti, M Angolkar, A Al Fatease… - Pharmaceutics, 2023 - mdpi.com
The first conductive polymers (CPs) were developed during the 1970s as a unique class of
organic substances with properties that are electrically and optically comparable to those of …

[HTML][HTML] Recent development of implantable and flexible nerve electrodes

Y Shi, R Liu, L He, H Feng, Y Li, Z Li - Smart Materials in Medicine, 2020 - Elsevier
Implantable electrical devices offer a variety of potential diagnostic options and treatments in
different medical fields. Especially in the absence of specific drugs, the implantable nerve …

Rapid and High-Density Antibody Immobilization Using Electropolymerization of Pyrrole for Highly Sensitive Immunoassay

US Nam, HN Suh, SK Sung, CW Seo… - … Applied Materials & …, 2024 - ACS Publications
Polypyrrole (Ppy) is a biologically compatible polymer that is used as a matrix, in which
drugs and enzymes can be incorporated by do**. Here, we suggest an inventive …

Conducting Polymers for In Situ Drug Release Triggered via Electrical Stimulus

A Pérez-Nava, JB González-Campos… - ACS Applied Polymer …, 2024 - ACS Publications
Conducting polymers (CPs) are a unique type of polymer that exhibit metal-like features.
Their ability to undergo reversible redox conversion, in addition to their optical and …