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  • Darweesh, Ruba S.  (3)
  • 1
    Online Resource
    Online Resource
    Elsevier BV ; 2022
    In:  Journal of Pharmaceutical Sciences Vol. 111, No. 2 ( 2022-02), p. 485-494
    In: Journal of Pharmaceutical Sciences, Elsevier BV, Vol. 111, No. 2 ( 2022-02), p. 485-494
    Type of Medium: Online Resource
    ISSN: 0022-3549
    Language: English
    Publisher: Elsevier BV
    Publication Date: 2022
    detail.hit.zdb_id: 3151-3
    SSG: 15,3
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  • 2
    In: Polymers, MDPI AG, Vol. 14, No. 20 ( 2022-10-21), p. 4450-
    Abstract: Many recent studies focus on the pulmonary delivery of vaccines as it is needle-free, safe, and effective. Inhaled vaccines enhance systemic and mucosal immunization but still faces many limitations that can be resolved using polymeric nanoparticles (PNPs). This review focuses on the use of properties of PNPs, specifically chitosan and PLGA to be used in the delivery of vaccines by inhalation. It also aims to highlight that PNPs have adjuvant properties by themselves that induce cellular and humeral immunogenicity. Further, different factors influence the behavior of PNP in vivo such as size, morphology, and charge are discussed. Finally, some of the primary challenges facing PNPs are reviewed including formulation instability, reproducibility, device-related factors, patient-related factors, and industrial-level scale-up. Herein, the most important variables of PNPs that shall be defined in any PNPs to be used for pulmonary delivery are defined. Further, this study focuses on the most popular polymers used for this purpose.
    Type of Medium: Online Resource
    ISSN: 2073-4360
    Language: English
    Publisher: MDPI AG
    Publication Date: 2022
    detail.hit.zdb_id: 2527146-5
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  • 3
    Online Resource
    Online Resource
    Bentham Science Publishers Ltd. ; 2023
    In:  Recent Advances in Drug Delivery and Formulation Vol. 17, No. 2 ( 2023-06), p. 160-170
    In: Recent Advances in Drug Delivery and Formulation, Bentham Science Publishers Ltd., Vol. 17, No. 2 ( 2023-06), p. 160-170
    Abstract: Films used for wound healing have many advantages, but should be flexible, robust, adherable and prevent maceration. Both Chitosan (CS) and Titanium dioxide nanopowder (TiO2 NP) have good properties to accelerate wound healing and can be used in preparing films. Objective: CS and TiO2 NP are combined to formulate films for wound healing. The physical, thermal, chemical, and mechanical characteristics of these films are to be assessed. The antibacterial activity of the films and their performance on wounded rats will be explored. Methods: Films made of CS and TiO2 NP were characterized by FTIR, TGA, DSC, XRD, and SEM. The films' mechanical characteristics and antimicrobial activity were tested. Films with acceptable mechanical properties were evaluated on rats. Results: Generally, CS-TiO2 films had higher weight and thickness but lowered flexibility compared to films prepared using CS only. The chosen film showed excellent folding endurance with weight and thickness of around 21.98 mg and 0.16 mm. The surface pH for CS-TiO2 films was acidic, and for the selected film, it was 5.18. CS-TiO2 film was active against all studied bacteria and significantly higher than CS films. The antimicrobial activity of Gram-negative bacteria (P. aeruginosa and E. coli) was higher than that of Gram-positive bacteria (S. aureus). Finally, adding TiO2 NP to the films accelerated the healing process of the created wounds in a murine model, compared to control and CS-treated groups. Conclusion: Films of TiO2 NP and CS have suitable properties to be used in wound healing and can be further used in the future to load drugs.
    Type of Medium: Online Resource
    ISSN: 2667-3878
    Language: English
    Publisher: Bentham Science Publishers Ltd.
    Publication Date: 2023
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