New Insights into Gastroretentive Dosage Forms in Delivery of Drugs | Bentham Science
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Current Nanomedicine

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ISSN (Print): 2468-1873
ISSN (Online): 2468-1881

Review Article

New Insights into Gastroretentive Dosage Forms in Delivery of Drugs

Author(s): Pooja Mathur, Vikas Jhawat* and Rohit Dutt

Volume 11, Issue 2, 2021

Published on: 17 September, 2021

Page: [91 - 101] Pages: 11

DOI: 10.2174/2468187311666210603121313

Price: $65

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Abstract

The oral drug delivery route is preferable to deliver the therapeutic agents because of the low cost, flexibility in dosage form, and easy administration of drugs responsible for a high range of patient compliance. GRDDS is also an oral route of drug delivery system to prolong gastric residence time, thereby achieving site-specific drug release in the upper GIT for local or systemic effect. Various strategies for developing systematic GRDDS include approaches with less density than stomach contents, systems with high density, swellable and expanding strategies, formulation of super porous hydrogels, gas generating systems, hydrodynamically balanced, raft forming approaches, floating drug delivery, and dual working systems. The massive challenge in developing systemic GRDDS is inter and intra-individual differences in gastric physiology. Despite so many formulation strategies, these systems might be associated with few benefits as well as drawbacks. Drawbacks with few approaches can be overthrown by formulating novel dual working systems such as a Mucoadhesive Floating Drug Delivery System (MFDDS). These systems can form an intimate contact of the formulation with the stomach's mucosal membrane and increase the dosage formulation's absorption at the target site. The present compilation aims to outline the stomach's physiological state, the ideal characteristics of drugs for GRDDS, key factors impacting GRDF efficacy, and gastroretentive formulation strategies that could become the critical processes in the pharmaceutical research for target drug delivery. It also explores various marketed products of GRDDS and future perspectives.

Keywords: Drug delivery, gastroretentive, floating system, mucoadhesive system, sustained release, dosage form.

