2019
DOI: 10.1080/10837450.2019.1619183
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Preparation and characterization of insulin chitosan-nanoparticles loaded in buccal films

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Cited by 46 publications
(35 citation statements)
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“…Furthermore, chitosan oligosaccharide has been applied for drug delivery system in diabetes. For instance, chitosan-microcapsulated insulin, chitosan-stabilized selenium nanoparticles, chitosan encapsulated resveratrol, chitosan coating of TiO 2 nanotube arrays for metformin, chitosan nanoparticle and chitosan hydrogel were used for improving diabetic therapy [134][135][136][137][138][139][140][141][142]. Interestingly, the development of chitosan oligosaccharide as a drug or supplement for diabetic treatment has been studied for a decade.…”
Section: Endocrinological Diseases and Diabetes Mellitusmentioning
confidence: 99%
“…Furthermore, chitosan oligosaccharide has been applied for drug delivery system in diabetes. For instance, chitosan-microcapsulated insulin, chitosan-stabilized selenium nanoparticles, chitosan encapsulated resveratrol, chitosan coating of TiO 2 nanotube arrays for metformin, chitosan nanoparticle and chitosan hydrogel were used for improving diabetic therapy [134][135][136][137][138][139][140][141][142]. Interestingly, the development of chitosan oligosaccharide as a drug or supplement for diabetic treatment has been studied for a decade.…”
Section: Endocrinological Diseases and Diabetes Mellitusmentioning
confidence: 99%
“…Nanoparticulate dosage forms differ from conventional dosage forms by loading the drug or active compound into nanoparticles prior to dispersion in a formulation base. They have been incorporated into various dosage forms for sublingual and buccal drug delivery, including gels (Marques et al, 2017), sprays (Baltzley et al, 2018), tablets (Gavin et al, 2015; El-Nahas et al, 2017), films (Giovino et al, 2013; Mortazavian et al, 2014; Al-Dhubiab et al, 2016; Masek et al, 2017; Castro et al, 2018a; Mahdizadeh Barzoki et al, 2018; Al-Nemrawi et al, 2019), and patches (Mahdizadeh Barzoki et al, 2016). These nanoparticulate formulations have been shown to: (i) improve drug permeability across the epithelium; (ii) modify drug release kinetics (e.g., controlled release or sustained release); (iii) provide solubilization (i.e., to deliver compounds which have physicochemical properties that strongly limit their aqueous solubility); and/or (iv) protect compounds that are sensitive to degradation (e.g., peptides) (Morales and Brayden, 2017; Hua et al, 2018).…”
Section: Nanoparticulate Drug Delivery Approachesmentioning
confidence: 99%
“…The majority of the studies have demonstrated sustained drug release from the nanoparticles embedded in the dosage form, with the drug then being diffused into the formulation base and absorbed into the adhered mucosa. These include nanoparticles incorporated into gels (Marques et al, 2017), sprays (Baltzley et al, 2018), tablets (Gavin et al, 2015; El-Nahas et al, 2017), films (Giovino et al, 2013; Mazzarino et al, 2014; Mortazavian et al, 2014; Al-Dhubiab et al, 2016; Masek et al, 2017; Castro et al, 2018a; Mahdizadeh Barzoki et al, 2018; Al-Nemrawi et al, 2019), and patches (Mahdizadeh Barzoki et al, 2016). Very few studies have demonstrated release of nanoparticles from the formulation base and mucosal penetration of intact nanoparticles for drug delivery (Mortazavian et al, 2014; Masek et al, 2017).…”
Section: Nanoparticulate Drug Delivery Approachesmentioning
confidence: 99%
“…Chitosan nanoparticles were prepared as described in previous publications [21,22]. Then, 8 mg of chitosan nanoparticles were dissolved in 4 mL of an aqueous solution of acetic acid (1% v/v) and the pH value of the resulting solution was 3.4.…”
Section: Preparation Of Insulin-loaded Chitosan Nanoparticles Ins-csnpsmentioning
confidence: 99%