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Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations

The surface drying process is an important technology in the pharmaceutical, biomedical, and food industries. The final stage of formulation development (i.e., the drying process) faces several challenges, and overall mastering depends on the end step. The advent of new emerging technologies paved t...

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Autores principales: Pardeshi, Sagar R., Kole, Eknath B., Kapare, Harshad S., Chandankar, Sachin M., Shinde, Prashant J., Boisa, Ganesh S., Salgaonkar, Sanjana S., Giram, Prabhanjan S., More, Mahesh P., Kolimi, Praveen, Nyavanandi, Dinesh, Dyawanapelly, Sathish, Junnuthula, Vijayabhaskarreddy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784462/
https://www.ncbi.nlm.nih.gov/pubmed/36559129
http://dx.doi.org/10.3390/pharmaceutics14122632
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author Pardeshi, Sagar R.
Kole, Eknath B.
Kapare, Harshad S.
Chandankar, Sachin M.
Shinde, Prashant J.
Boisa, Ganesh S.
Salgaonkar, Sanjana S.
Giram, Prabhanjan S.
More, Mahesh P.
Kolimi, Praveen
Nyavanandi, Dinesh
Dyawanapelly, Sathish
Junnuthula, Vijayabhaskarreddy
author_facet Pardeshi, Sagar R.
Kole, Eknath B.
Kapare, Harshad S.
Chandankar, Sachin M.
Shinde, Prashant J.
Boisa, Ganesh S.
Salgaonkar, Sanjana S.
Giram, Prabhanjan S.
More, Mahesh P.
Kolimi, Praveen
Nyavanandi, Dinesh
Dyawanapelly, Sathish
Junnuthula, Vijayabhaskarreddy
author_sort Pardeshi, Sagar R.
collection PubMed
description The surface drying process is an important technology in the pharmaceutical, biomedical, and food industries. The final stage of formulation development (i.e., the drying process) faces several challenges, and overall mastering depends on the end step. The advent of new emerging technologies paved the way for commercialization. Thin film freezing (TFF) is a new emerging freeze-drying technique available for various treatment modalities in drug delivery. TFF has now been used for the commercialization of pharmaceuticals, food, and biopharmaceutical products. The present review highlights the fundamentals of TFF along with modulated techniques used for drying pharmaceuticals and biopharmaceuticals. Furthermore, we have covered various therapeutic applications of TFF technology in the development of nanoformulations, dry powder for inhalations and vaccines. TFF holds promise in delivering therapeutics for lung diseases such as fungal infection, bacterial infection, lung dysfunction, and pneumonia.
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spelling pubmed-97844622022-12-24 Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations Pardeshi, Sagar R. Kole, Eknath B. Kapare, Harshad S. Chandankar, Sachin M. Shinde, Prashant J. Boisa, Ganesh S. Salgaonkar, Sanjana S. Giram, Prabhanjan S. More, Mahesh P. Kolimi, Praveen Nyavanandi, Dinesh Dyawanapelly, Sathish Junnuthula, Vijayabhaskarreddy Pharmaceutics Review The surface drying process is an important technology in the pharmaceutical, biomedical, and food industries. The final stage of formulation development (i.e., the drying process) faces several challenges, and overall mastering depends on the end step. The advent of new emerging technologies paved the way for commercialization. Thin film freezing (TFF) is a new emerging freeze-drying technique available for various treatment modalities in drug delivery. TFF has now been used for the commercialization of pharmaceuticals, food, and biopharmaceutical products. The present review highlights the fundamentals of TFF along with modulated techniques used for drying pharmaceuticals and biopharmaceuticals. Furthermore, we have covered various therapeutic applications of TFF technology in the development of nanoformulations, dry powder for inhalations and vaccines. TFF holds promise in delivering therapeutics for lung diseases such as fungal infection, bacterial infection, lung dysfunction, and pneumonia. MDPI 2022-11-28 /pmc/articles/PMC9784462/ /pubmed/36559129 http://dx.doi.org/10.3390/pharmaceutics14122632 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Pardeshi, Sagar R.
Kole, Eknath B.
Kapare, Harshad S.
Chandankar, Sachin M.
Shinde, Prashant J.
Boisa, Ganesh S.
Salgaonkar, Sanjana S.
Giram, Prabhanjan S.
More, Mahesh P.
Kolimi, Praveen
Nyavanandi, Dinesh
Dyawanapelly, Sathish
Junnuthula, Vijayabhaskarreddy
Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title_full Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title_fullStr Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title_full_unstemmed Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title_short Progress on Thin Film Freezing Technology for Dry Powder Inhalation Formulations
title_sort progress on thin film freezing technology for dry powder inhalation formulations
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9784462/
https://www.ncbi.nlm.nih.gov/pubmed/36559129
http://dx.doi.org/10.3390/pharmaceutics14122632
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