Development of Carvedilol Phosphate Sustained Release Tablet

 
9783659228452: Development of Carvedilol Phosphate Sustained Release Tablet
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Reseña del editor:

The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS > PEG 6000 > Poloxamer 188.

Biografía del autor:

Uttom Kumar completed his M. Pharm. from the Department of Pharmaceutical Technology, University of Dhaka, Bangladesh. He conducted his thesis under the supervision of Prof. Dr. A. S. Shamsur Rouf, a renowned scientist. Currently Uttom is a member of Dr. Rouf’s research lab where Mr. Harun-Or-Rashid is an associate researcher.

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Uttom Kumar
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Descripción LAP Lambert Academic Publishing 2012-08-29, 2012. paperback. Condición: New. Nº de ref. del artículo: 9783659228452

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Kumar, Uttom / Harun-Or-Rashid, Mr.
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Descripción Condición: New. Publisher/Verlag: LAP Lambert Academic Publishing | Anti-hypertensive agent:Carvedilol phosphate | The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS PEG 6000 Poloxamer 188. | Format: Paperback | Language/Sprache: english | 156 pp. Nº de ref. del artículo: K9783659228452

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Descripción LAP Lambert Academic Publishing Dez 2016, 2016. Taschenbuch. Condición: Neu. Neuware - The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS PEG 6000 Poloxamer 188. 156 pp. Englisch. Nº de ref. del artículo: 9783659228452

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Descripción LAP Lambert Academic Publishing Dez 2016, 2016. Taschenbuch. Condición: Neu. Neuware - The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS PEG 6000 Poloxamer 188. 156 pp. Englisch. Nº de ref. del artículo: 9783659228452

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Uttom Kumar
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Descripción LAP Lambert Academic Publishing. Paperback. Condición: New. 156 pages. Dimensions: 8.7in. x 5.9in. x 0.4in.The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS PEG 6000 Poloxamer 188. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Nº de ref. del artículo: 9783659228452

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Uttom Kumar
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Descripción LAP Lambert Academic Publishing Dez 2016, 2016. Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Neuware - The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS PEG 6000 Poloxamer 188. 156 pp. Englisch. Nº de ref. del artículo: 9783659228452

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10.

Uttom Kumar, MR Harun-Or-Rashid, Dr A S Shamsur Rouf
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Descripción LAP Lambert Academic Publishing, Germany, 2016. Paperback. Condición: New. Aufl.. Language: English . Brand New Book ***** Print on Demand *****.The objective of the present study was to design and evaluate sustained release tablet of Carvedilol Phosphate employing semi-synthetic polymers Methocel K4M CR and Methocel K15M CR as release retarding materials. Two sets of formulations prepared where first set of five formulations (F1-F5) contained variable ratios of polymers and second set of ten formulations (F6-F15) contained variable ratios of three different dissolution enhancers, namely Sodium Lauryl Sulfate (SLS), PEG 6000 and Poloxamer 188. An increase in release rate of the drug from the tablet matrix was observed by decreasing the polymers percentage, specifically Methocel K15 M CR. The tablet matrices prepared using SLS showed a higher dissolution rate and gave a dissolution profile that was comparable to the theoretical sustained release needed for once daily administration of Carvedilol Phosphate. The order of dissolution enhancing power was: SLS > PEG 6000 > Poloxamer 188. Nº de ref. del artículo: AAV9783659228452

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