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Current Applied Polymer Science

Editor-in-Chief

ISSN (Print): 2452-2716
ISSN (Online): 2452-2724

Review Article

Microsponge: An Advanced Drug Delivery System

Author(s): Swati Rakholiya, Disha Dutta* and Shiv Kumar Gupta

Volume 6, Issue 2, 2023

Published on: 12 March, 2024

Page: [76 - 86] Pages: 11

DOI: 10.2174/0124522716275567240226073505

Price: $65

Abstract

Porous microsponges are a type of polymeric delivery method. These tiny, spherical particles, resembling sponges, have a large porous surface, which helps to modify drug release, stabilize the substance, and lessen side effects. To keep dose forms on the skin, micro sponges can be successfully included intopical medicine administration systems. Since the outer surface is frequently porous, the material can continuously flow out of the sphere. This system can suspend or entrap a variety of substances, and it can be incorporated into a manufactured product like a liquid, gel, cream, or powder. The majority of vehicles and components can be used with these formulations, which are stable in the pH range of 1 to 11 and up to 130ºC. Microsponges are created to reduce side effects, change medication release, and enhance stability to successfully distribute a pharmaceutically active component at the lowest amount achievable.

Keywords: Microsponges topical drug delivery, porous, liquid-liquid suspension polymerization, quasi emulsion solvent diffusion, controlled release.

