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      Fabrication and characterization of electrospun nanofibers using biocompatible polymers for the sustained release of venlafaxine

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          Abstract

          Recently, drug-controlled release nanotechnology has gained special attention in biomedicine. This work focuses on developing novel electrospun polymeric nanofibers (NFs) for buccal delivery of VEN to avoid the hepatic metabolism and enzymatic degradation in the GIT and develop an effective control of drug release. The optimized NFs were obtained by blending polylactic acid (PLA), and poly (ɛ-caprolactone) (PCL) fixed at a ratio of 1:1. It was characterized for morphology, drug-loading, FTIR, XRD, DSC, and in vitro drug release. Ex vivo permeability of the blend NFs was assessed using chicken pouch mucosa compared to VEN suspension, followed by histopathological examination. Further, the cytotoxic effect in three different cell lines using WST-1 assay. SEM morphologies refer to defect-free uniform NFs of PLA, PCL, and PLA/PCL mats. These fibers had a diameter ranging from 200 to 500 nm. The physico-thermal characterization of NFs depicted that the drug was successfully loaded and in an amorphous state in the PLA/PCL NFs. In vitro release of NFs substantiated a bi-phasic profile with an initial burst release of about 30% in the initial 0.5 h and a prolonged cumulative release pattern that reached 80% over 96 h following a non-Fickian diffusion mechanism. Ex vivo permeation emphasizes the major enhancement of the sustained drug release and the noticeable decrease in the permeability of the drug from NFs. Cytotoxicity data found that IC 50 of VEN alone was 217.55 μg/mL, then VEN-NFs recorded an IC 50 value of 250.62 μg/mL, and plain NFs showed the lowest toxicity and IC 50 440.48 μg/mL in oral epithelial cells (OEC). Histopathology and cell toxicity studies demonstrated the preserved mucosal architecture and the preclinical safety. The developed PLA/PCL NFs can be promising drug carriers to introduce a step-change in improved psychiatric treatment healthcare.

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          Role of chain entanglements on fiber formation during electrospinning of polymer solutions: good solvent, non-specific polymer–polymer interaction limit

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            Electrospinning jets and polymer nanofibers

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              Fusion partner toolchest for the stabilization and crystallization of G protein-coupled receptors.

              Structural studies of human G protein-coupled receptors (GPCRs) have recently been accelerated through the use of a fusion partner that was inserted into the third intracellular loop. Using chimeras of the human β(2)-adrenergic and human A(2A) adenosine receptors, we present the methodology and data for the initial selection of an expanded set of fusion partners for crystallizing GPCRs. In particular, use of the thermostabilized apocytochrome b(562)RIL as a fusion partner displays certain advantages over previously utilized fusion proteins, resulting in a significant improvement in stability and structure of GPCR-fusion constructs. Copyright © 2012 Elsevier Ltd. All rights reserved.
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                Author and article information

                Contributors
                hebamaher89@mans.edu.eg
                saadsmhassan@yahoo.com
                Journal
                Sci Rep
                Sci Rep
                Scientific Reports
                Nature Publishing Group UK (London )
                2045-2322
                27 October 2022
                27 October 2022
                2022
                : 12
                : 18037
                Affiliations
                [1 ]GRID grid.10251.37, ISNI 0000000103426662, Pharmaceutical Analytical Chemistry Department, Faculty of Pharmacy, , Mansoura University, ; Mansoura, 35516 Egypt
                [2 ]GRID grid.10251.37, ISNI 0000000103426662, Pharmaceutics Department, Faculty of Pharmacy, , Mansoura University, ; Mansoura, 35516 Egypt
                [3 ]GRID grid.7269.a, ISNI 0000 0004 0621 1570, Chemistry Department, Faculty of Science, , Ain Shams University, ; Abbasia, 11566 Cairo Egypt
                [4 ]GRID grid.413060.0, ISNI 0000 0000 9957 3191, Chemistry Department, College of Science, , Bahrain University, ; Sakhir, 32038 Bahrain
                [5 ]GRID grid.10251.37, ISNI 0000000103426662, Chemistry Department, Faculty of Science, , Mansoura University, ; Mansoura, 35516 Egypt
                Article
                22878
                10.1038/s41598-022-22878-7
                9614003
                36302929
                8b98604f-f70a-4e14-b6fb-f91f41b83aa1
                © The Author(s) 2022

                Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.

                History
                : 5 May 2022
                : 20 October 2022
                Funding
                Funded by: Mansoura University
                Categories
                Article
                Custom metadata
                © The Author(s) 2022

                Uncategorized
                drug discovery,chemistry,materials science
                Uncategorized
                drug discovery, chemistry, materials science

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