Abstract View

Author(s): Lubna Patel1, Umama Saudagar2

Email(s): 102.lubz@gmail.com

Address:

    JIIU’s Ali Allana College of Pharmacy, Akkalkuwa, Dist Nandurbar, MS, India.

Published In:   Volume - 2,      Issue - 1,     Year - 2023

DOI: Not Available

 View HTML        View PDF

Please allow Pop-Up for this website to view PDF file.

ABSTRACT:
: Numerous innovative drug delivery systems have been invented as a result of developments in polymer science. It might be highly beneficial to consider both bulk and surface properties when designing polymers for various drug delivery systems. Natural polymers for pharmaceutical applications is good prices, availability, low toxicity, ability to undergo chemical modifications, potential for biodegradation, and, with a few notable exceptions, biocompatibility. This review mainly focused on describing different natural polymers used in the process of developing new drug delivery systems.

Cite this article:
Lubna Patel, Umama Saudagar.Natural Polymers used in Novel Drug Delivery System (NDDS). IJRPAS, Jan-Feb 2023; 2(1): 50-67.


1.         Ankur Chaudhary. Novel Drug Delivery System. [Online].Pharmaguidline. [24-08-22].

2.         Raizada A, Bandari A, Kumar Polymers in drug delivery: A Review. International Journal of pharma research and development,2010;2(8):9-20.

3.         Bhaskar Bangar, Namdeo Shinde, Sunil Deshmukh, Birudev Kale. Natural Polymers in DrugDeliveryDevelopment.ResearchJournalofPharmaceuticalDosageFormsandTechnology.2014;6(1):54-57.

4.         GirishK.Jani,DhirenP.Shah,VipulD.Prajapati,VineetC.Jain.Gumsandmucilages.versatile excipients for pharmaceutical formulations Asian J. Pharm. Sci. 2009; 4Suppl5:309-332.

5.         Saripilli Rajeswari, Teella Prasanthi, Navya Sudha, Ranjit Prasad Swain, Satyajit Panda and Vinusha Goka. Natural Polymers: Arecentreview. World Journal of Pharmacy And Pharmaceutical Sciences.Volume 6,Issue8,472-481.

6.         Axio Inspired Med Tech. Biomaterials – Chitosan, The Most Promising Biomaterial of 21stCentury.[online].AvailablefromURL:https://axiobio.com/chitosan/

7.         Chitosan.[online].Availablefrom::https://en.m.wikipedia.org/wiki/Chitosan#:~:text=The%20natural%20biocontrol%20active%20ingredients,biodegradable%20materials%20in%20the%20world

8.         Physicochemical properties. Eight Edition. Vol 1. The Indian Pharmacopoiea Commission India Pharmacopoeia Laboratory Govt. of India, Ministry of Health & Family Welfare Sector 23,RajNagar,Ghaziabad-201002.2018.P.220,225,233,234,235.

9.         CaiqinQin, Huirong Li, QiXiao, YiLiu ,Juncheng Zhu,YuminDu. Water-solubility of chitosan and its antimicrobial activity.Carbohydrate Polymers.SciDir.3Mar2006;63(3):367-374.

10.     Romeo,Tony (2008).Bacterial biofilms.Berlin: Springer.pp.258–263. ISBN 978-3-540-75418-3.

11.     ShekharSuman.Cellulose:Properties,Structure,Applications.ColDun[serialonline]2022URL:https://collegedunia.com/exams/cellulose-properties-structure-applications-and-sample-questions-chemistry-articleid-654

12.     PetruV.NOTINGHER,LaurentiuBADICU,LaurentiuMariusDUMITRAN,GabrielTANASESCUandDorinPOPA.DIELECTRICLOSSESINCELLULOSE-BASEDINSULATIONS.ChiIACra.2009Oct8-9.169.

13.     Shaoni Sun, Shaolong Sun, Xuefei Cao, Runcang Sun. The role of pretreatment in improvingtheenzymatichydrolysisoflignocellulosicmaterials.BioTec 2016 Jan;199:49-58.

14.     Tavker, N.,Yadav, V.K., Yadav, K.K., Cabral-Pinto, M.M., Alam, J., Shukla, A.K.,Ali,F.A.A., Alhoshan, M. Removal of Cadmium and Chromium by Mixture of Silver Nanoparticlesand Nano-Fibrillated Cellulose Isolated from Waste Peels of Citrus Sinensis. Polymers 2021;13:234.

