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Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy

Three drugs namely caffeine, paracetamol, and aceclofenac are commonly used for treating various acute and chronic pain related ailments. These 3 drugs have varied solubility profiles, and formulating them into a single tablet did not have the desired dissolution profile for drug absorption. The obj...

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Autores principales: Moin, Afrasim, Roohi, N. K. Famna, Rizvi, Syed Mohd Danish, Ashraf, Syed Amir, Siddiqui, Arif Jamal, Patel, Mitesh, Ahmed, S. M., Gowda, D. V., Adnan, Mohd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056836/
https://www.ncbi.nlm.nih.gov/pubmed/35514416
http://dx.doi.org/10.1039/d0ra06611g
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author Moin, Afrasim
Roohi, N. K. Famna
Rizvi, Syed Mohd Danish
Ashraf, Syed Amir
Siddiqui, Arif Jamal
Patel, Mitesh
Ahmed, S. M.
Gowda, D. V.
Adnan, Mohd
author_facet Moin, Afrasim
Roohi, N. K. Famna
Rizvi, Syed Mohd Danish
Ashraf, Syed Amir
Siddiqui, Arif Jamal
Patel, Mitesh
Ahmed, S. M.
Gowda, D. V.
Adnan, Mohd
author_sort Moin, Afrasim
collection PubMed
description Three drugs namely caffeine, paracetamol, and aceclofenac are commonly used for treating various acute and chronic pain related ailments. These 3 drugs have varied solubility profiles, and formulating them into a single tablet did not have the desired dissolution profile for drug absorption. The objective of the present research was to tailor the drug release profile by altering drug solubility. This was achieved by loading the drug into nanosponges. Here, three-dimensional colloidal nanosponges were prepared using β-cyclodextrin with dimethyl carbonate as a cross-linker using the hot-melt compression method. The prepared nanosponges were characterized by FTIR, (1)H NMR spectroscopy, DSC, XRPD studies and SEM. The FTIR and DSC results obtained indicated polymer-drug compatibility. The (1)H NMR spectroscopy results obtained indicated the drug entrapment within nanosponges with the formation of the inclusion complex. XRPD studies showed that the loaded drug had changed crystalline properties altering drug solubility. SEM photographs revealed the porous and spongy texture on the surface of the nanosponge. Box–Behnken experimental design was adopted for the optimization of nanosponge synthesis. Among the synthesized nanosponges containing paracetamol, aceclofenac and caffeine, batch F3–P31, F3–A31 and F3–C31 were considered optimized. Their particle size was 185, 181 and 199 nm with an entrapment efficiency of 81.53, 84.96, and 89.28% respectively. These optimized nanosponges were directly compressed into tablets and were studied for both pre and post-compression properties including in vitro drug release. The prepared tablet showed desired drug dissolution properties compared to the pure drug. The above outcomes indicated the applicability of nanosponges in modulating the drug release with varied solubility for combination therapy.
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spelling pubmed-90568362022-05-04 Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy Moin, Afrasim Roohi, N. K. Famna Rizvi, Syed Mohd Danish Ashraf, Syed Amir Siddiqui, Arif Jamal Patel, Mitesh Ahmed, S. M. Gowda, D. V. Adnan, Mohd RSC Adv Chemistry Three drugs namely caffeine, paracetamol, and aceclofenac are commonly used for treating various acute and chronic pain related ailments. These 3 drugs have varied solubility profiles, and formulating them into a single tablet did not have the desired dissolution profile for drug absorption. The objective of the present research was to tailor the drug release profile by altering drug solubility. This was achieved by loading the drug into nanosponges. Here, three-dimensional colloidal nanosponges were prepared using β-cyclodextrin with dimethyl carbonate as a cross-linker using the hot-melt compression method. The prepared nanosponges were characterized by FTIR, (1)H NMR spectroscopy, DSC, XRPD studies and SEM. The FTIR and DSC results obtained indicated polymer-drug compatibility. The (1)H NMR spectroscopy results obtained indicated the drug entrapment within nanosponges with the formation of the inclusion complex. XRPD studies showed that the loaded drug had changed crystalline properties altering drug solubility. SEM photographs revealed the porous and spongy texture on the surface of the nanosponge. Box–Behnken experimental design was adopted for the optimization of nanosponge synthesis. Among the synthesized nanosponges containing paracetamol, aceclofenac and caffeine, batch F3–P31, F3–A31 and F3–C31 were considered optimized. Their particle size was 185, 181 and 199 nm with an entrapment efficiency of 81.53, 84.96, and 89.28% respectively. These optimized nanosponges were directly compressed into tablets and were studied for both pre and post-compression properties including in vitro drug release. The prepared tablet showed desired drug dissolution properties compared to the pure drug. The above outcomes indicated the applicability of nanosponges in modulating the drug release with varied solubility for combination therapy. The Royal Society of Chemistry 2020-09-21 /pmc/articles/PMC9056836/ /pubmed/35514416 http://dx.doi.org/10.1039/d0ra06611g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Moin, Afrasim
Roohi, N. K. Famna
Rizvi, Syed Mohd Danish
Ashraf, Syed Amir
Siddiqui, Arif Jamal
Patel, Mitesh
Ahmed, S. M.
Gowda, D. V.
Adnan, Mohd
Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title_full Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title_fullStr Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title_full_unstemmed Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title_short Design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
title_sort design and formulation of polymeric nanosponge tablets with enhanced solubility for combination therapy
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056836/
https://www.ncbi.nlm.nih.gov/pubmed/35514416
http://dx.doi.org/10.1039/d0ra06611g
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