Electrospun nanofibers for drug delivery applications: Methods and mechanism DOI

Meera Moydeen Abdulhameed,

M. Syed Ali Padusha,

Badr M. Thamer

et al.

Polymers for Advanced Technologies, Journal Year: 2022, Volume and Issue: 34(1), P. 6 - 23

Published: Oct. 4, 2022

Abstract Electrospinning procedures such as blend electrospinning, coaxial and emulsion electrospinning have been used for the fabrication of electrospun nanofibers (ENFs) biomedical applications. These ENFs are attracted great interest especially in drug delivery applications due to their small size, high surface area‐to‐volume, porosity. The aim this review is focus on controlled release mechanism among different methods, selectivity hydrophilic, water‐soluble polymers a carrier drug. depends mainly method loading, polymeric interactions, nature polymer swelling, erosion, or degradation. This compressed literature survey about by factors affecting nanofiber morphologies, blends successful behavior, involved steps.

Language: Английский

Drug delivery systems for RNA therapeutics DOI Open Access
Kalina Paunovska, David Loughrey, James E. Dahlman

et al.

Nature Reviews Genetics, Journal Year: 2022, Volume and Issue: 23(5), P. 265 - 280

Published: Jan. 4, 2022

Language: Английский

Citations

812

Recent advances in transdermal drug delivery systems: a review DOI Creative Commons

Woo Yeup Jeong,

Mina Kwon,

Hye Eun Choi

et al.

Biomaterials Research, Journal Year: 2021, Volume and Issue: 25(1)

Published: Feb. 12, 2021

Various non-invasive administrations have recently emerged as an alternative to conventional needle injections. A transdermal drug delivery system (TDDS) represents the most attractive method among these because of its low rejection rate, excellent ease administration, and superb convenience persistence patients. TDDS could be applicable in not only pharmaceuticals but also skin care industry, including cosmetics. Because this mainly involves local it can prevent buildup concentration nonspecific tissues targeted by drug. However, physicochemical properties translate multiple obstacles restrictions delivery, with numerous investigations conducted overcome bottlenecks. In review, we describe different types available methods, along a critical discussion specific advantages disadvantages, characterization potential each method. Progress research on methods has established high efficiency inherent TDDS, which is expected find applications wide range fields.

Language: Английский

Citations

391

Smart nanoparticles for cancer therapy DOI Creative Commons
Leming Sun, Hongmei Liu, Yanqi Ye

et al.

Signal Transduction and Targeted Therapy, Journal Year: 2023, Volume and Issue: 8(1)

Published: Nov. 3, 2023

Abstract Smart nanoparticles, which can respond to biological cues or be guided by them, are emerging as a promising drug delivery platform for precise cancer treatment. The field of oncology, nanotechnology, and biomedicine has witnessed rapid progress, leading innovative developments in smart nanoparticles safer more effective therapy. In this review, we will highlight recent advancements including polymeric dendrimers, micelles, liposomes, protein cell membrane mesoporous silica gold iron oxide quantum dots, carbon nanotubes, black phosphorus, MOF others. We focus on their classification, structures, synthesis, intelligent features. These possess the ability various external internal stimuli, such enzymes, pH, temperature, optics, magnetism, making them systems. Additionally, review explore latest studies tumor targeting functionalizing surfaces with tumor-specific ligands like antibodies, peptides, transferrin, folic acid. also summarize different types options, small molecules, proteins, nucleic acids, even living cells, potential use While is promising, acknowledge challenges clinical prospects associated use. Finally, propose blueprint that involves artificial intelligence-powered treatment applications. By harnessing aims usher new era personalized therapy, providing patients individualized options.

Language: Английский

Citations

366

Advances in drug delivery systems, challenges and future directions DOI Creative Commons
Tobechukwu Christian Ezike, Ugochukwu Solomon Okpala,

Ufedo Lovet Onoja

et al.

Heliyon, Journal Year: 2023, Volume and Issue: 9(6), P. e17488 - e17488

Published: June 1, 2023

Advances in molecular pharmacology and an improved understanding of the mechanism most diseases have created need to specifically target cells involved initiation progression diseases. This is especially true for life-threatening requiring therapeutic agents which numerous side effects, thus accurate tissue targeting minimize systemic exposure. Recent drug delivery systems (DDS) are formulated using advanced technology accelerate specific site, maximizing efficacy minimizing off-target accumulation body. As a result, they play important role disease management treatment. DDS offer greater advantages when compared conventional due their enhanced performance, automation, precision, efficacy. They made nanomaterials or miniaturized devices with multifunctional components that biocompatible, biodegradable, high viscoelasticity extended circulating half-life. review, therefore, provides comprehensive insight into history technological advancement systems. It updates recent systems, applications, challenges associated use, future directions performance use.

Language: Английский

Citations

338

Evolution of drug delivery systems: From 1950 to 2020 and beyond DOI
Haesun Park, Andrew Otte, Kinam Park

et al.

Journal of Controlled Release, Journal Year: 2021, Volume and Issue: 342, P. 53 - 65

Published: Dec. 28, 2021

Language: Английский

Citations

280

Polymeric Nanoparticles for Drug Delivery DOI
Maximilian A. Beach,

Umeka Nayanathara,

Yanting Gao

et al.