15.     RashaM.Sheltamia,b,IbrahimAbdullaha,IshakAhmada,AlainDufresnec,HaniehKargarzadeh.Carbohydrate Polymers.Elsevier.2011

16.     E407carrageenan-Uspecification.CyberColloidsLTD.[online].2016Mar9;Available from: URL:   http://www. cyber colloids.net/information/technical-articles/e-407-carrageenan-eu-specification

17.     MdSaquibHasnain, EhteshamJameel, BuluMohanta, Amal Kumar Dhara, Saad Alkahtani,Amit Kumar Nayak, Chapter 1 - Alginates: sources, structure, and properties. Alginates in Drug Delivery. Academic Press 2020Jul24:1-17.

18.     F.Alihosseini.10-Plant-based compounds for antimicrobial textiles. In Woodhead Publishing Series in Textiles: Antimicrobial Textiles. Woodhead Publishing:2016.p.155-195.

19.     Davies,JC(2002)."Pseudomonasaeruginosaincysticfibrosis:pathogenesisandpersistence".PaediatricRespiratoryReviews.3(2):128–34.

20.     DennisJ. McHugh.A guide tothe seaweedindustry.School of Chemistry,UniversityCollegeUniversity of NewSouth Wales andAustralian DefenceForceAcademy,Canbara(Aus).2003;Chap.5.

21.     ManpreetKaur.Pectin:Sources,PreparationandUses.[online].Availablefrom:URL:https://www.yourarticlelibrary.com/biology/carbohydrates/pectin-sources-preparation-and-uses/49556

22.     HosseinBaniasadia,S.A.AhmadRamazani,andFaribaGhaderinezhad.PreparationandCharacterizationofNovelConductivePorousChitosan-BasedNanocompositeScaffoldsforTissueEngineeringApplications.Greenpolymersandenvironmentalpollutioncontrol.Oakville(Canada)AppleAcademicPressInc.p.248.

23.     Chandel V, Biswas D, Roy S, Vaidya D, Verma A, Gupta A. Current Advancements inPectin:Extraction,PropertiesandMultifunctionalApplications.Foods.2022Sep2;11(17):2683.

24.     Agar.[online].Available from:URL:https://www.pharmacy180.com/article/agar-107/

25.     ManpreetKaur.    Agar:   Sources,           Preparation      and      Uses.   [online].           Availablefrom: URL: https://.yourarticlelibrary YashHemantPandya, www Manish Bakshi and Anushka Sharma. Agar-agar extraction.structuralproperties and applications: A review. The Pharma Innovation Journal 2022 ; SP-11(6): 1151-1157.

26.     .com/biology/carbohydrates/agar-sources-preparation-and-uses/49563

27.     C.J. Maim, J.W. Mench, Brazelton Fulkerso, and G.D. Hiatt, Preparation of Phthalic Acid Esters of Cellulose,  Journal of Industrial and EngineeringChemistry1957(49):84-88.

28.     Cellulose Acetate Phthalate Market. Transparency marketresearch. Transparency Market Reasearch.[Online]Available from:URL:https://www.transparencymarketresearch.com/cellulose-acetate phthalatemarket.html#:~:text=Cellulose%20acetate%20phthalate%20is%20derived%20from%20plant-based%20raw,capsules%20or%20as%20an%20enteric%20film%20coating%20material.

29.     CELLULOSEACETATEPHTHALATE.Gafacom.March22,2020[Online]2020March22.Available from:URL:https://www.bing.com/images/search?view=detailV2&ccid=1BZcB0VF&id=1C9135556EAF299EE85CBF9ABC48AC8D6BA4BD00&thid=OIP.1BZcB0VFrz0GwWrqY6Oa_QAAAA & mediaurl=https%3a%2f%2fgafacom.website%2fwp-content%2fuploads%2f2021%2f02%2fimage-

30.     Maryana, R., Muryanto, Triwahyuni, E. et al. Extraction of Cellulose Acetate from Cajuput (Melaleucaleucadendron)Twigsand Sugarcane (Saccharum officinarum)Bagasse by Environmentally Friendly Approach.WasteBiomassValor2021 Oct19;13,1535–1545.

