Resveratrol [RES] is a polyphenolic stilbene with therapeutic potential owing to its antioxidant, anti-inflammatory, neuroprotective, and cardioprotective properties. However, the very poor oral bioavailability, fast metabolism, and extremely low stability under physiological conditions pose a severe detriment to the clinical use of RES. This newly developed field of nanotechnology has led to the formulation of RES into nanoformulations with the goal of overcoming metabolicpharmacokinetic limitations and enhancing the targeted transport of RES to the central nervous system [CNS]. Among the various routes of administration, the combination of nose-to-brain [N2B] delivery via the intranasal [IN] route has recently garnered attention as a straightforward, noninvasive route for transport to the blood-brain barrier [BBB] for greater effects and less harmful systemic side effects by transporting nano-encapsulated RES into the neural tissues. This review critically summarizes the mechanisms and benefits of the N2B route for the delivery of RES nanoformulations, collating in vivo data demonstrating increased CNS bioavailability and stability and, consequently, improved therapeutic efficacy in animal models of neurodegenerative diseases. Compared with the more 'traditional' routes of administration, IN administration of RES nanoformulations is less toxic, cost-effective, and efficient in crossing the BBB. Therefore, this route represents a promising approach to the management of CNS disorders. Further optimization of nanoformulation design and clinical protocols is required to translate these promising findings into therapeutic strategies aimed at neuroprotection and disease modification in human CNS pathologies.
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http://dx.doi.org/10.2174/0115701611337079250115071933 | DOI Listing |
Drug Deliv Transl Res
January 2025
Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, AB, T6G 2E1, Canada.
In this study, a novel inhibitor of ERCC1/XPF heterodimerization, A4, was used as an inhibitor of repair for DNA damage by platinum-based chemotherapeutics. Nano-formulations of A4 were developed, using self-assembly of the following block copolymers: methoxy-poly(ethylene oxide)-block-poly(α-benzyl carboxylate-ε-caprolactone) (PEO-b-PBCL), methoxy-poly(ethylene oxide)-block-poly(ε-caprolactone) (PEO-b-PCL), or methoxy-poly(ethylene oxide)-block-poly (D, L, lactide) (PEO-b-PDLA 50-50). The nano-formulations were characterized for their average diameter, polydispersity, morphology, A4 encapsulation and in vitro release.
View Article and Find Full Text PDFCurr Vasc Pharmacol
January 2025
Department of Neuroscience, Faculty of Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.
Resveratrol [RES] is a polyphenolic stilbene with therapeutic potential owing to its antioxidant, anti-inflammatory, neuroprotective, and cardioprotective properties. However, the very poor oral bioavailability, fast metabolism, and extremely low stability under physiological conditions pose a severe detriment to the clinical use of RES. This newly developed field of nanotechnology has led to the formulation of RES into nanoformulations with the goal of overcoming metabolicpharmacokinetic limitations and enhancing the targeted transport of RES to the central nervous system [CNS].
View Article and Find Full Text PDFArch Dermatol Res
January 2025
Research Center for NonCommunicable Diseases, Jahrom University of Medical Sciences, Jahrom, Iran.
Skin cancer is the commonest malignancy for the population. Conventional skin cancer treatments include chemotherapy and surgery, but a large number of the chemotherapeutic drugs applied currently have undesirable possessions. The aim of this study is to provide a complete and acute assessment of the antitumor capability of gold nano-formulations in skin cancer as a new and more effectual delivery system for targeted therapy.
View Article and Find Full Text PDFJ Adv Res
December 2024
Longping Branch, College of Biology, Hunan University, Changsha 410125, China; Yuelushan Laboratory, Changsha 410082, China; Key Laboratory of Pesticide Assessment, Ministry of Agriculture and Rural Affairs, Hunan Academy of Agricultural Sciences, Changsha 410125, China. Electronic address:
Introduction: Conventional pesticide formulations have been widely used to boost agricultural productivity, but their weak foliar adhesion and instability under UV light during spraying lead to low utilization rates and potential environmental and health hazards. To counter these challenges, the development of nanoformulations represents a pivotal strategy. These advanced formulations are designed to enhance the efficacy of active ingredients (AIs) and reduce ecological impacts, thereby addressing the need for sustainable agricultural development.
View Article and Find Full Text PDFNat Prod Res
December 2024
Phytochemistry Department, Medicinal Plants and Drugs Research Institute, Shahid Beheshti University, G. C, Tehran, Iran.
Plant-based nano-insecticides like provide eco-friendly pest control with low resistance risk. This study aimed to evaluate the insecticidal activity of the FeO @Carbon nanoformulation of extract with a carbon shell and pure extract against (eggs and larvae), a significant potato pest in Iran. A modified solvothermal method produced highly water-dispersible magnetite (FeO) particles, with citrate as a stabilising agent.
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