Graphical Abstract
[1]
Homayun B, Lin X, Choi HJ. Challenges and recent progress in oral drug delivery systems for biopharmaceuticals. Pharmaceutics 2019; 11(3): 1-29.
[http://dx.doi.org/10.3390/pharmaceutics11030129] [PMID: 30893852]
[2]
Adebisi A, Conway BR. Gastroretentive microparticles for drug delivery applications. J Microencapsul 2011; 28(8): 689-708.
[http://dx.doi.org/10.3109/02652048.2011.590613] [PMID: 21726124]
[3]
Dahiya A, Rohilla A, Rohilla S, Khan MU. Gastroretentive dosage forms: an approach to oral controlled drug delivery systems. Int J Pharm Biol Arch 2011; 2(2): 615-20.
[4]
Murali S, Nair SC, Priya A. Drug delivery research: Current status and future prospects. Int J Pharm Sci Rev Res 2016; 40(1): 94-9.
[5]
Chhetri HP, Thapa P. An overview on gastroretentive drug delivery system. infection 2014; 10(1): 90-103.
[6]
Chawla G, Bansal A. A means to address regional variability in intestinal drug absorption. Pharm tech 2003; 27(2): 50-68.
[7]
Chudiwal V, Shahi S. Patent perspective of advanced gastroretentive drug delivery systems. Res J Pharm Dos Forms Technol 2016; 8(1): 15-23.
[http://dx.doi.org/10.5958/0975-4377.2016.00003.3]
[8]
Raza A, Bukhari NI, Karim S, Hafiz MA, Hayat U. Floating tablets of minocycline hydrochloride: Formulation, in-vitro evaluation and optimization. Future J Pharm Sci 2017; 3(2): 131-9.
[http://dx.doi.org/10.1016/j.fjps.2017.05.001]
[9]
Mandal UK, Chatterjee B, Senjoti FG. Gastro-retentive drug delivery systems and their in vivo success: A recent update. Asian J Pharm Sci 2016; 11(5): 575-84.
[10]
Pawar VK, Kansal S, Garg G, Awasthi R, Singodia D, Kulkarni GT. Gastroretentive dosage forms: a review with special emphasis on floating drug delivery systems. Drug Deliv 2011; 18(2): 97-110.
[http://dx.doi.org/10.3109/10717544.2010.520354] [PMID: 20958237]
[11]
Aslam R, Mehmood Y, Khan S, Yousaf H. Techniques and polymers used to design Gastroretentive drug delivery systems–a review. World J Pharm Pharm Sci 2014; 3(12): 970-110.
[12]
Shinde S, Tadwee I, Shahi S. Gastro retentive drug delivery system: A review. Int J Pharm Res & All Sci 2012; 1(1): 01-13.
[13]
Datir SK, Patil PB, Saudagar RB. Floating type drug delivery system: A review. J Drug Deliv Ther 2019; 9(2): 428-32.
[http://dx.doi.org/10.22270/jddt.v9i2.2492]
[14]
Arora S, Ali J, Ahuja A, Khar RK, Baboota S. Floating drug delivery systems: A review. AAPS PharmSciTech 2005; 6(3): E372-90.
[http://dx.doi.org/10.1208/pt060347] [PMID: 16353995]
[15]
Vedha HB, Brahma RA, Samyuktha RB. Floating drug delivery of nevirapine as a gastroretentive system. J Young Pharm 2010; 2(4): 350-5.
[http://dx.doi.org/10.4103/0975-1483.71622] [PMID: 21264092]
[16]
More S, Gavali K, Doke O, Kasgawade P. Gastroretentive drug delivery system. J Drug Deliv Ther 2018; 8(4): 24-35.
[http://dx.doi.org/10.22270/jddt.v8i4.1788]
[17]
Yadav S, Nyola NK, Jeyabalan G, Gupta M. Gastroretentive drug delivery system: A concise review. Inter J Res Pharm Sci 2016; 6(2): 19-24.
[18]
Vasava k, Ks R, Jha Ll. A review on gastro retentive drug delivery system (GRDDS) with special emphasis on formulation and development of floating microspheres. Int J Pharm Sci Rev Res 2011; 11(2): 76-82.
[19]
Mohan P, Doshi S, Khinchi MP, Sharma N, Agrawal D. An review on natural polymers approaches to floating drug delivery system. Asian journal of pharmaceutical research and development 2013; 1: 145-59.
[20]
