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Plant Polysaccharides-Based Multiple...
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Hasnain, Md Saquib, (1984-)
Plant Polysaccharides-Based Multiple-Unit Systems for Oral Drug Delivery /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Plant Polysaccharides-Based Multiple-Unit Systems for Oral Drug Delivery /Amit Kumar Nayak, Md Saquib Hasnain.
Author:
Nayak, Amit Kumar,
other author:
Hasnain, Md Saquib,
Description:
1 online resource.
Subject:
Polysaccharides.
Online resource:
http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=2091873
Online resource:
https://doi.org/10.1007/978-981-10-6784-6
Online resource:
http://public.eblib.com/choice/PublicFullRecord.aspx?p=5741598
Online resource:
http://ezaccess.libraries.psu.edu/login?url=https://doi.org/10.1007/978-981-10-6784-6
Online resource:
https://link.springer.com/10.1007/978-981-10-6784-6
Online resource:
https://ezproxy.lau.edu.lb:2443/login?url=https://doi.org/10.1007/978-981-10-6784-6
ISBN:
9789811067846$q(electronic bk.)
Plant Polysaccharides-Based Multiple-Unit Systems for Oral Drug Delivery /
Nayak, Amit Kumar,1979-
Plant Polysaccharides-Based Multiple-Unit Systems for Oral Drug Delivery /
Amit Kumar Nayak, Md Saquib Hasnain. - 1 online resource. - Springer briefs in applied sciences and technology. - SpringerBriefs in applied sciences and technology..
Includes bibliographical references and index.
Intro; About This Book; Contents; About the Authors; Abbreviations; 1 Background: Multiple Units in Oral Drug Delivery; 1.1 Introduction; 1.2 Oral Drug Delivery; 1.3 Multiple Units as Drug-Releasing Carriers; References; 2 Plant Polysaccharides in Drug Delivery Applications; 2.1 Natural Polysaccharides; 2.2 Plant Polysaccharides as Pharmaceutical Excipients; References; 3 Gum Arabic Based Multiple Units for Oral Drug Delivery; 3.1 Gum Arabic (GAr); 3.2 Use of GAr as Pharmaceutical Excipients; 3.3 GAr-Alginate Beads of Glibenclamide; References
This book explores the use of various plant polysaccharides for pharmaceutical purposes, including drug delivery. It examines the exploitation of plant polysaccharides' auxiliary functions to enhance drug release, stability, bioavailability and target specificity. Plant-derived materials are at the center of drug-delivery research thanks to their non-toxicity, biodegradability, ready availability, eco-friendliness and low extraction costs. These materials include polysaccharides, a class of naturally occurring polymers consisting of glucose monomers, which serve as storage carbohydrates in cereals, root vegetables, rhizomes, seeds, fruits, etc.
ISBN: 9789811067846$q(electronic bk.)
Standard No.: 10.1007/978-981-10-6784-6doi
Source: com.springer.onix.9789811067846Springer Nature
Nat. Bib. No.: GBB966592bnb
Nat. Bib. Agency Control No.: 019335931UkSubjects--Topical Terms:
277452
Polysaccharides.
Index Terms--Genre/Form:
214472
Electronic books.
LC Class. No.: QP702.P6 / N331 2019
Dewey Class. No.: 572.566
Plant Polysaccharides-Based Multiple-Unit Systems for Oral Drug Delivery /
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Amit Kumar Nayak, Md Saquib Hasnain.
