Author(s): Vidya Ashok Kheradkar, Jameel Ahmed S. Mulla

Email(s): jameelahmed5@rediffmail.com

DOI: 10.52711/2231-5659.2023.00020   

Address: Vidya Ashok Kheradkar, Jameel Ahmed S. Mulla*
Department of Pharmaceutics, Shree Santkrupa College of Pharmacy, Ghogaon, Karad, MS-415111, India.
*Corresponding Author

Published In:   Volume - 13,      Issue - 2,     Year - 2023


ABSTRACT:
Nanotechnology includes nanosuspensions. Nanotechnology has become a huge area in the world of medicine. An appealing and promising approach to address the lipophilic like bio-available and poor solvability concerning the pharmaceuticals is nanosuspension. The majority of recently developed medications have poor water solubility. Drug formulation is usually complicated by medicines' limited water solubility. There are numerous standard methods for improving the solubility of pharmaceuticals that are poorly soluble, including Media Milling, Homogenization, precipitation technique, et cetera. A new approach in medication development is the development disintegrable medicinal formulations using nanotechnology. Particle sizes used in nanotechnology range are from 1 to 1000 nm. The increase in dissolving rate that results from drug particle size reduction into the submicron region naturally improves bioavailability. An efficient new method for improving the dissolution of low soluble in water medicines is nanosuspension technology. A nanosuspension improves the safety and effectiveness of a medicine by addressing issues with lipophilic like bio-available and poor solvability, as well as by changing the pharmacokinetics.


Cite this article:
Vidya Ashok Kheradkar, Jameel Ahmed S. Mulla. Nanosuspension: A Novel Technology for Drug Delivery. Asian Journal of Research in Pharmaceutical Sciences. 2023; 13(2):106-0. doi: 10.52711/2231-5659.2023.00020

Cite(Electronic):
Vidya Ashok Kheradkar, Jameel Ahmed S. Mulla. Nanosuspension: A Novel Technology for Drug Delivery. Asian Journal of Research in Pharmaceutical Sciences. 2023; 13(2):106-0. doi: 10.52711/2231-5659.2023.00020   Available on: https://ajpsonline.com/AbstractView.aspx?PID=2023-13-2-6


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