72 citations
,
December 2012 in “Expert Opinion on Drug Delivery” This review discusses niosomes' increasing popularity in dermatology for topical drug delivery due to their ability to enhance drug penetration, provide sustained release, and carry various drugs, while reporting no new clinical findings.
56 citations
,
January 2007 in “Pharmaceutical Development and Technology” This study found that finasteride-loaded liposomal formulations achieved significantly higher skin permeation and deposition compared to conventional gels and solutions, suggesting potential for effective topical application.
33 citations
,
February 2021 in “Advanced Pharmaceutical Bulletin” This article explains the preparation methods and applications for various vesicle and particle systems used in transdermal drug delivery, highlighting their effectiveness and potential for further development in this field.
28 citations
,
January 2017 in “Critical Reviews in Therapeutic Drug Carrier Systems” This review classifies engineered nanomaterials by composition and application in biomedicine, highlighting diverse uses like regenerative medicine and potential occupational side effects, but reports no new clinical results.
24 citations
,
October 2022 in “Revista Brasileira de Farmacognosia” This review discusses the pharmacological actions of mangiferin and the potential of delivery carriers to overcome its limitations, but reports no new clinical results.
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.
15 citations
,
October 2020 in “European journal of pharmaceutics and biopharmaceutics” This study reported that combining microdialysis and selective follicular closure with varnish significantly reduces caffeine penetration through hair follicles in an ex vivo porcine ear skin model.
13 citations
,
February 2019 in “Journal of Microencapsulation” This study focused on designing a niosome formulation that encapsulates pumpkin seed oil for topical use, achieving high entrapment efficiency and stability over three months.
6 citations
,
July 2009 in “Biomolecules & therapeutics” This study found that combining MSM with MAP significantly enhanced hair growth in mice, comparable to or better than minoxidil, due to increased intradermal retention of MAP.
2 citations
,
August 2019 in “International Journal of Applied Pharmaceutics” This study explored the use of SOD-loaded niosomes as carriers to enhance the delivery of superoxide dismutase into hair follicles on guinea pig skin, finding that niosomes improved SOD penetration and preservation compared to free SOD, suggesting their potential as effective delivery vehicles.
1 citations
,
May 2025 in “Discover Chemistry.” This review highlights that although mangiferin, a polyphenol from the mango tree, faces challenges like low solubility and bioavailability, delivery vehicles such as nanoparticles and complexes have the potential to enhance its therapeutic effectiveness in treating various diseases.
This study reported that pentoxifylline-loaded liposomes, optimized using a statistical design method, achieved a maximum encapsulation efficiency of 84.23% and a controlled 72-hour drug release, potentially improving therapeutic delivery of the drug with limited bioavailability.
November 2024 in “International Journal of Research and Review” This review explores the application of nanotechnology in cosmetics, highlighting its role in enhancing skin penetration, sustaining drug action, and protecting against UV radiation, while also addressing regulatory considerations and potential exposure routes.
October 2023 in “Journal of Drug Delivery and Therapeutics” This study evaluated niosome-based gels for delivering salicylic acid topically to treat acne vulgaris and found that the formulation SANG5, using Carbopol 940 and nutmeg oil, demonstrated the best drug release profile.
32 citations
,
November 2004 in “Journal of pharmaceutical sciences” This study quantifies the follicular uptake of tea tree oil in bovine udder skin, with microemulsion showing the highest concentration among different formulations tested.
3 citations
,
October 2024 in “World Journal of Advanced Research and Reviews” This review highlighted the potential of silver nanoparticles' antibacterial properties across biomedical, pharmaceutical, and dental applications, and emphasized plant-based biosynthesis methods as eco-friendly alternatives to conventional nanoparticle production despite existing toxicity concerns.
268 citations
,
April 2009 in “International Journal of Pharmaceutics” In this study, niosomal formulations enhanced minoxidil skin accumulation compared to commercial and control solutions, suggesting a potential improvement for topical delivery in hair loss treatment.
151 citations
,
November 2018 in “International Journal of Pharmaceutics” This review discusses various nanoparticles and nanoemulsions being investigated for transdermal drug delivery and reports no clinical results; it highlights potential applications in treating alopecia, wound healing, psoriasis, and melanoma.
127 citations
,
June 2006 in “International Journal of Pharmaceutics” This research found that liquid-state liposomes and niosomes may enhance finasteride delivery to pilosebaceous units in hamsters more effectively than gel-state vesicles or hydroalcoholic solution.
101 citations
,
January 1997 in “Journal of Investigative Dermatology Symposium Proceedings” This review discusses neural mechanisms involved in hair growth control, focusing on piloneural interactions, but reports no clinical findings; the authors suggest further exploration for managing hair growth disorders.
82 citations
,
January 2002 in “Journal of drug targeting” This study found that drug delivery through human scalp skin may be more effective for lipophilic and hydrophilic drugs compared to abdominal skin, highlighting the potential of intrafollicular delivery methods.
68 citations
,
March 2002 in “Journal of pharmaceutical sciences” This study found that nonionic liposomes were the most effective vehicle for delivering reporter genes into the skin of rat pups, compared to other liposome and nonliposome formulations.
54 citations
,
October 2002 in “Journal of controlled release” This study found that increasing a drug's lipophilicity and adding ethanol to the donor phase can enhance its delivery to the hair follicle, although the precise transport mechanism remains unclear.
51 citations
,
May 2010 in “Journal of Drug Targeting” This study found that Transcutol-containing vesicles improved the delivery of minoxidil to deeper skin layers in vitro but did not facilitate its permeation through the skin.
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.
39 citations
,
November 2013 in “European journal of pharmaceutics and biopharmaceutics” This study found that massaging the skin significantly increases follicular penetration of liposomes in an ex vivo setting, while occlusion only enhanced penetration for rigid liposomes.
39 citations
,
November 2015 in “Nanomedicine” This study found that the developed Finasteride-loaded SMEDDS improved the relative bioavailability of the drug compared to a commercial tablet, offering a promising oral delivery system for glucosteroid analogs.
34 citations
,
October 2021 in “Scientific Reports” This study found that nobiletin-loaded vesicles effectively restored skin condition in a mouse model of skin cancer, suggesting they are a promising treatment delivery system.
34 citations
,
March 2004 in “Journal of Liposome Research” This study found that neutral liposomes were most effective at delivering minoxidil into pilosebaceous units compared to other tested formulations.
27 citations
,
August 2018 in “Therapeutic Delivery” In this study, researchers reviewed recent advances in using nanoencapsulation technology to improve the pharmacological treatment of alopecia, suggesting its potential to enhance drug delivery and reduce adverse effects compared to conventional methods.