Formulation, In-vitro and In-vivo Evaluation of Chronology-based Mucoadhesive Drug Delivery System of an Antihypertensive Drug
Bhagyesh U Janugade*, Neelam Singla
School of Pharmacy, Suresh Gyan Vihar University, Jaipur, Rajasthan, India.
Received: 28th July, 2023; Revised: 03rd December 2023; Accepted: 12th February, 2024; Available Online: 25th March, 2024
ABSTRACT
Current research aimed to prepare and estimate chronology-based mucoadhesive PDDS of antihypertensive drug losartan potassium through formulation of fast-dissolving core tablet and incorporation of core tablet to polymer coating to formulate bioadhesive PDDS through direct compression system. The coating was done by using polymers ethyl cellulose and carbopol 934. Pre-compression and post-compression parameters, drug release, lag time and mucoadhesive examination was assessed for the formulation. The expected lag time for hypertension is 8 hours; hence, this lag time was achieved by using a bioadhesive pulsatile system. The optimized formulation showed 8 hours lag time with appropriate mucoadhesion for an equivalent period. Moreover, in-vitro as well as in-vivo mucoadhesion investigations reflected the positive outcomes. Consequently, the BPDDS was the finest preventative substitute for drugs with the highest absorption in the stomach and for drugs used to treat diseases related to circadian rhythm.
Keywords: Mucoadhesive drug delivery system, Losartan potassium, Lag time, Circadian rhythm, Bioadhesion, Drug release. International Journal of Drug Delivery Technology (2024); DOI: 10.25258/ijddt.14.1.14
How to cite this article: Janugade BU, Singla N. Formulation, In-vitro and In-vivo Evaluation of Chronology-based Mucoadhesive Drug Delivery System of an Antihypertensive Drug. International Journal of Drug Delivery Technology. 2024;14(1):94-101.
REFERENCES
- Patra JK, Das G, Fraceto LF, Campos EV, Rodriguez-Torres MD, Acosta-Torres LS, Diaz-Torres LA, Grillo R, Swamy MK, Sharma S, Habtemariam S. Nano based drug delivery systems: recent developments and future prospects. Journal of 2018;16(1):1-33. DOI: 10.1186/s12951-018- 0392-8
- Yun YH, Lee BK, Park Controlled Drug Delivery: Historical perspective for the next generation. Journal of Controlled Release. 2015;219:2-7. DOI: 10.1016/j.jconrel.2015.10.005
- Kolimi P, Youssef AA, Narala S, Nyavanandi D, Dudhipala N, Bandari S, Repka Development and characterization of itraconazole non-aqueous creams for the treatment of topical fungal infections. Journal of Drug Delivery Science and Technology. 2022 Oct 1;76:103818. DOI:10.1016/j. jddst.2022.103818
- Zate SU, Kothawade PI, Mahale GH, Kapse KP, Anantwar SP. Gastro retentive bioadhesive drug delivery system: A review. International Journal of Pharmaceutical 2010;2:1227- 1235. DOI: https://sphinxsai.com/s_v2_n2/ PT_V.2No.2 phamtech_vol2no.2_pdf/PT=39%20(1227-1235).pdf
- Rapolu K, Sanka K, Vemula PK, Aatipamula V, Mohd AB, Diwan Optimization and characterization of gastroretentive floating drug delivery system using Box-Behnken design. Drug development and industrial pharmacy. 2013;39(12):1928-1935. DOI: https://doi.org/10.3109/03639045.2012.699068
- Reddy YS, Rao GK, Annapurna A, Murthy KR. Formulation and Evaluation of High-Density Gastro Retentive Drug Delivery Systems of Norfloxacin. International Journal of Advances in Pharmacy and Biotechnology. 2020;6:24-28. DOI: 10.38111/ 20200604005
- Rewar S, Bansal New Approaches in Pulsatile Drug Delivery System: A Review. International Journal of Pharmaceutical & Biological Archives. 2014;5(2):27-43.
- Devireddy S, Jonnalagadda L. A literature review on pulsatile drug delivery system. International Journal of Pharmaceutical Sciences Review and Research. 2022;72(2):7-16. DOI: https:// net/journalcontents/v72-2/02.pdf
- Redkar M, Patil S, Nalkar S, Pandav A comprehensive review on floating pulsatile drug delivery system. World Journal of Pharmaceutical Research. 2019; 8(8):304-329. DOI: 10.20959/ wjpr20198-15265
- Malladi M, Jukanti Floating pulsatile drug delivery system of famotidine: Design, statistical optimization, and in vitro evaluation. International Journal of Pharmacy and Pharmaceutical Sciences. 2016;8(5):169-181. DOI: admin_ Journal_manager_11120_36540_1_CE-libre.pdf.
- Sayeed A, Hamed MM, Rafiq M, Ali N. Pulsatile drug delivery system: recent technology. International journal of pharmaceutical sciences and research. 2013;4(3):960-969.
- Barad M. Design of Experiments (DOE)- a valuable multi- purpose methodology. Applied Mathematics. 2014;5(14):2121- 2129. DOI:10.4236/am.2014.514206
- Shinde S, Sangave P, Chougule K, Patil S, Patil S, Bhingardeve Formulation and evaluation of bioadhesive pulsatile drug delivery system of an antilipidemic drug. World Journal of Pharmacy and Pharmaceutical Sciences. 2018;7(8):633-642. DOI: https://storage.googleapis.com/journal-uploads/wjpps/ article_issue/1533032091.pdf
- Indian Pharmacopoeia 2014, Edition 7, The Indian Pharmacopoeia Commission, New Delhi, 2014:959-961.