Chemical Reviews, Journal Year: 2024, Volume and Issue: 124(9), P. 5505 - 5616

Published: April 16, 2024

The recent emergence of nanomedicine has revolutionized the therapeutic landscape and necessitated creation more sophisticated drug delivery systems. Polymeric nanoparticles sit at forefront numerous promising designs, due to their unmatched control over physiochemical properties such as size, shape, architecture, charge, surface functionality. Furthermore, polymeric have ability navigate various biological barriers precisely target specific sites within body, encapsulate a diverse range cargo efficiently release this in response internal external stimuli. However, despite these remarkable advantages, presence wider clinical application is minimal. This review will provide comprehensive understanding vehicles. affecting be outlined first, followed by description nanoparticle designs preparation methods, beginning with polymers on which they are based. meticulously explore current performance against myriad diseases including cancer, viral bacterial infections, before finally evaluating advantages crucial challenges that determine potential decades come.

Language: Английский

Citations

217

Overcoming barriers to patient adherence: the case for developing innovative drug delivery systems DOI Creative Commons
Tsvetelina Baryakova, Brett H. Pogostin, Róbert Langer

et al.

Nature Reviews Drug Discovery, Journal Year: 2023, Volume and Issue: 22(5), P. 387 - 409

Published: March 27, 2023

Poor medication adherence is a pervasive issue with considerable health and socioeconomic consequences. Although the underlying reasons are generally understood, traditional intervention strategies rooted in patient-centric education empowerment have proved to be prohibitively complex and/or ineffective. Formulating pharmaceutical drug delivery system (DDS) promising alternative that can directly mitigate many common impediments adherence, including frequent dosing, adverse effects delayed onset of action. Existing DDSs already positively influenced patient acceptability improved rates across various disease types. The next generation systems potential instate an even more radical paradigm shift by, for example, permitting oral biomacromolecules, allowing autonomous dose regulation enabling several doses mimicked single administration. Their success, however, contingent on their ability address problems made unsuccessful past. Improving recognized as one most impactful cost-effective improving general population. Here, Baryakova colleagues assess next-generation discuss impact had different

Language: Английский

Citations

185

Magneto‐Responsive Microneedle Robots for Intestinal Macromolecule Delivery DOI
Xiaoxuan Zhang, Guopu Chen, Xiao Fu

et al.

Advanced Materials, Journal Year: 2021, Volume and Issue: 33(44)

Published: Sept. 17, 2021

Abstract Oral administration is the most convenient and commonly used approach for drug delivery, while it still a challenge to overcome complicated gastrointestinal barriers realize efficient macromolecular absorption. Here, novel magneto‐responsive microneedle robots are presented oral delivery of versatile macromolecules. These with three components magnetic substrate, separable connection, tips generated by Lego‐brick‐stacking‐inspired multistage 3D fabrication strategy. With assistance commercial enteric capsule encapsulation, they can be taken orally released when entering small intestine. Benefitting from their polarized orient intestinal wall, barriers, insert into tissue, deliver encapsulated actives under specific fields. Besides, after connection degrades, left inside tissue continuous release, substrate excreted safely. Based on these features, practical values demonstrated using them insulin efficiently regulate blood glucose pigs. It believed that proposed diverse macromolecules thus open new chapter administration.

Language: Английский

Citations

175

Sustainability in peptide chemistry: current synthesis and purification technologies and future challenges DOI Creative Commons
Lucia Ferrazzano, Martina Catani, Alberto Cavazzini

et al.

Green Chemistry, Journal Year: 2022, Volume and Issue: 24(3), P. 975 - 1020

Published: Jan. 1, 2022

Developing greener synthesis processes is an inescapable necessity to transform the industrial landscape, mainly in pharmaceutical sector, into a long-term, sustainable reality.

Language: Английский

Citations

133

Phytosomes as an Emerging Nanotechnology Platform for the Topical Delivery of Bioactive Phytochemicals DOI Creative Commons
Waleed S. Alharbi, Fahad A. Almughem, Alshaimaa M. Almehmady

et al.

Pharmaceutics, Journal Year: 2021, Volume and Issue: 13(9), P. 1475 - 1475

Published: Sept. 15, 2021

The emergence of phytosome nanotechnology has a potential impact in the field drug delivery and could revolutionize current state topical bioactive phytochemicals delivery. main challenge facing translation therapeutic activity to clinical setting is extremely low absorption rate poor penetration across biological barriers (i.e., skin). Phytosomes as lipid-based nanocarriers play crucial function enhancement pharmacokinetic pharmacodynamic properties herbal-originated polyphenolic compounds, make this promising tool for development new formulations. implementation nanosized system enhance due their unique physiochemical characteristics, improving bioavailability. In review, we provide an outlook on knowledge phytoconstituents applications. great emerging reviewed, with particular focus phytosomes innovative nanocarrier. Additionally, compared liposomes gold standard phytochemicals. Finally, advantages applications are discussed.

Language: Английский

Citations

128