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[1]
Singhvi G, Manchanda P, Hans N, Dubey SK, Gupta G. Microsponge: An emerging drug delivery strategy. Drug Dev Res 2019; 80(2): 200-8.
[http://dx.doi.org/10.1002/ddr.21492] [PMID: 30456763]
[2]
Vitthal P, Anuradha S. A review on microsponges drug delivery system. IJRAR 2020; 7(1): 961-74. Available from: https://ssrn.com/abstract=3677770
[3]
Pradhan SK. MDS as the versatile tool for drug delivery system. Int J Res Pharm Chem 2011; 1(2): 243-58. Available from: https://www.ijrpc.com/
[4]
Shah CN, Shah DP. Microsponges: A revolutionary path breaking modified drug delivery of topical drug. Int J Pharmaceut Res 2014; 6(2): 1-13.
[5]
Sharma S, Kaur M, Kaur S. Microsponge technology as a novel approach for topical drug delivery: An acquainted review. IOSR J Pharm Biol Sci 2020; 15(5): 1-13.
[http://dx.doi.org/10.9790/3008-1505030113]
[6]
Patel A, Upadhyay P, Trivedi J, Shah S, Patel J. Microsponges as the versatile tool for topical route: A review. Int J Pharm Sci Res 2012; 3(9): 2926-37.
[http://dx.doi.org/10.13040/IJPSR.0975-8232.3(9).2926-37]
[7]
Vishwakarma P, Choudhary R. Dec15:Microsponges: A novel strategy to control the delivery rate of active agents with reduced skin irritancy. J Drug Deliv Ther 2019; 9(6-s): 238-47.
[http://dx.doi.org/10.22270/jddt.v9i6-s.3757]
[8]
Amrutiya N, Bajaj A, Madan M. Development of microsponges for topical delivery of mupirocin. AAPS PharmSciTech 2009; 10(2): 402-9.
[http://dx.doi.org/10.1208/s12249-009-9220-7] [PMID: 19381834]
[9]
Kaity S, Maiti S, Ghosh A, Pal D, Ghosh A, Banerjee S. Microsponges: A novel strategy for drug delivery system. J Adv Pharm Technol Res 2010; 1(3): 283-90.
[http://dx.doi.org/10.4103/0110-5558.72416] [PMID: 22247859]
[10]
Patil RS. Microsponge drug delivery system: A novel dosage form. Am J PharmTech Res 2012; 2(4): 227-51.
[11]
Kumar S, Tyagi LK, Singh D. Microsponge delivery system (MDS): A unique technology for delivery of active ingredients. Int J Pharm Sci Res 2011; 2(12): 3069-80.
[http://dx.doi.org/10.13040/IJPSR.0975-8232.2(12).3069-80]
[12]
Balamurugan K, Kshirasagar GP. Microsponge: As a drug delivery system. J Pharm Innov 2019; 8(1): 139-43.
[13]
Won R. Method for delivering an active ingredient by controlled time release utilizing a novel delivery vehicle which can be prepared by a process utilizing the active ingredients as a Porogen. US Patent 4690825, 1987.
[14]
Mandava SS, Thavva V. Novel approach: Microsponge drug delivery system. IJPSR 2012; 3(4): 967-80.
[http://dx.doi.org/10.13040/IJPSR.0975-8232.3(4).967-80]
[15]
Nidhi K, Verma S, Kumar S. Microsponge: An advanced drug delivery system. J Clin Sci Res 2021; 10(2): 108-11.
[http://dx.doi.org/10.4103/JCSR.JCSR_42_19]
[16]
Patidar K, Soni M, Saxena C, Soni P, Sharma DK. Micro sponges versatile vesicular approach for transdermal drug delivery system. J Glob Pharma Technol 2010; 2(3): 154-64.
[17]
D’Souza JI, More HN. Topical anti-inflammatory gels of fluocinolone acetonide entrapped in eudragit based microsponge delivery system. Res J Pharm Technol 2008; 1(4): 502-6.
[18]
Tile MK, Pawar AY. Microsponges: A novel strategy for drug delivery. Int J Pure App Biosci 2015; 3(1): 224-35. Available from: http://www.ijpab.com/
[19]
Patel SB, Patel HJ, Seth AK. Microsponge drug delivery system: An overview. J Glob Pharma Technol 2010; 2(8): 1-9.
[20]
Salunkhe P. Formulation and evaluation of microsponge gel for topical delivery of antifungal drug. Int J Appl Pharm 2017; 9(4): 30-7.
[http://dx.doi.org/10.22159/ijap.2017v9i4.17760]
[21]
Aloorkar N, Kulkarni AS, Ingale DJ, Patil RA. Microsponges as innovative drug delivery systems. Int J Pharm Sci Nanotechnol 2012; 5(1): 1597-606.
[http://dx.doi.org/10.37285/ijpsn.2012.5.1.2]