Parikh DC, Amin AF. In vitro and in vivo techniques to assess the performance of gastro-retentive drug delivery systems: a review. Expert Opin Drug Deliv 2008; 5(9): 951-65.
[http://dx.doi.org/10.1517/17425247.5.9.951] [PMID: 18754747]
[21]
Kotreka U, Adeyeye MC. Gastroretentive floating drug-delivery systems: A critical review. Critical reviews™ in therapeutic drug carrier systems 2011; 28(1): 47-99.
[http://dx.doi.org/10.1615/CritRevTherDrugCarrierSyst.v28.i1.20]
[22]
Jassal M, Nautiyal U, Kundlas J, Singh D. A review: Gastroretentive drug delivery system (grdds). Indian J Pharm Bio Res 2015; 3(01): 82-92.
[23]
Ware M, Tiwari SP, Roy A, Satapathy T. New insights into gastro-retentive floating drug delivery systems. World J Pharma Sci 2013; 3(1): 252-70.
[24]
Tekade BW, Jadhao UT, Bari PH. RPatil V. A comprehnsive review ongastro-retentive drug delivery system. Innov Pharm Pharma 2017; 5(2): 94-102.
[25]
Makwana A, Sameja K, Parekh H, Pandya Y. Advancements in controlled release gastroretentive drug delivery system: A review. J Drug Deliv Ther 2012; 2(3): 12-21.
[http://dx.doi.org/10.22270/jddt.v2i3.164]
[26]
Kumar R, Philip A. Gastroretentive dosage forms for prolonging gastric residence time. Int J Pharm Med 2007; 21(2): 157-71.
[http://dx.doi.org/10.2165/00124363-200721020-00005]
[27]
Sarojini S, Manavalan R. An overview on various approaches to gastroretentive dosage forms. Int J Drug Dev Res 2012; 4(1): 1-3.
[28]
Badoni A, Ojha A, Gnanarajan G, Kothiyal P. Review on gastro retentive drug delivery system. The pharma innovation 2012; 1(8): 32-42.
[29]
Mali AD, Bathe RS. A review on gastroretentive floating drug delivery system. AJPTR 2015; 5(2): 107-32.
[30]
Gurnany E, Singhai P, Soni A, Jain R, Jain SK, Jain A. Gastro retentive drug delivery system-a review. J Pharm Res 2011; 4(6): 1899-908.
[31]
Tripathi J, Thapa P, Maharjan R, Jeong SH. 2019; Current state and future perspectives on gastroretentive drug delivery systems. Pharmaceutics 2019; 11(4): 2-22.
[http://dx.doi.org/10.3390/pharmaceutics11040193]
[32]
Streubel A, Siepmann J, Bodmeier R. Gastroretentive drug delivery systems. Expert Opin Drug Deliv 2006; 3(2): 217-33.
[http://dx.doi.org/10.1517/17425247.3.2.217] [PMID: 16506949]
[33]
Kajale AD, Chandewar AV. Recent advancement in gastroretentive drug delivery system-a review. Indo Am J Pharm Res 2013; 3: 5221-32.
[34]
kumar Shahwal V, Upadhyay A. Gastro-retentive floating drug delivery systems. Int J Biomed Res 2011; 2(6): 381-90.
[35]
Siraj S, Khurshid M, Nazim S. Various perspectives of gastro retentive drug delivery system; a review. Am J Adv Drug Deliv 2013; 1(4): 443-51.
[36]
Mukund JY, Kantilal BR, Sudhakar RN. Floating microspheres: A review. Braz J Pharm Sci 2012; 48(1): 17-30.
[http://dx.doi.org/10.1590/S1984-82502012000100003]
[37]
Rajak P, Bhattacharya A, Sharma N, Kataki MS, Rajkumari AN. Gastro-retentive floating drug delivery system-an approach in gastroretentive drug delivery. Int J Pharm Pharm Sci 2011; 3(Suppl. 4): 9-16.
[38]
Dhole AR, Gaikwad PD, Bankar VH, Pawar SP. A Review on floating multiparticulate drug delivery system-a novel approach to gastric retention. Int J Pharm Sci Rev Res 2011; 2: 205-11.
[39]
Prinderre P, Sauzet C, Fuxen C. Advances in gastro retentive drug-delivery systems. Expert Opin Drug Deliv 2011; 8(9): 1189-203.
[http://dx.doi.org/10.1517/17425247.2011.592828] [PMID: 21671821]
[40]
Garg RG, Gupta GD. Progress in controlled gastroretentive delivery systems. Trop J Pharm Res 2008; 7(3): 1055-66.
