Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah

The study investigated the aerosolization and inhalation profiles of rifampicin-oleic acid first generation liquid and solid nanoemulsions and their respective chitosan- and chitosan-folate conjugate-decorated second and third generation nanoemulsions. The liquid nanoemulsions were prepared by spont...

Full description

Bibliographic Details
Main Author: Shah, Kifayat Ullah
Format: Book Section
Language:English
Published: Institute of Graduate Studies, UiTM 2017
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/19764/1/ABS_KIFAYAT%20ULLAH%20SHAH%20TDRA%20VOL%2011%20IGS%2017.pdf
_version_ 1825735273204416512
author Shah, Kifayat Ullah
author_facet Shah, Kifayat Ullah
author_sort Shah, Kifayat Ullah
collection UITM
description The study investigated the aerosolization and inhalation profiles of rifampicin-oleic acid first generation liquid and solid nanoemulsions and their respective chitosan- and chitosan-folate conjugate-decorated second and third generation nanoemulsions. The liquid nanoemulsions were prepared by spontaneous emulsification method and had their size, zeta potential, polydispersity index, morphology, pH, viscosity, surface tension, density, refractive index, drug content, drug release, aerosolization and inhalation profiles characterized. The first, second and third generation nanoemulsions had average droplet sizes of 43.89 ± 0.36 nm, 52.12 ± 0.36 nm and 59.69 ± 0.26 nm, with narrow polydispersity indices at 0.16 ± 0.03, 0.25 ± 0.03 and 0.23 ± 0.01 respectively. They exhibited desirable pH, surface tension, viscosity, refractive index, density, and viscosity attributes for pulmonary rifampicin administration. The second generation nanoemulsion was characterized by relatively low levels of burst drug release due to intimate chitosan packing at the oil globules’ surfaces and viscosifying effect on continuous phase, which was unattainable by the branched folate conjugate of chitosan. All nanoemulsions demonstrated more than 95 % aerosol output and inhalation efficiency greater than 75 % when delivered by nebulization. The aerosol output, aerosolized and inhaled fine particle fractions were primarily governed by the size and surface tension of nanoemulsions in an inverse relationship. The first, second and third generation nanoemulsions were converted to their corresponding solid counterparts by spray drying method…
first_indexed 2024-03-06T01:44:35Z
format Book Section
id oai:ir.uitm.edu.my:19764
institution Universiti Teknologi MARA
language English
last_indexed 2024-03-06T01:44:35Z
publishDate 2017
publisher Institute of Graduate Studies, UiTM
record_format dspace
spelling oai:ir.uitm.edu.my:197642018-06-07T07:19:15Z https://ir.uitm.edu.my/id/eprint/19764/ Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah Shah, Kifayat Ullah Malaysia The study investigated the aerosolization and inhalation profiles of rifampicin-oleic acid first generation liquid and solid nanoemulsions and their respective chitosan- and chitosan-folate conjugate-decorated second and third generation nanoemulsions. The liquid nanoemulsions were prepared by spontaneous emulsification method and had their size, zeta potential, polydispersity index, morphology, pH, viscosity, surface tension, density, refractive index, drug content, drug release, aerosolization and inhalation profiles characterized. The first, second and third generation nanoemulsions had average droplet sizes of 43.89 ± 0.36 nm, 52.12 ± 0.36 nm and 59.69 ± 0.26 nm, with narrow polydispersity indices at 0.16 ± 0.03, 0.25 ± 0.03 and 0.23 ± 0.01 respectively. They exhibited desirable pH, surface tension, viscosity, refractive index, density, and viscosity attributes for pulmonary rifampicin administration. The second generation nanoemulsion was characterized by relatively low levels of burst drug release due to intimate chitosan packing at the oil globules’ surfaces and viscosifying effect on continuous phase, which was unattainable by the branched folate conjugate of chitosan. All nanoemulsions demonstrated more than 95 % aerosol output and inhalation efficiency greater than 75 % when delivered by nebulization. The aerosol output, aerosolized and inhaled fine particle fractions were primarily governed by the size and surface tension of nanoemulsions in an inverse relationship. The first, second and third generation nanoemulsions were converted to their corresponding solid counterparts by spray drying method… Institute of Graduate Studies, UiTM 2017 Book Section PeerReviewed text en https://ir.uitm.edu.my/id/eprint/19764/1/ABS_KIFAYAT%20ULLAH%20SHAH%20TDRA%20VOL%2011%20IGS%2017.pdf Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah. (2017) In: The Doctoral Research Abstracts. IGS Biannual Publication, 11 (11). Institute of Graduate Studies, UiTM, Shah Alam.
spellingShingle Malaysia
Shah, Kifayat Ullah
Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title_full Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title_fullStr Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title_full_unstemmed Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title_short Liquid and spray-dried nanoemulsion designs for pulmonary delivery of rifampicin / Kifayat Ullah Shah
title_sort liquid and spray dried nanoemulsion designs for pulmonary delivery of rifampicin kifayat ullah shah
topic Malaysia
url https://ir.uitm.edu.my/id/eprint/19764/1/ABS_KIFAYAT%20ULLAH%20SHAH%20TDRA%20VOL%2011%20IGS%2017.pdf
work_keys_str_mv AT shahkifayatullah liquidandspraydriednanoemulsiondesignsforpulmonarydeliveryofrifampicinkifayatullahshah