[22]
Aloorkar NH. A new cornucopia in topical drug delivery microsponge technology. Asian J Pharm Sci Technol 2014; 4(1): 48-60.
[23]
Tiwari A, Mishra MK, Shukla A, Yadav SK. Microsponge: Anaugmented drug delivery system. Am J PharmTech Res 2016; 6(6): 79-95.
[24]
Kar AK, Kar B, Parya H, Kundu S, Hirawat R. A novel approach on microsponge: Multifunctional modern dosage form. Int J Pharm Sci Rev Res 2018; 51(2): 64-72. Available from: https://globalresearchonline.net/journalcontents/v51-2/12.pdf
[25]
Rajeswari S, Swapna V. Microsponges as a neoteric cornucopia for drug delivery systems. Int J Curr Pharm Res 2019; 11(3): 4-12.
[http://dx.doi.org/10.22159/ijcpr.2019v11i3.34099]
[26]
Kappor D, Patel M, Vyas RB, Lad C, Tyagi BL. A review on microsponge drug delivery system. J Drug Deliv Ther 2014; 4(5): 29-35.
[http://dx.doi.org/10.22270/jddt.v4i5.978]
[27]
Farooq U, Malviya R, Sharma P. Advancement in microsphere preparation using natural polymers and recent patents. Recent Pat Drug Deliv Formul 2014; 8(2): 111-25.
[http://dx.doi.org/10.2174/1872211308666140218110520] [PMID: 24597612]
[28]
Khopade A, Jain S, Jain N. The microsponge. Eastern Pharmacist 1996; 39(459): 49-53.
[29]
Srivastava R, Pathak K. Microsponges: A futuristic approach for oral drug delivery. Expert Opin Drug Deliv 2012; 9(7): 863-78.
[http://dx.doi.org/10.1517/17425247.2012.693072] [PMID: 22663167]
[30]
Thomas TP. Microsponge drug delivery system for topical delivery - A review. IJPCBS 2016; 6(4): 424-31. Available from: https://www.ijpcbs.com/articles/microsponge-drug-delivery-ststemfor-topicaldeliverya-review.pdf
[31]
Dubey D, Malviya R, Sharma P. Advancement in microsponge drug delivery system: preparation methods, patents and commercial utility. Recent Pat Drug Deliv Formul 2014; 8(2): 101-10.
[http://dx.doi.org/10.2174/1872211308666140305222905] [PMID: 24548242]
[32]
Charde MS, Ghanawat PB, Welankiwar AS, Kumar J, Chakole RD, Microsponge A. Novel New Drug Delivery System: A Review. Int J Adv Pharm 2013; 2(6): 1-8. Available from: https://core.ac.uk/download/pdf/335077979.pdf
[33]
Nanda S. Microsponge drug delivery system: An overview. World J Pharm Pharm Sci 2013; 2(3): 1032-43.
[34]
Aldawsari H. Microsponges as promising vehicle for drug delivery and targeting: Preparation, characterization and applications. Afr J Pharm Pharmacol 2013; 7(17): 873-81.
[http://dx.doi.org/10.5897/AJPP12.1329]
[35]
Propranolol hydrochloride. 1967. Available from: https://go.drugbank.com/salts/DBSALT000549
[37]
Rawat SP, Dhyani A, Singh V, Juyal D. Brief review of microsponges: An update. Pharma Innov J 2017; 6(5): 134-9. Available from: https://www.thepharmajournal.com/archives/?year=2017&vol=6&issue=5&ArticleId=1059
[38]
Ravi R, Senthilkumar SK, Parthiban S. Microsponges drug delivery system: A review. Int J Pharm Rev Res 2013; 3: 6-11.
[39]
Emanuele AD. Preparation, characterisation, and drug release from thermoresponsive microspheres. Int J Pharm 1995; 118(2): 237-42.
[http://dx.doi.org/10.5897/AJPP12.1329]
[40]
Chadawar V, Shaji J. Microsponge delivery system. Curr Drug Deliv 2007; 4(2): 123-9.
[http://dx.doi.org/10.2174/156720107780362320] [PMID: 17456031]
[41]
Muthukumar S, Sridevi M, Sankar C, Arulkumaran KSG. Microsponge Delivery System. Research and Development in Pharmaceutical Science. 2021; Volume II: pp. 83-93. Available from: https://www.bhumipublishing.com/wp-content/uploads/2021/07/Research-and-Development-in-Pharmaceutical-Science-Volume-II.pdf
[42]
Çomoğlu T, Gönül N, Baykara T. Preparation and in vitro evaluation of modified release ketoprofen microsponges. Farmaco 2003; 58(2): 101-6.
[http://dx.doi.org/10.1016/S0014-827X(02)00007-1] [PMID: 12581775]
[43]