[http://dx.doi.org/10.4314/tjpr.v7i3.14691]
[41]
Maheta H, Patel MR, Patel KR, Patel MS. An overview on floating drug delivery system. PharmaTutor 2014; 2(3): 61-71.
[42]
Sowmya bJ, arvapalli s, gupta Jav. A review on gastroretentive drug delivery system. World J Pharm Life Sci 2019; 5(4): 101-11.
[43]
Rathod HJ, Mehta DP, Yadav JS. A review on gastroretentive drug delivery systems. PharmaTutor 2016; 4(7): 29-40.
[44]
Khanam N, Alam MI, Mian SS, Srinivas N. A review on novel approaches incorporated in the formulation of gastro retentive drug delivery system. System 2017; 33: 34.
[45]
Arunachalam A, Karthikeyan M, Konam K, et al. Floating drug delivery systems: A review. Inter J Res Pharm Sci 2011; 2(1): 76-83.
[46]
Mehta M, Neeta, Pandey P, Mahajan S. Gastro retentive drug delivery system: An overview. Res J Pharm Tech 2018; 11(5): 2157-60.
[47]
Ibrahim M, Naguib YW, Sarhan HA, Abdelkader H. Gastro-retentive oral drug delivery systems: a promising approach for narrow absorption window drugs. JABPS 2019; 2(3): 98-110.
[http://dx.doi.org/10.21608/jabps.2019.11357.1042]
[48]
Budal SP, Gupta AM, Mundhada DR. Gastro-retentive floating drug delivery system. IJPDA 2014; 2(8): 658-65.
[49]
Setia M, Kumar K, Teotia D. Gastro-retentive floating beads a new trend of drug delivery system. J Drug Deliv Ther 2018; 8(3): 169-80.
[http://dx.doi.org/10.22270/jddt.v8i3.1717]
[50]
Javaid MU, ul Ain Q, Tahir U, Shahid S. A summarized review about natural polymers role in floating drug delivery system and in-vivo evaluation studies. Int Curr Pharm J 2017; 6(4): 23-6.
[http://dx.doi.org/10.3329/icpj.v6i4.32951]
[51]
Talukder R, Fassihi R. Gastroretentive delivery systems: A mini review. Drug Dev Ind Pharm 2004; 30(10): 1019-28.
[http://dx.doi.org/10.1081/DDC-200040239] [PMID: 15595568]
[52]
Satinderkakar RS. Gastroretentive drug delivery systems: A review. Afr J Pharm Pharmacol 2015; 9(12): 405-17.
[http://dx.doi.org/10.5897/AJPP2015.4307]
[53]
Reddy S, Bijjika S, Rao S. Approaches to gastro retentive drug delivery systems: An overview. Inter J Res Phytochem Pharm 2017; 7(3): 50-63.
[54]
Gupta P, Gnanarajan PK, Kothiyal P. Floating drug delivery system: A review. Inter J Pharma Res Rev 2015; 4(8): 37-44.
[55]
Dhaneshwar P, Stephen P, Rajalakshmi AN. Sustained release effervescent floating bilayer tablets-a review of novel approach. PharmaTutor 2017; 5(8): 32-40.
[56]
Chordiya M, Gangurde H, Borkar V, Chandwad N. Technologies, optimization and analytical parameters in gastroretentive drug delivery systems. Curr Sci 2017; 112(5): 946-53.
[http://dx.doi.org/10.18520/cs/v112/i05/946-953]
[57]
Hua S. Advances in oral drug delivery for regional targeting in the gastrointestinal tract - influence of physiological, pathophysiological and pharmaceutical factors. Front Pharmacol 2020; 11(524): 524.
[http://dx.doi.org/10.3389/fphar.2020.00524] [PMID: 32425781]
[58]
Shah K, Sharma PK, Bhandari A, Garud A, Garud N. Floating microsphere a gastroretentive drug delivery systems. Review 2015; 4(3): 668-84.
[59]
Awasthi R, Kulkarni GT. Decades of research in drug targeting to the upper gastrointestinal tract using gastroretention technologies: where do we stand? Drug Deliv 2016; 23(2): 378-94.
[http://dx.doi.org/10.3109/10717544.2014.936535] [PMID: 25026414]
[60]
Pawar VK, Kansal S, Asthana S, Chourasia MK. Industrial perspective of gastroretentive drug delivery systems: physicochemical, biopharmaceutical, technological and regulatory consideration. Expert Opin Drug Deliv 2012; 9(5): 551-65.
