Development and Evaluation of Novel Bionanoparticles Loaded with Nanosized Lamotrigine by Using the Novel Isolated Biopolymer from Phaseolus vulgaris Seeds
Abstract
The aim of this research was to isolate and characterize the novel biopolymer from Phaseolus vulgaris seeds and to formulate lamotrigine loaded bionanoparticles using this biomaterial. The biopolymer was isolated by simplified and economical process and analysed for different physico-chemical and spectral properties. The nanosizing of lamotrigine was done by bath sonication method and its particle size in nano-range was screened by UV method. The bionanosuspension loaded with nanosized lamotrigine was prepared by bath sonication for 15 cycles (1cycle equal to 3 minutes). The formulated bionanosuspension loaded with lamotrigine using biopolymer was compared with lamotrigine loaded bionanosuspension by using HPMC. The bionanosuspension was subjected for pH study, dispersibility study, % entrapment efficiency, nanosizing screening, particle size study and in vitro study for drug release and stability study of formulated bionanosuspension. The best formulation LPVu7 showed up to 90.36 ±0.9% drug release in 36 hours. having t 50% of 17 hours and t80% of 29 hours with r2 value of 0.9927 as compared to release from LSP5 with 92.43±0.68% having t 50% of 16 hours and t80% of 28 hours with r2 value of 0.9951 in 36 hours. The results reveal that isolated biopolymer may be used as an alternative to synthetic polymer because of its novel inbuilt bioretardant cum biostabilizing properties. The formulated bionanosuspension are feasible for delivering the nanosized lamotrigine in sustained manner for prolonged time for long term treatment of epilepsy.
Keywords:
Biopolymer, Phaseolus vulgaris, Lamotrigine, BionanosuspensionDOI
https://doi.org/10.25004/IJPSDR.2020.120306References
Satheesh Madhav NV, Tangri P. Formulation and evaluation of zidovudine bio-micro dwarfs using a novel bio muco resident from Artocarpus heterophyllus. Int J. Pharm Tech Res. 2011; 3:169–174.
Satheesh Madhav NV, Shankar MSU. A novel smart mucoadhesive biomaterial from Lallimantia royalena seed coat. J Sci Asia. 2011;37:69–71.
Satheesh Madhav NV, Pangatey P, Indian Patent: Development of flexy bio- adhesive film loaded with nanosized zidovudine for brain specificity via novelistic soft palatal route, 2015.
Satheesh Madhav NV, Tangri P. Design and evaluation of insulin loaded Bio- Flexy films for trans-soft palatal to brain delivery. Int J Therap Applicat. 2012; 4:10–18.
Satheesh Madhav N V, Yadav AP. Development and evaluation of novel repaglinide biostrips for translabial delivery. Int. Res. J. Pharm. 2013; 4: 198-202.
Ojha A, Satheesh Madhav NV. A novel potent muco- bioadhesant polymer from seeds of Ricinus communis. World J. Pharm. Pharmaceut. Sci. 2014;3:2154-2165.
Satheesh Madhav N V, Yadav AP. A novel translabial platform utilizing bioexcipients from Litchi chinensis for the delivery of rosiglitazone maleate. Acta Pharm Sinica. B, 2013; 3,408-415.
Muller. Nanosuspensions as particulate drug formulation in therapy rationale for development and what we can expect for the future. Adv Drug Deliv Rev. 2001;47:3-19.
Rogawski MA, Loscher W. The neurobiology of antiepileptic drugs. Nat. Rev. Neurosci. 2004; 5:553-564.
Zhang J. Preparation of amorphous cefuroxime axetil nanoparticles by controlled nanoprecipitation method without surfactants. Int J Pharm. 2006;323:153-63.
Patsalos PN, Froscher W, Pisani F. The importance of drug interactions in epilepsy therapy. Epilepsia. 2002;43:365-385.
Dawood NM. Formulation and characterization of lafutidine nanosuspension for oral drug delivery system. Int J Appl Pharm, 2018;10:20-30.
Madhav S, Singh K. Smart ungual biopenetrant from the roots of Beta vulgaris. Journal of Appl Pharm Res. 2017; 29; 5(2):21-6.
Martin A. Physical, Chemical Principles in the Pharmaceutical Sciences. 3rd ed. Varghese Publishing House, Bombay, 2001.
Varshney S, Satheesh Madhav N V. Smart approach for preparing nanosized topiramate loaded bio-flexy films using former from piper nigrum and screening its In-vitro performance. Nanomedicine and nanotechnology. 2018; 3(3): 000147.
Subrahmanyam CVS, Thimma Setty. J. Laboratory Manual of Physical Pharmaceutics. 2nd ed. Vallabh Prakashan, New Delhi, 2002.
Tyagi Y, Satheesh Madhav N V. Design selegiline loaded bio-nanosuspension for the management of depression using novel bio-retardent from Manilkara zapota. Drug development and in Industrial Pharmacy. 2019;45: 1351-1360.
Kamila SN, Satheesh Madhav N V, Sarkar CN. Evaluation of effective Medhya formulation on trans-cranial treatment on rat. Int J Biomed Res. 2014; 5(6):427-31.
Satheesh Madhav N, Singh B. A smart approach for delivering of nanosized olanzapine using piper betel biopolymer rate controlling flexi films for transvermillion delivery.Asian Journal of Nanoscience and Materials. 2019;02: 314-326.
Satheesh Madhav N V, Raina D. Formulation and evaluation of duloxetine loaded bio-nanosuspension for brain specificity via acoustic meatus. SOJ Pharmacy & pharmaceutical science. 2017;4(1):1-5.
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