15 citations
,
December 2016 in “Advanced Pharmaceutical Bulletin” This study found that N-acetyl-glucosamine-loaded nanostructured lipid carriers showed promise for skin lightening in healthy volunteers by reducing melanin distribution.
7 citations
,
October 2017 in “Artificial Cells Nanomedicine and Biotechnology” This research observed that finasteride-loaded ethosomes showed improved permeation across rat skin and human cadaver scalp skin compared to unencapsulated finasteride, potentially enhancing delivery to hair follicle units.
1 citations
,
November 2024 in “Pharmaceutical Sciences” This review study found that vesicular carriers like liposomes, niosomes, invasomes, and transferosomes can enhance drug penetration through follicles, benefiting treatments for alopecia, acne, and infections, as well as potentially facilitating systemic delivery of antihypertensive drugs and insulin.
May 2026 in “AAPS PharmSciTech” This study found that PEGylated LUT-Aspasomes significantly improved neuroprotective effects in stressed rats, enhancing spatial memory, reducing depressive-like behavior, and preserving hippocampal architecture better than free luteolin. Additionally, it increased brain delivery and stability, suggesting potential for treating stress-related neurobehavioral disorders.
April 2026 in “Trends in biotechnology” This review explores the potential of nanozymes as artificial enzymes with diverse applications but highlights the need for more research into their mechanisms, safety, and scalability before they can be effectively translated into clinical use.
47 citations
,
September 2015 in “Journal of Drug Delivery Science and Technology” This article reviews various strategies, primarily developed by the Turin University Pharmaceutical Technology group, for increasing entrapment efficiency of hydrophilic molecules in nanoparticulate systems and reports no clinical results.
September 2024 in “International Journal of Pharmaceutical Quality Assurance” This review outlines the potential of nanoemulsion-based hydrogels (nanoemulgels) for enhanced topical and transdermal drug delivery in treating skin disorders, highlighting their ability to improve therapeutic efficacy, control drug release, and boost patient compliance.
13 citations
,
October 2012 in “InTech eBooks” Nanocarriers could improve how drugs are delivered through the skin but require more research to overcome challenges and ensure safety.
8 citations
,
January 2019 in “Nanomedicine” This commentary reviews the application of pharmaceutical nanotechnology in Egypt, highlighting promising developments and diverse drug-delivery approaches, but reports no new research findings.
January 2016 in “Universitätsbibliothek der FU Berlin Hochschulschriftenstelle u. Dokumentenserver” This study found that novel biodegradable nanocarriers with highly hydrophobic cores significantly increased the solubility and sustained release of hydrophobic drugs and dyes, showing promise for drug delivery applications.
September 2025 in “Institutional Repositories DataBase (IRDB)” The nanoemulsion system effectively delivers drugs through the skin and shows promise for treating skin conditions.
1 citations
,
January 2024 in “Journal of molecular structure” This study developed a new finasteride release system using chitosan-based nanoniosomes, observing that 70% of the drug was released over ten days in vitro, suggesting potential for prostate cancer prevention.
17 citations
,
June 2021 in “Molecules” This review summarizes the promising role of melatonin combined with nanosized carriers in drug delivery, suggesting enhanced effectiveness in treating various diseases compared to free melatonin.
9 citations
,
October 2018 in “Elsevier eBooks” This article discusses how challenges in drug development and success rates are driving a shift in the pharmaceutical industry towards engineering targeted drug delivery systems, with nanomaterials offering potential solutions for selective therapeutic delivery.
4 citations
,
March 2023 in “IP International Journal of Comprehensive and Advanced Pharmacology” This study explored the development of a self nanoemulsifying drug delivery system to enhance the solubility and oral bioavailability of exemestane HCl for breast cancer therapy.
15 citations
,
October 2012 in “InTech eBooks” Niosomes are a promising and effective way to deliver drugs through the skin.
February 2024 in “Pharmaceutics” This review discusses the applications and potential of microneedles loaded with extracellular vesicles for tissue regenerative repair and disease diagnosis, but does not report new experimental findings.
20 citations
,
January 2022 in “REVIEWS ON ADVANCED MATERIALS SCIENCE” This review explores how nanoparticles enhance cosmeceutical formulations, analyzing their roles in transporting active ingredients, and highlights the progress and challenges in using nanotechnology for beauty and health products.
1 citations
,
January 2007 in “Zhōnghuá yàoxué zázhì” In this study, ethosomes were more effective than liposomes for delivering finasteride through human skin, showing higher transdermal flux and accumulation, especially in deeper skin layers.
6 citations
,
May 2023 in “European journal of pharmaceutical sciences” This study found that niosomes significantly enhanced the skin deposition of retinoic acid while reducing its permeation, outperforming other tested nanoformulations.
12 citations
,
January 2018 in “Acta pharmaceutica sciencia” This study highlights that solid lipid nanoparticles may improve the absorption and bioavailability of poorly soluble drugs, offering advantages over conventional formulations for various administration routes.
This study developed a personalized microneedle that delivers finasteride directly to the skin, facilitating a sustained release and potentially reducing side effects associated with oral administration.
30 citations
,
December 2019 in “PLoS ONE” This study found that formulating raloxifene in nano-lipid carriers significantly enhanced its permeation and cytotoxicity against cancer cells compared to raw raloxifene.
19 citations
,
September 2020 in “Pharmaceutics” This study investigated a new formula called SV-loaded nanospanlastics for topical application to treat androgenic alopecia. It showed similar effectiveness to minoxidil lotion but with fewer adverse effects when used to enhance dermal delivery and efficacy of sodium valproate.
10 citations
,
May 2021 in “Expert Opinion on Drug Delivery” This study found that CoQ10 formulated in transethosomes showed improved penetration and a better clinical response in treating androgenic alopecia compared to CoQ10 solution.
2 citations
,
January 2024 in “Pakistan Journal of Life and Social Sciences (PJLSS)” This study examines the use of emulgel-based systems as drug delivery vehicles for hydrophobic medications, noting their potential benefits in dermatological applications due to properties like easy spreadability, non-greasy texture, and prolonged shelf life.
May 2026 in “International Journal of Drug Delivery Technology” This review highlights that nanotechnology enhances the solubility, stability, and bioavailability of phytochemicals from medicinal plants, improving their therapeutic efficiency in disease models like cancer and infections. However, it indicates that further research is necessary to optimize formulations and ensure safety for clinical use.
26 citations
,
January 2024 in “Gels” This review highlights advancements in nanoemulgel platforms for topical and transdermal drug delivery, noting their improved safety and efficacy over conventional treatments in in vitro and in vivo studies, specifically for conditions like skin diseases and inflammatory issues.
41 citations
,
November 2024 in “Molecular Biomedicine” This review discusses the mechanisms and engineering techniques for enhancing the targeted delivery of extracellular vesicles in therapies but reports no new clinical findings; the authors encourage further exploration to advance clinical applications.
36 citations
,
August 2020 in “Polymers” The researchers developed semi-dissolving microneedle patches using TEMPO-oxidized bacterial cellulose nanofibers, which allow effective transdermal drug delivery by forming micro-channels for large drug quantities, overcoming traditional microneedles' low drug loading.