Panday P, Shukla N, Sisodiya D, Jain V, Mahajan S. Design and characterization of microsponge loaded controlled release epicutaneous gel of lornoxicam. Appl Med Res 2015; 1(1): 16-21.
[http://dx.doi.org/10.5455/amr.20150127052147]
[44]
Rekha U, Manjula BP. Formulation and evaluation of microsponges for topical drug delivery of Mometasone furoate. Int J Pharm Pharm Sci 2011; 3(4): 133-7. Available from: https://innovareacademics.in/journal/ijpps/Vol3Issue4/2534.pdf
[45]
Gade R, Makineni A, Aparna A, et al. Design and development of hydroxyzine hydrochloride controlled release tablets based on microsponge technology. Carib J SciTech 2013; 1: 172-84. Available from: https://caribjscitech.com/index.php/cjst/article/view/93
[46]
Kadnor NA, Pande VV, Kadam R, Upadhye SA. Fabrication and characterization of sertaconazole nitrate microsponge as a topical drug delivery system. Indian J Pharm Sci 2015; 77(6): 675-80.
[http://dx.doi.org/10.4103/0250-474X.174986] [PMID: 26997694]
[47]
Orr C Jr. Application of mercury penetration to materials analysis. Powder Technol 1969; 3(1): 117-23.
[http://dx.doi.org/10.1016/0032-5910(69)80064-1]
[48]
Orlu M, Cevher E, Araman A. Design and evaluation of colon specific drug delivery system containing flurbiprofen microsponges. Int J Pharm 2006; 318(1-2): 103-17.
[http://dx.doi.org/10.1016/j.ijpharm.2006.03.025] [PMID: 16687222]
[49]
Kumar S. Microsponge delivery system (MDS): A unique technology for delivery of active ingredients. IJPSR 2011; 2(12): 3069-80. Available from: https://ijpsr.com/bft-article/microsponge-deliverysystem-mds-a-unique-technology-for-delivery-of-activeingredients/
[50]
Khattab A, Nattouf A. Microsponge based gel as a simple and valuable strategy for formulating and releasing Tazarotene in a controlled manner. Sci Rep 2022; 12(1): 11414.
[http://dx.doi.org/10.1038/s41598-022-15655-z] [PMID: 35794139]
[51]
He Y, Majid K, Maqbool M, et al. Formulation and characterization of lornoxicam-loaded cellulosic-microsponge gel for possible applications in arthritis. Saudi Pharm J 2020; 28(8): 994-1003.
[http://dx.doi.org/10.1016/j.jsps.2020.06.021] [PMID: 32792844]
[52]
Darekar A, Pawar P, Saudagar RB. A review on microsponge as emerging drug delivery system. J Drug Deliv Ther 2019; 9(3-s): 793-801.
[http://dx.doi.org/10.22270/jddt.v9i3-s.2828]
[53]
Tiwari A, Tiwari V, Palaria B, Kumar M, Kaushik D. Microsponges: A breakthrough tool in pharmaceutical research. Future J Pharm Sci 2022; 8(1): 31.
[http://dx.doi.org/10.1186/s43094-022-00421-9]
[54]
D’souza JI, Harinath NM. The microsponge drug delivery system: For delivering an active ingredient by controlled time release. Pharma Info Net 2008; 6(3): 63. Available from: https://www.researchgate.net/publication/26575578_The_Microsponge_Drug_Delivery_System_For_Delivering_an_Active_Ingredient_by_Controlled_Time_Release
[55]
Dutta D, Goyal N, Sharma DK. Preclinical evaluation from in silico to in vivo study of polyherbal microsponge sunscreen gel. J Cosmet Dermatol 2022; 21(8): 3578-85.
[http://dx.doi.org/10.1111/jocd.14674] [PMID: 34962064]
[56]
Jyoti J, Kumar S. Innovative and novel strategy: Microsponges for topical drug delivery. J Drug Deliv Ther 2018; 8(5): 28-34.
[http://dx.doi.org/10.22270/jddt.v8i5.1885]
[57]
Tripathi PK, Gorain B, Choudhury H, Srivastava A, Kesharwani P. Dendrimer entrapped microsponge gel of dithranol for effective topical treatment. Heliyon 2019; 5(3): e01343.
[http://dx.doi.org/10.1016/j.heliyon.2019.e01343] [PMID: 30957038]
[58]
Jafar M, Mohsin AA, Khalid MS, Alshahrani AM, Alkhateeb FS, Alqarni AS. Ranitidine hydrochloride stomach specific bouyant microsponge: Preparation, in-vitro characterization, and in-vivo anti-ulcer activity. J Drug Deliv Sci Technol 2020; 55: 101453.
[http://dx.doi.org/10.1016/j.jddst.2019.101453]
[59]