31.     HydroxyethylMethylCellulose(MHEC).[Online] Available from https://www.kdochem.com/products/ hydroxyethyl-methyl-cellulose-mhec.html

32.     Methyl2hydroxyethylcellulose.Merk.[Online]Availablefrom:URL:https://www.bing.com/images/search?view=detailV2&ccid=cisxfXTI&id=5E9FE51C9C71A0D2B6BF2E34DE61F5FD54FC8ADD&thid=OIP.cisxfXTI3a2u602ka3ttXgAAAA&mediaurl=https%3a%2f%2fth.bing.com%2fth%2fid%2fR.722b317d74c8ddadaeeb4da46b7b6d5e%3frik%3d3Yr8VP31Yd40Lg%26riu%3dhttp%253a%252f%252fwww.sigmaaldrich.com%252fcontent%252fdam%252fsigmaaldrich%252fstructure5%252f126%252fmfcd00147597.eps%252f_jcr_content%252frenditions%252fmfcd00147597-

medium.png%26ehk%3dOmRrYYCzzD5Y6infZkGSN2ZVrtX6%252bycfJQCEbH1qa8w%253d%26risl%3d%26pid%3dImgRaw%26r%3d0&exph=144&expw=290&q=hydroxy+ethyl+methy

33.     Preparationmethodofhydroxyethylmethylcellulose.HebeiYida.2021May20.[Online]Availablefrom:URL:https://www.linkedin.com/pulse/preparation-method-hydroxyethyl-methyl-cellulose-%E5%8D%9E-%E5% AE%

34.     K.Deshmukh,M.BasheerAhamed,  R.R.Deshmukh,  S.K.KhadheerPasha,  P.R.Bhagat                                                                                                                                                                                                                                                                                                                                                                                                                         K.Chidambaram.3-BiopolymerCompositesWithHighDielectricPerformance:InterfaceEngineering.BiopolymerCompositesinElectronics.Elsevier.2017;27-128.

35.     SuryadiH, Harmita,AkbarMH,LestariP.Characterization of hydroxypropylcelluloseproducedfromα-cellulosebetung bamboo(Dendrocalamusasper)and it’sapplicationintabletformulation.IntJ ApplPharm2019;11:123-9.

36.     Muhammad Herpi Akbar, Harmita, Herman Suryadi. Preparation and characterization of hydroxyl                                         propylmethylcelluloseproducedfromα-cellulose betungbamboo(DendrocalamusAsper) and its evaluation gel formulation. International Journal of Pharmacy and Pharmaceutical Sciences PrintISSN:2656-0097|OnlineISSN:0975-1491.

37.     Thomas Quinten,Thomas De Beer ,jp Remon ,crisvervaet. Evaluation of injection molding asapharmaceuticalproductiontechnologyforsustained-releasematrixtablets.UniversiteitGent.2010Nov24.

38.     Dashmeet. Xanthan: Extraction, Properties, Uses and Applications | Carbohydrates | IndustrialBiotechnology.              [online]             Available URL:https://www.biotechnologynotes.com/industrial-biotechnology/microbial polysaccharides/xanthan-extraction-properties-uses-and-applications-carbohydrates-industrial-biotechnology/13964

39.     Elena Jovanovski, ShahenYashpal, Allison Komishon, Andreea Zurbau, Sonia Blanco Mejia,Hoang Vi ThanhHo, Dandan Li, John Sievenpiper, Lea Duvnjak, Vladimir Vuksan, Effect ofpsyllium(Plantagoovata)fiberonLDLcholesterolandalternativelipidtargets,non-HDLcholesterolandapolipoproteinB:asystematicreviewandmeta-analysisofrandomizedcontrolled trials, The American Journal of Clinical Nutrition, Volume 108, Issue 5, November2018,Pages922–932.

40.     JudithA.Marlett,MiltonH.Fischer.Gel-formingpolysaccharidefrompsylliumseedhusks.[Online]Available     from:URL:https://www.bing.com/images/search?view=detailV2&ccid=9aYNjIGH&id=295703F20B:

41.     Gabriela Sena Souza ,Ritade Cassia Bergamasco, Ana PaulaS tafussa, Grasiele Scaramal Madrona. Ultrasound-assisted extraction of Psyllium mucilage: Evaluation of functional and technological properties. RESEARCHARTICLE. Emirates Journal of Food and Agriculture.2020.32(4):238-244.