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Intro; About This Book; Contents; About the Authors; Abbreviations; 1 Background: Multiple Units in Oral Drug Delivery; 1.1 Introduction; 1.2 Oral Drug Delivery; 1.3 Multiple Units as Drug-Releasing Carriers; References; 2 Plant Polysaccharides in Drug Delivery Applications; 2.1 Natural Polysaccharides; 2.2 Plant Polysaccharides as Pharmaceutical Excipients; References; 3 Gum Arabic Based Multiple Units for Oral Drug Delivery; 3.1 Gum Arabic (GAr); 3.2 Use of GAr as Pharmaceutical Excipients; 3.3 GAr-Alginate Beads of Glibenclamide; References
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4 Tamarind Polysaccharide Based Multiple Units for Oral Drug Delivery4.1 Tamarind Polysaccharide (TP); 4.2 Use of TP as Pharmaceutical Excipients; 4.3 TP Spheroids of Diclofenac Sodium; 4.4 TP-Alginate Beads of Diclofenac Sodium; 4.5 TP-Alginate Mucoadhesive Beads of Metformin HCl; 4.6 TP-Alginate Mucoadhesive Beads of Gliclazide; 4.7 Alginate-Gel-Coated Oil-Entrapped Alginate-TP-Magnesium Stearate Floating Beads of Risperidone; 4.8 Oil-Entrapped TP-Alginate Floating Beads of Diclofenac Sodium
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4.9 TP-Alginate Interpenetrated Polymer Network (IPN) Microbeads Containing Diltiazem-Indion 254� Complex4.10 TP-Chitosan IPN Microparticles of Aceclofenac; 4.11 TP-Gellan Gum Mucoadhesive Beads of Metformin HCl; 4.12 TP-Pectinate Mucoadhesive Beads of Metformin HCl; References; 5 Locust Bean Gum Based Multiple Units for Oral Drug Delivery; 5.1 Locust Bean Gum (LG); 5.2 Use of LG as Pharmaceutical Excipients; 5.3 LG-Alginate Microspheres of Aceclofenac; 5.4 LG-Alginate Mucoadhesive Beads of Aceclofenac; 5.5 Carboxymethyl LG Beads of Glipizide; References
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6 Sterculia Gum Based Multiple Units for Oral Drug Delivery6.1 Sterculia Gum (SG); 6.2 Use of SG as Pharmaceutical Excipients; 6.3 Oil-Entrapped SG-Alginate Floating Beads of Aceclofenac; 6.4 SG-Alginate Floating and Non-floating Beads of Pentoprazole; 6.5 SG-Alginate Gel-Coated Oil-Entrapped Alginate Beads of Risperidone; 6.6 SG-Pectinate Floating-Mucoadhesive IPN Beads of Ziprasidone HCl; 6.7 SG-Alginate IPN Microparticles of Repaglinide; References; 7 Okra Gum Based Multiple Units for Oral Drug Delivery; 7.1 Okra Gum (OG); 7.2 Use of OG as Pharmaceutical Excipients
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7.3 OG-Alginate Beads of Diclofenac Sodium7.4 OG-Alginate Mucoadhesive Beads of Glibenclamide; References; 8 Fenugreek Seed Mucilage Based Multiple Units for Oral Drug Delivery; 8.1 Fenugreek Seed Mucilage (FM); 8.2 Use of FM as Pharmaceutical Excipients; 8.3 FM-Alginate Mucoadhesive Beads of Metformin HCl; 8.4 FM-Pectinate Mucoadhesive Beads of Metformin HCl; 8.5 FM-Gellan Gum Mucoadhesive Beads of Metformin HCl; References; 9 Potato Starch Based Multiple Units for Oral Drug Delivery; 9.1 Potato Starch (PS); 9.2 Use of PS as Pharmaceutical Excipients; 9.3 PS-Alginate Beads of Tolbutamide
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This book explores the use of various plant polysaccharides for pharmaceutical purposes, including drug delivery. It examines the exploitation of plant polysaccharides' auxiliary functions to enhance drug release, stability, bioavailability and target specificity. Plant-derived materials are at the center of drug-delivery research thanks to their non-toxicity, biodegradability, ready availability, eco-friendliness and low extraction costs. These materials include polysaccharides, a class of naturally occurring polymers consisting of glucose monomers, which serve as storage carbohydrates in cereals, root vegetables, rhizomes, seeds, fruits, etc.
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