Orodispersible films — Pharmaceutical development for improved performance: A review
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2022
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Orodispersible films (ODFs) have recently emerged as innovative dosage form which provides distinct advantages in the patient centric pharmaceutical drug product design due to inherent dosing flexibility and improved patient acceptability. Although their potential advantages in pharmacotherapy are well recognized, there is still a lot of research work to be done in order to explore and understand complex relationships among different formulation factors, film mechanical properties, and their bioperformance. Lack of standardized characterization methods and relevant specifications pose additional limitation for their wider application. In the present study, in-depth review of the available body of data published on ODF development and characterization was performed. In total, 112 papers published between November 2008 and April 2022 were taken into consideration for dataset building. Data collected have been critically evaluated and compiled into the representative dataset formed around... three domains, namely: (A) Manufacturing method and composition; (B) ODF characteristics; and (C) ODF sensory attributes. Based on the investigated dataset, an attempt was made to identify the acceptable range of Critical Quality Attributes (CQA) values and propose ODF specific Quality Targeted Product Profile (QTPP) as a foundation which should guide and facilitate pharmaceutical development.
Ključne reči:
Disintegration time / Critical quality attributes / Mechanical properties / ODF composition / ODF manufacturing methods / ODF sensory attributes / Quality target product profileIzvor:
Journal of Drug Delivery Science and Technology, 2022, 75Izdavač:
- Elsevier B.V.
Finansiranje / projekti:
DOI: 10.1016/j.jddst.2022.103708
ISSN: 1773-2247
WoS: 000859535100003
Scopus: 2-s2.0-85136287303
Institucija/grupa
PharmacyTY - JOUR AU - Turković, Erna AU - Vasiljević, Ivana AU - Drašković, Milica AU - Parojčić, Jelena PY - 2022 UR - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4336 AB - Orodispersible films (ODFs) have recently emerged as innovative dosage form which provides distinct advantages in the patient centric pharmaceutical drug product design due to inherent dosing flexibility and improved patient acceptability. Although their potential advantages in pharmacotherapy are well recognized, there is still a lot of research work to be done in order to explore and understand complex relationships among different formulation factors, film mechanical properties, and their bioperformance. Lack of standardized characterization methods and relevant specifications pose additional limitation for their wider application. In the present study, in-depth review of the available body of data published on ODF development and characterization was performed. In total, 112 papers published between November 2008 and April 2022 were taken into consideration for dataset building. Data collected have been critically evaluated and compiled into the representative dataset formed around three domains, namely: (A) Manufacturing method and composition; (B) ODF characteristics; and (C) ODF sensory attributes. Based on the investigated dataset, an attempt was made to identify the acceptable range of Critical Quality Attributes (CQA) values and propose ODF specific Quality Targeted Product Profile (QTPP) as a foundation which should guide and facilitate pharmaceutical development. PB - Elsevier B.V. T2 - Journal of Drug Delivery Science and Technology T1 - Orodispersible films — Pharmaceutical development for improved performance: A review VL - 75 DO - 10.1016/j.jddst.2022.103708 ER -
@article{ author = "Turković, Erna and Vasiljević, Ivana and Drašković, Milica and Parojčić, Jelena", year = "2022", abstract = "Orodispersible films (ODFs) have recently emerged as innovative dosage form which provides distinct advantages in the patient centric pharmaceutical drug product design due to inherent dosing flexibility and improved patient acceptability. Although their potential advantages in pharmacotherapy are well recognized, there is still a lot of research work to be done in order to explore and understand complex relationships among different formulation factors, film mechanical properties, and their bioperformance. Lack of standardized characterization methods and relevant specifications pose additional limitation for their wider application. In the present study, in-depth review of the available body of data published on ODF development and characterization was performed. In total, 112 papers published between November 2008 and April 2022 were taken into consideration for dataset building. Data collected have been critically evaluated and compiled into the representative dataset formed around three domains, namely: (A) Manufacturing method and composition; (B) ODF characteristics; and (C) ODF sensory attributes. Based on the investigated dataset, an attempt was made to identify the acceptable range of Critical Quality Attributes (CQA) values and propose ODF specific Quality Targeted Product Profile (QTPP) as a foundation which should guide and facilitate pharmaceutical development.", publisher = "Elsevier B.V.", journal = "Journal of Drug Delivery Science and Technology", title = "Orodispersible films — Pharmaceutical development for improved performance: A review", volume = "75", doi = "10.1016/j.jddst.2022.103708" }
Turković, E., Vasiljević, I., Drašković, M.,& Parojčić, J.. (2022). Orodispersible films — Pharmaceutical development for improved performance: A review. in Journal of Drug Delivery Science and Technology Elsevier B.V.., 75. https://doi.org/10.1016/j.jddst.2022.103708
Turković E, Vasiljević I, Drašković M, Parojčić J. Orodispersible films — Pharmaceutical development for improved performance: A review. in Journal of Drug Delivery Science and Technology. 2022;75. doi:10.1016/j.jddst.2022.103708 .
Turković, Erna, Vasiljević, Ivana, Drašković, Milica, Parojčić, Jelena, "Orodispersible films — Pharmaceutical development for improved performance: A review" in Journal of Drug Delivery Science and Technology, 75 (2022), https://doi.org/10.1016/j.jddst.2022.103708 . .