42.     Pharmacognosy and Phytochemistry : Enzymes and Protein Drug. [Online]Available from:URL:https://www.pharmacy180.com/article/gelatin-338/

43.     SushmaKommareddy, Dinesh B. Shenoy, and Mansoor M. Amijia.Gelatin Nanoparticles andTheirBiofunctionalization.MansoorAmiii.2007.

44.     Nikhil Jain, KhushbooGarg, N. C. Karmakar, S. K. Palei. Guar Gum in Hydraulic Fracturing in Indian Shale. Present technologyandSafetyScenarioinMiningandAlliedIndustries(PTSM).2013Feb.

45.     Complete Production Process of Guar Gum Powder. Avlast hydrocolloids.[online] Availablefrom:URL:https://www.avlasthydrocolloids.com/blog/complete-production-and-process-of-guar-gum-powder/

46.     Ji, Y., K. Seetharaman and P.J.White,2004. Optimizing small scale corn starch extraction nmethod foruse in thelaboratory.CerealChem.,81(1),55–58

47.     Ravi K. Upadhyay.Plant Latex. A natural source of pharmaceuticals and pesticides.A reviewarticle.InternationJournalofGreenPharmacy.P.169.

48.    

Latex.[online].Availablefrom:URL:https://www.bing.com/images/search?view=detailV2&ccid=zkHqkM8l&id=747530FB3C5

49.     Delia Spanò , Francesca Pintus, Claudia Mascia, Mariano Andrea Scorciapino, MarianoCasu, Giovanni Floris, Rosaria Medda. Extraction and characterization of a natural rubber fromEuphorbia characiaslatex.Biopolymers.2012Aug;97(8):589-94.

50.     SpitaelJ,KingetR,Naessens K.  Dissolutionrate of celluloseacetatephthalateandBrönstedcatalysislaw.PharmInd1980;42:846-849.

51.     LiL,NiR,ShaoY,MaoS.Carrageenananditsapplicationsindrugdelivery.CarbohydrPolym.2014Mar15;103:1-11.

52.     SavanerVarsha,VanditaBillore.Reviewonpectinisolationandapplicationinvarioussectors.Accentjournalofeconomics ecology & engineering.June 2020:72-73.

53.     Al-Tabakha MM. HPMC capsules: current status and future prospects. J Pharm Pharm Sci.2010;13(3):428-42.

54.     ApplicationofHPMCinpharmaceuticalindustry,SidleyChem:2019 Jan29.

55.     ApplicationofHPMCinpharmaceuticalindustry,SidleyChem: 2014Feb7.

56.     Felipe Azevedo Borges, Luis Felipe Cesar Bolognesi, Alberto Trecco, Bruno de CamargoDrago,LarisaBaldodeArruda,PauloNoronhaLisboaFilho,ElaiseGonçalvesPierri,CarlosFrederico de Oliveira Graeff, André Gonzaga dos Santos, Matheus Carlos Romeiro Miranda,RondinelliDonizettiHerculano,"NaturalRubberLatex:StudyofaNovelCarrierforCaseariasylvestris Swartz Delivery", International Scholarly Research Notices,( 2014), 5 pages,2014.

Related Images:



Recent Images



Neurological Complications among Pregnant and Post Partum Mothers in a Private Hospital, Yogyakarta, Indonesia
Review on Regulatory Affairs in Pharmaceutical Industry
Cucumber and Mint Soap: Preparation and Evaluation
Topical Delivery in Cosmetics: Enhancing Penetration and Bioavailability
Formulation and Evaluation of Polyherbal Soap
Gelatin: A Widely Used Pharmaceutical Excipient
Therapeutic insights into Saroglitazar: a dual PPAR- α/γ agonist targeting diabetic dyslipidaemia and NAFLD
A Comprehensive Review on Dyslipidemia and Obesity: Pathophysiology, Clinical Implications and Management Approaches
Antidiabetic Herbs and Polyherbal Antidiabetic Formulations –An Overview
Review on Clinical Research and Clinical Trials

Tags