Drug content and entrapment efficiency of the RM-solid lipid nanoparticles were 97.26% and 86.57%, respectively. Nanoscale solid lipid particles of RM was formulated by the selected microemulsion method (M4) and it shows the particle size, polydispersity index and zeta potential were within acceptable limits. The best alternative selected was based on the highest priority. After constructing the AHP, the expert choice software was used to compute the overall priority of criteria, sub-criteria and alternatives. In the AHP, a decision of hierarchy was constructed with a goal, criteria, sub-criteria, and alternatives. One of the possibilities to overcome these difficulties, AHP was employed to find the suitable method. Improper method selection may lead to waste of time, loss of material and financial resources. The objective of this study was to select best method for the development of rasagiline mesylate (RM) loaded nanoscale solid lipid particles using analytic hierarchy process (AHP).
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