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      Development of novel mucoadhesive gels containing nanoparticle for buccal administration of dexamethasone

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          Abstract

          Abstract This study aimed to develop promising and innovative mucoadhesive gel systems containing dexamethasone-loaded nanoparticle to increase the effectiveness of treatment for oral precancerous lesions and to reduce side effects. In this respect, a dexamethasone-loaded nanoparticle formulation was prepared by using emulsification/solvent evaporation method. The nanoparticle has high zeta potential (-10.3±0.5 mV), low particle size (218.42±2.1), low polydispersity index (0.070±0.014) and high encapsulation efficiency (95.018±2.982%). To improve the mucosal retention time, the dexamethasone-loaded nanoparticle was dispersed in mucoadhesive gel using gellan gum. The developed gels offered appropriate pH value, high drug content, suitable mechanical and mucoadhesive performance and appropriate viscosity for mucosal administration. All formulations exhibited plastic flow and typical gel-type mechanical spectra after the determined frequency value. The developed formulations exhibited extended drug release as intended for these systems. Cytotoxicity was tested by MTT assay in human epithelioid carcinoma cell (HeLa) in vitro. The MTT assay showed that the blank formulations were non-toxic to cells. It was observed that the bioactivity of the free dexamethasone was potentiated by mucoadhesive gels containing dexamethasone-loaded nanoparticle in HeLa cells. Results from this study indicate that mucoadhesive gels are effective for the local treatment of precancerous lesions. Our findings showed that the developed formulations were worthy of further studies.

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          Most cited references76

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          Rapid colorimetric assay for cellular growth and survival: Application to proliferation and cytotoxicity assays

          A tetrazolium salt has been used to develop a quantitative colorimetric assay for mammalian cell survival and proliferation. The assay detects living, but not dead cells and the signal generated is dependent on the degree of activation of the cells. This method can therefore be used to measure cytotoxicity, proliferation or activation. The results can be read on a multiwell scanning spectrophotometer (ELISA reader) and show a high degree of precision. No washing steps are used in the assay. The main advantages of the colorimetric assay are its rapidity and precision, and the lack of any radioisotope. We have used the assay to measure proliferative lymphokines, mitogen stimulations and complement-mediated lysis.
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            Nanoparticle-based targeted drug delivery.

            Nanotechnology could be defined as the technology that has allowed for the control, manipulation, study, and manufacture of structures and devices in the "nanometer" size range. These nano-sized objects, e.g., "nanoparticles", take on novel properties and functions that differ markedly from those seen from items made of identical materials. The small size, customized surface, improved solubility, and multi-functionality of nanoparticles will continue to open many doors and create new biomedical applications. Indeed, the novel properties of nanoparticles offer the ability to interact with complex cellular functions in new ways. This rapidly growing field requires cross-disciplinary research and provides opportunities to design and develop multifunctional devices that can target, diagnose, and treat devastating diseases such as cancer. This article presents an overview of nanotechnology for the biologist and discusses the attributes of our novel XPclad((c)) nanoparticle formulation that has shown efficacy in treating solid tumors, single dose vaccination, and oral delivery of therapeutic proteins.
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              A simple equation for description of solute release II. Fickian and anomalous release from swellable devices

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                Author and article information

                Journal
                bjps
                Brazilian Journal of Pharmaceutical Sciences
                Braz. J. Pharm. Sci.
                Universidade de São Paulo, Faculdade de Ciências Farmacêuticas (São Paulo, SP, Brazil )
                2175-9790
                2022
                : 58
                : e20041
                Affiliations
                [1] Izmir orgnameIzmir Katip Celebi University orgdiv1Faculty of Pharmacy orgdiv2Department of Pharmaceutical Technology Turkey
                [3] Izmir orgnameEge University orgdiv1Faculty of Pharmacy orgdiv2Department of Pharmaceutical Technology Turkey
                [2] Izmir orgnameIzmir Katip Celebi University orgdiv1Faculty of Pharmacy orgdiv2Department of Biochemistry Turkey
                Article
                S1984-82502022000100708 S1984-8250(22)05800000708
                10.1590/s2175-97902022e20041
                ace707ec-2c93-4b9e-af7a-c9c111a7c119

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 19 March 2020
                : 30 November 2020
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 76, Pages: 0
                Product

                SciELO Brazil

                Categories
                Article

                Cell culture,Dexamethasone,Gellan gum,Mucoadhesive gel,Oral precancerous lesions

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