[http://dx.doi.org/10.1517/17425247.2012.677431] [PMID: 22512596]
[61]
Kandwal M, Gnanarajan G, Kothiyal P. Floating drug delivery system: A novel approach. Pharma Innovation 2014; 3(3, Part A): 57-69.
[62]
Malik R, Garg T, Goyal AK, Rath G. Polymeric nanofibers: targeted gastro-retentive drug delivery systems. J Drug Target 2014; 1-16.
[PMID: 25268275]
[63]
Niranjanbhai BD, Mahendrakumar VN, Surendran CS, Shah Viral H, Upadhyay . Advances in grdds: Raft forming system a review. J Drug Deliv Ther 2012; 2(5): 123-8.
[64]
Kumar M, Kaushik D. An overview on various approaches and recent patents on gastroretentive drug delivery systems. Recent Pat Drug Deliv Formul 2018; 12(2): 84-92.
[http://dx.doi.org/10.2174/1872211312666180308150218] [PMID: 29521255]
[65]
Pund AU, Shendge RS, Pote AK. Current approaches on gastroretentive drug delivery systems. J Drug Deliv Ther 2020; 10(1): 139-46.
[http://dx.doi.org/10.22270/jddt.v10i1.3803]
[66]
Parmar HK, Pandya KK, Pardasani LJ, Panchal VS, Tandel HT. A Systematic Review On Mucoadhesive Drug Delivery System. World J Pharm Res 2017; 6(9): 337-66.
[67]
Nikalje AP, Tiwari S, Kamble S. Mucoadhesive: As oral controlled gastroretentive drug delivery system. International Journal of Research in Pharmacy & Science 2012; 2(3): 32-59.
[68]
Ayre A, Dand N, Lalitha KG. Gastro-retentive floating and mucoadhesive drug delivery systems-insights and current applications. IOSR J Pharma and Bio Sci 2016; 11(3): 89-96.
[69]
Bardonnet PL, Faivre V, Pugh WJ, Piffaretti JC, Falson F. Gastroretentive dosage forms: overview and special case of Helicobacter pylori. J Control Release 2006; 111(1-2): 1-18.
[http://dx.doi.org/10.1016/j.jconrel.2005.10.031] [PMID: 16403588]
[70]
Kaushik AY, Tiwari AK, Gaur A. Role of excipients and polymeric advancements in preparation of floating drug delivery systems. Int J Pharm Investig 2015; 5(1): 1-12.
[http://dx.doi.org/10.4103/2230-973X.147219] [PMID: 25599027]
[71]
Lopes CM, Bettencourt C, Rossi A, Buttini F, Barata P. Overview on gastroretentive drug delivery systems for improving drug bioavailability. Int J Pharm 2016; 510(1): 144-58.
[http://dx.doi.org/10.1016/j.ijpharm.2016.05.016] [PMID: 27173823]
[72]
Sharma M. A review of floating drug delivery systems. Asian J Biomed Pharma Sci 2013; 3(24): 1-12.
[73]
Mahor S, Chadha H, Ojha S. Review on gastro retention-floating versus mucoadhesive systems. Inter Journal Res Pharm Biosci 2019; 6(8): 6-14.
[74]
Rao SV, Priyanka B, Padmalatha K. Bilayer tablet technology: A novel approach. GSC Bio Pharm Sci 2019; 7(2): 022-8.
[75]
Deshpande RD, Gowda DV, Mahammed N, Maramwar DN. Bi-layer tablets-An emerging trend: A review. Int J Pharm Sci Res 2011; 2(10): 2534-44.
[76]
Sanjay S, Joshi V, Barpete PK. Gastroretentive drug delivery system: Current approaches. J Pharm Res 2009; 2(5): 881-6.
[77]
Malik P, Nagaich U, Malik RK, Gulati N. Pentoxifylline loaded floating microballoons: Design, development and characterization. J Pharm 2013; 0729.
[78]
Gholap SB, Banarjee SK, Gaikwad DD, Jadhav SL, Thorat RM. Hollow microsphere: A review. Int J Pharm Sci Rev Res 2010; 1(1): 74-9.
[79]
Dutta P, Sruti J, Patra N, Rao ME. Floating microsphere recent trends in the development of gastroretentive floating drug delivery system. Inter J Pharm Sci Nanotech 2011; 4(1): 1296-306.
[80]
