Original ArticleIndian Journal of Pharmaceutical Education and ResearchVol. 59 | Issue 3s | 2025 | pp. s1048–s1056Open access
Evaluation of Respirable Fraction by Next Generation Impactor for Beclomethasone and Formoterol Fumarate Dihydrate Metered Dose Inhaler
- 1*,
- 1*,
- 2*,
- 1*
- 1 Department of Chemistry, School of Science, RK University, Rajkot, Gujarat., INDIA.
- 2 Department of Chemistry, Nobel University, Junagadh, Gujarat, INDIA.
Published in Indian Journal of Pharmaceutical Education and Research
Correspondence: Chirag Chilka
Department of Chemistry, School of Science, RK University, Rajkot, Gujarat., INDIA.
Email: jayesh.dhalani@rku.ac.in
Copyright: © 2025 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 1, 2025
- Received:
- Jun 9, 2024
- Accepted:
- Feb 22, 2025
- DOI:
- 10.5530/ijper.20256558
How to cite
Chilka, C., Kapadiya, K., Jani, D., & Dhalani, J. (2025). Evaluation of Respirable Fraction by Next Generation Impactor for Beclomethasone and Formoterol Fumarate Dihydrate Metered Dose Inhaler. Indian Journal of Pharmaceutical Education and Research, 59(3s), s1048–s1056. https://doi.org/10.5530/ijper.20256558
Abstract
Introduction:
Asthma and Chronic Obstructive Pulmonary Disease are treated with a combination pharmaceutical aerosol (Pressurized Metered Dose Inhaler) dose form, such as Formoterol fumarate dihydrate and Beclomethasone dipropionate pressurized inhalation solution, contains 6 μg and 100 μg, respectively.
Aim:
The in vitro aerodynamic characteristic-respirable fraction using cascade impactors simulate drug particle deposition on patient's lungs. The current work aimed to evaluate respirable fraction as aerodynamic characteristics of the delivered dose using Next Generation Impactor and a sensitive high pressure liquid chromatography approach.
Materials and Methods:
The samples are subjected to Next Generation Impactor and analyzed on a ODS Hypersil (250 mm×4.6 mm), 5 μm with 40ºC column oven, volume of injection 100 μL and 1.2 mL per min flow rate using a mobile phase that is a 35:65% v/v combination of ammonium phosphate buffer and acetonitrile in high pressure liquid chromatography. The designed approach was validated for its anticipated function and determined respirable fraction of delivered dose.
Results:
Respirable fraction (fine particle dose) in μg for Formoterol fumarate dihydrate and Beclomethasone dipropionate were observed 2.6 and 44.1, respectively. Fine particle fraction in percentage for Formoterol fumarate dihydrate and Beclomethasone dipropionate were observed 51.5 and 52.8, respectively. Mass Median aerodynamic diameter in μm for Formoterol fumarate dihydrate and Beclomethasone dipropionate were observed 1.8 and 1.7, respectively.
Conclusion:
The technique produced a trustworthy result and can be used to quantify aerodynamic characteristics-respirable fraction of delivered dose of Formoterol fumarate dihydrate and Beclomethasone dipropionate in inhaler form, are ≤ 5 μm in size and equivalent to lung deposition.
Keywords
Subject
Article metadata
| Title | Evaluation of Respirable Fraction by Next Generation Impactor for Beclomethasone and Formoterol Fumarate Dihydrate Metered Dose Inhaler |
|---|---|
| Authors | Chirag Chilka; Khushal Kapadiya; Darshan Jani; Jayesh Dhalani |
| Affiliations | Department of Chemistry, School of Science, RK University, Rajkot, Gujarat., INDIA.; Department of Chemistry, Nobel University, Junagadh, Gujarat, INDIA. |
| Corresponding author | jayesh.dhalani@rku.ac.in |
| Journal | Indian Journal of Pharmaceutical Education and Research |
| Volume / Issue | Vol. 59, Issue 3s (2025) |
Also in this issue
- Mesoporous Silica Nanoparticles: A Promising Portal for Diagnosis and Treatment for Chronic Diseasespp. s776–s787
- Nanostructured Lipid Carrier to Improve Oral Bioavailabilitypp. s788–s801
- A Review on Preparation Methods of Drug Loading Solid Lipid Nanoparticles with the Application in various Cancer Treatmentpp. s802–s813
- A Comprehensive Review on Management of Insulin Resistance Disorder by Innovative Technologies and Advancement of Precision Medicinal Therapiespp. s814–s824
- Formulation and Evaluation of Orally Disintegrating Tablet Containing Aripiprazole in the Context of Quality by Design Approachpp. s825–s836