- United State Pharmacopeia, Convention 12601, Twin-brook Parkway, Rockville, MD 20852, 2011:241-280.
- Amer MA, Essa EA, Donia AA, El Maghraby Development and evaluation of liquid oral controlled release systems for Losartan potassium. Journal of Applied Pharmaceutical Science. 2019;9(8):086-093. DOI: DOI: 10.7324/JAPS.2019.90812
- Gholami M, Souraki BA, Shomali A, Pendashteh A. Saline wastewater treatment by bioelectrochemical process (BEC) based on Al-electrocoagulation and halophilic bacteria: optimization using ANN with new approach. Environmental Technology. 2023:1-21. DOI: https://doi.org/10.1080/09593330.2023.2253365
- Schneider F, Koziolek M, Weitschies W. In vitro and in vivo test methods for the evaluation of gastroretentive dosage Pharmaceutics. 2019;11(8):416. DOI: https://doi.org/10.3390/ pharmaceutics11080416
- Naseem F, Shah SU, Rashid SA, Farid A, Almehmadi M, Alghamdi S. Metronidazole based floating bioadhesive drug delivery system for potential eradication of H. pylori: preparation and in vitro characterization. Polymers. 2022;14(3):519. DOI: https://doi.org/10.3390/polym14030519
- Panpaliya D, Sahare A, Linje P, Dhoka P. Formulation, development and evaluation of sustained release microspheres of levetiracetam, International Journal of Pharmaceutical Sciences Review and Research. 2021;71(2):165-173. DOI: 10.47583/ 2021.v71i02.026
- Bhavani Prasad V, Koteswara Rao GSN, Roja Rani B, Raj Kumar B, Sudhakar B, Uma Devi P, Ramana Murthy KV. In-vitro and in-vivo evaluations tests for floating drug delivery systems: a review. International Journal of Pharmacy. 2012;2(3):645-655. DOI: http://vnips.in/Downloads/Eswar.pdf
- Singh PK. Bilayer and floating-bioadhesive tablets: innovative approach to gastroretension. Journal of drug delivery and 2011;1(1):32-35. DOI https://doi.org/10.22270/jddt. v1i1.26
- Moon A, Kondawar M, Shah R. Formulation and evaluation of press-coated indomethacin tablets for pulsatile drug delivery system. Journal of Pharmacy Research. 2011;4(3):564-566.
- Zhang J, Sun R, Jiang T, Yang G, Chen L. Circadian blood pressure rhythm in cardiovascular and renal health and disease. Biomolecules. 2021;11(6):868. DOI: https://doi.org/10.3390/ biom11060868
- Patil S, Salokhe P, Patil S, Ustad J, Shedbale S. Formulation and evaluation of bioadhesive pulsatile drug delivery system of telmisartan. International Journal of Research in Pharmaceutical Sciences. 2020;11(2):1282-1287. DOI: https://doi.org/10.26452/ v11i2.1982
- Patil S, Rakshe A, Jagtap R, Jagtap S. Press coated bioadhesive pulsatile tablet of lisinopril for chronotherapy of cardiac disorders: In-vitro evaluation. Research Journal of Pharmacy and Technology. 2022;15(7):3057-3062. DOI: http://dx.doi. org/10.52711/0974-360X.2022.00511
- Park K, Robinson JR. Bioadhesive polymers as platforms for oral-controlled drug delivery: method to study bioadhesion. International journal of 1984;19(2):107-127. DOI: https://doi.org/10.1016/0378-5173(84)90154-6
- Butreddy A, Sarabu S, Almutairi M, Ajjarapu S, Kolimi P, Bandari S, Repka MA. Hot-melt extruded hydroxypropyl methylcellulose acetate succinate based amorphous solid dispersions: Impact of polymeric combinations on supersaturation kinetics and dissolution performance. International Journal of 2022 Mar 5;615:121471. https://doi.org/10.1016/j. ijpharm.2022.121471
- Suddala SG, Sahoo SK, Yamsani MR. Development and evaluation of floating pulsatile drug delivery system using meloxicam. International Journal of Drug Delivery 2017;7(4):244-254. DOI: 10.25258/ijddt.v7i04.10647.
- Chavan GM, Devineni J, Dev D, Shirode AR, Minhas PS. Formulation Development of Mucoadhesive Tablets for Treatment of Hypertension using Losartan International Journal of Drug Delivery Technology. 2017;7(3):220-233. DOI: https:// doi.org/10.25258/ijddt.v7i03.9565
- Boorugu R, Radha GV. Development and Evaluation of Eplerenone Microbeads as Floating Drug Delivery System using Design of Experiment. International Journal of Pharmaceutical Quality Assurance. 2023;14(4):837-846. DOI: 10.25258/ 14.4.02
- Kolhe MH, Gilhotra RM, Asane GS. Development of Floating Tablet of Amlodipine Besylate for Bioavailability Improvement in Animal Model. International Journal of Pharmaceutical Quality Assurance. 2021;12(1):61-68. DOI: 10.25258/ijpqa.12.1.10
- Akhade B, Chatap V, Jain P, Bhat Design, Development and Characterization of Ropinirole Mouth Dissolving Film by using Spin Coating Technique. International Journal of Drug Delivery Technology. 2023;13(2):516-521. DOI: 10.25258/ijddt.13.2.10