Devi N, Kumar S, Prasad M, Rao R. Eudragit RS100 based microsponges for dermal delivery of clobetasol propionate in psoriasis management. J Drug Deliv Sci Technol 2020; 55: 101347.
[http://dx.doi.org/10.1016/j.jddst.2019.101347]
[60]
Patel CN. Microsponge as topical drug delivery system. J Glob Pharma Technol 2010; 2: 17-29.
[61]
Obiedallah MM, Abdel-Mageed AM, Elfaham TH. Ocular administration of acetazolamide microsponges in situ gel formulations. Saudi Pharm J 2018; 26(7): 909-20.
[http://dx.doi.org/10.1016/j.jsps.2018.01.005] [PMID: 30416345]
[62]
Kumar PM, Ghosh A. Development and evaluation of silver sulfadiazine loaded microsponge based gel for partial thickness (second degree) burn wounds. Eur J Pharm Sci 2017; 96: 243-54.
[http://dx.doi.org/10.1016/j.ejps.2016.09.038] [PMID: 27697504]
[63]
Mahesh Kumar P, Ghosh A. Development and evaluation of metronidazole loaded microsponge based gel for superficial surgical wound infections. J Drug Deliv Sci Technol 2015; 30: 15-29.
[http://dx.doi.org/10.1016/j.jddst.2015.09.006]
[64]
Arya P, Pathak K. Assessing the viability of microsponges as gastro retentive drug delivery system of curcumin: Optimization and pharmacokinetics. Int J Pharm 2014; 460(1-2): 1-12.
[http://dx.doi.org/10.1016/j.ijpharm.2013.10.045] [PMID: 24184218]
[65]
Mohan S. Formulation of fluconazole as topical antifungal gels by microsponge-based delivery systems. Indones J Pharm 2017; 28(4)
[http://dx.doi.org/10.14499/indonesianjpharm28iss3pp158]
[66]
Osmani RAM, Aloorkar NH, Ingale DJ, et al. Microsponges based novel drug delivery system for augmented arthritis therapy. Saudi Pharm J 2015; 23(5): 562-72.
[http://dx.doi.org/10.1016/j.jsps.2015.02.020] [PMID: 26594124]
[67]
Rajeshree M, Harsha P, Vishnu P. Microsponge for topical drug delivery system. Int J Pharm Technol 2014; 5(4): 2839-51.
[68]
Saha T. Microsponge Drug Delivery System. 2017. Available from: https://www.researchgate.net/publication/321293435_Microsponge_Drug_Delivery_System
[69]
D’Souza JI, More HN. Topical antiinflammatory gels of fluocinolone acetonide entrapped in eudragit-based microsponge delivery system. Res J Pharm Tech 2008; 1(4): 502-6. Available from: https://rjptonline.org/HTML_Papers/Research%20Journal%20of%20Pharmacy%20and%20Technology__PID__2008-1-4-101.html
[70]
Biharee A, Bhartiya S, Yadav A, Thareja S, Jain AK. Microsponges as drug delivery system: Past, present, and future perspectives. Curr Pharm Des 2023; 29(13): 1026-45.
[http://dx.doi.org/10.2174/1381612829666230404082743] [PMID: 37013425]
[71]
Naga Jyothi K, Dinesh Kumar P, Arshad P, Karthik M, Panneerselvam T. Microsponges: A promising novel drug delivery system. J Drug Deliv Ther 2019; 9(5-s): 188-94.
[http://dx.doi.org/10.22270/jddt.v9i5-s.3649]
[72]
Mohite PB, Khanage SG, Harishchandre VS, Shirshath Y. Recent advances in microsponges drug delivery system. J Crit Rev 2016; 3(1): 9-16. Available from: https://www.jcreview.com/admin/Uploads/Files/61c719137e7417.08748294.pdf
[73]
Khan M, Akhtar N, Sharma V, Pathak K. Product development studies on sonocrystallized curcumin for the treatment of gastric cancer. Pharmaceutics 2015; 7(2): 43-63.
[http://dx.doi.org/10.3390/pharmaceutics7020043] [PMID: 25923809]
[74]
Sonali R. Formulation and evaluation of prednisolone loaded microsponges for colon targeted drug delivery: In-vitro and pharmacokinetic study. Int J Pharm Sci Res 2014; 5(5): 1994-2005.
[http://dx.doi.org/10.13040/IJPSR.0975-8232.5(5).1994-05]
[75]
Aibibu D, Hild M, Wöltje M, Cherif C. Textile cell-free scaffolds for in situ tissue engineering applications. J Mater Sci Mater Med 2016; 27(3): 63.
[http://dx.doi.org/10.1007/s10856-015-5656-3] [PMID: 26800694]
[76]
Sumbria R, Gupta NB, Bhandari N, Kumar A, Mahajan S. Microsponges: Topical preparation and its applications. World J Pharm Pharm Sci 2017; 6(4): 629-42.