Hooda A. Gastroretentive drug delivery systems: A review of formulation approaches. Pharma Innov 2012; 1(8): 79-107.
[81]
Chavanpatil MD, Jain P, Chaudhari S, Shear R, Vavia PR. Novel sustained release, swellable and bioadhesive gastroretentive drug delivery system for ofloxacin. Int J Pharm 2006; 316(1-2): 86-92.
[http://dx.doi.org/10.1016/j.ijpharm.2006.02.038] [PMID: 16567072]
[82]
Arun JK, Pattanayak D, Shrivastava B, Adepu R. Formulation and Evaluation of Floating and Mucoadhesive tablets containing Glipizide. Inter J Res Pharm Sci 2020; 11(1): 899-907.
[http://dx.doi.org/10.26452/ijrps.v11i1.1912]
[83]
Patil H, Tiwari RV, Repka MA. Recent advancements in mucoadhesive floating drug delivery systems: A mini-review. J Drug Deliv Sci Technol 2016; 31: 65-71.
[http://dx.doi.org/10.1016/j.jddst.2015.12.002]
[84]
Chalikwar SS, Gattani SG. A comprehensive review on development and investigational strategies for biphasic site-specific floating cum bioadhesive drug delivery system. J Pharm Res Clin Pract 2013; 3(4): 22-40.
[85]
Liu Y, Zhang J, Gao Y, Zhu J. Preparation and evaluation of glyceryl monooleate-coated hollow-bioadhesive microspheres for gastroretentive drug delivery. Int J Pharm 2011; 413(1-2): 103-9.
[http://dx.doi.org/10.1016/j.ijpharm.2011.04.030] [PMID: 21540088]
[86]
Nawaj SS. Development optimization and evaluation of dual mechanism based gastro floatable and bioadhesive drug delivery system for simvastatin. Asian J Pharm 2017.
[87]
Simons FJ, Wagner KG. Modeling, design and manufacture of innovative floating gastroretentive drug delivery systems based on hot-melt extruded tubes. Eur J Pharm Biopharm 2019; 137: 196-208.
[http://dx.doi.org/10.1016/j.ejpb.2019.02.022] [PMID: 30826475]
[88]
Sankar R, Jain SK. Development and characterization of gastroretentive sustained-release formulation by combination of swelling and mucoadhesive approach: a mechanistic study. Drug Des Devel Ther 2013; 7: 1455-69.
[PMID: 24348022]
[89]
Chen RN, Ho HO, Yu CY, Sheu MT. Development of swelling/floating gastroretentive drug delivery system based on a combination of hydroxyethyl cellulose and sodium carboxymethyl cellulose for Losartan and its clinical relevance in healthy volunteers with CYP2C9 polymorphism. Eur J Pharm Sci 2010; 39(1-3): 82-9.
[http://dx.doi.org/10.1016/j.ejps.2009.10.015] [PMID: 19903527]
[90]
Arza RA, Gonugunta CS, Veerareddy PR. Formulation and evaluation of swellable and floating gastroretentive ciprofloxacin hydrochloride tablets. AAPS PharmSciTech 2009; 10(1): 220-6.
[http://dx.doi.org/10.1208/s12249-009-9200-y] [PMID: 19277869]
[91]
Senjoti FG, Mahmood S, Jaffri JM, Mandal UK. Design and in-vitro evaluation of sustained release floating tablets of metformin HCl based on effervescence and swelling. Iran J Pharm Res 2016; 15(1): 53-70.
[PMID: 27610147]
[92]
Raut Desai S, Rohera BD. Formulation, in vitro evaluation and study of variables on tri-layered gastro-retentive delivery system of diltiazem HCl. Drug Dev Ind Pharm 2014; 40(3): 380-9.
[http://dx.doi.org/10.3109/03639045.2012.763138] [PMID: 23369093]
[93]
Das SR, Panigrahi BB, Pani MK. Gastro retentive drug delivery system: A review. Inter J Current Adv Res 2019; 8(5): 18643-50.
[94]
Porwal A, Dwivedi H, Pathak K. Decades of research in drug targeting using gastroretentive drug delivery systems for antihypertensive therapy. Braz J Pharm Sci 2017.
[http://dx.doi.org/10.1590/s2175-97902017000300173]

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