[http://dx.doi.org/10.20959/wjpps20174-8923]
[77]
Shyam SM, Vedavathi T. Novel approach: Microsponge drug delivery system. Int J Pharm Sci Res 2012; 3(4): 967-80. Available from: https://ijpsr.com/bft-article/novel-approach-microspongedrug-delivery-system/
[78]
Ghadge M, Purakasythya D, Pramanik A, Garg SK. Microsponge - aeon in the field of topical formulation. Int J Pharm Pharm Sci 2018; 14(1): 39-54. Available from: https://ijppr.humanjournals.com/wp-content/uploads/2019/01/5.Madhvi-Ghadge-Dipayan-Purakasythya-Anup-Pramanik-Shiv-K.-Garg.pdf
[79]
Jagtap SC, Karale AA, Ambekar AW. Microsponge: A novel topical drug delivery system. J Drug Deliv 2014; 3(4): 1-9.
[80]
Tejashri G, Amrita B, Darshana J. Cyclodextrin based nanosponges for pharmaceutical use: A review. Acta Pharm 2013; 63(3): 335-58.
[http://dx.doi.org/10.2478/acph-2013-0021] [PMID: 24152895]
[81]
Saroj K. Microsponges as the versatile tool for drug delivery system. IJRPC 2011; 1(2): 243-58. Available from: https://www.researchgate.net/publication/235945631_Microsponges_as_the_versatile_tool_for_drug_delivery_system
[82]
Garud ST, Tiwari K. Microsponges: A novel approach. Asian J Pharm Sci Tech 2018; 8(1): 1-9.
[83]
Shaha V. Microsponges drug delivery: A review. IJRPS 2010; 1: 212-8.
[84]
Kaur LP. Topical Gel: A Recent Approach for Novel Drug delivery. Asian J of Biomed and Pharm Sci 2013; 3(17): 1-5. Available from: https://www.alliedacademies.org/articles/topical-gel-a-recent-approach-for-novel-drug-delivery.pdf
[85]
Nacht S, Kantz M. The microsponge: A novel topical programmable delivery system. Top Drug Deliv Syst 1992; 42: 299-325.
[86]
Tanner T, Marks R. Delivering drugs by the transdermal route: review and comment. Skin Res Technol 2008; 14(3): 249-60.
[http://dx.doi.org/10.1111/j.1600-0846.2008.00316.x] [PMID: 19159369]
[87]
Dumbre K. Microsponges: A novel drug delivery system. Asian J Pharmaceut Res Develop 2014; 2(2): 65-74. Available from: https://www.ajprd.com/index.php/journal/article/view/173
[88]
Iwai S, Sawa Y, Ichikawa H, et al. Biodegradable polymer with collagen microsponge serves as a new bioengineered cardiovascular prosthesis. J Thorac Cardiovasc Surg 2004; 128(3): 472-9.
[http://dx.doi.org/10.1016/j.jtcvs.2004.04.013] [PMID: 15354111]
[89]
Sagavkar SR. Innovative and novel strategy: Microsponges drug delivery system. Pharma Biosci Int J Univ Pharma Biosci 2014; 2(2): 65-74.
[90]
Borawake PD, Kauslya A, Shinde JV, Chavan RS. Microsponge as an emerging technique in novel drug delivery system. J Drug Deliv Ther 2021; 11(1): 171-82.
[http://dx.doi.org/10.22270/jddt.v11i1.4492]
[91]
Kydonieus AF, Berner B. Transdermal Delivery of Drugs. Boca Raton: CRC Press 1987.
[92]
Ahmed A, Makram M, Sayed M, Louis D. An overview of microsponge as a novel tool in drug delivery. MADD 2018; 2(3): 1-7.
[http://dx.doi.org/10.31031/MADD.2018.02.000537]
[93]
Valluru R, Ravi G, Bose SP, Damineni S. Microsponges- a comprehensive review: Success and challenges. Indo Am J Pharm Res 2019; 9(7): 3056-67.
[http://dx.doi.org/10.5281/zenodo.3356512]
[94]
Verma R, Kaushik D. Design and optimization of candesartan loaded self-nanoemulsifying drug delivery system for improving its dissolution rate and pharmacodynamic potential. Drug Deliv 2020; 27(1): 756-71.
[http://dx.doi.org/10.1080/10717544.2020.1760961] [PMID: 32397771]
[95]
Verma R, Kaushik A, Almeer R, Rahman MH, Abdel-Daim MM, Kaushik D. Improved pharmacodynamic potential of rosuvastatin by self-nanoemulsifying drug delivery system: An in vitro and in vivo evaluation. Int J Nanomedicine 2021; 16: 905-24.
[http://dx.doi.org/10.2147/IJN.S287665] [PMID: 33603359]

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