Characterization and Biological Evaluation of Solid Dispersed Nanoparticles of Synthetic Epoksilignan Targeting Pancreatic Cancer Cell as an Anticancer Agent

Author:

Rifai Yusnita1,Nurhaidah 1,Tanggulungan Weltiansy1,Rahman Latifah2,Sartini 2,Bhuyan Deep Jyoti3

Affiliation:

1. Pharmaceutical Chemistry Laboratory, Faculty of Pharmacy, University of Hasanuddin, Makassar 90245, Indonesia

2. Pharmaceutical Technology Laboratory, Faculty of Pharmacy, University of Hasanuddin, Makassar 90245, Indonesia

3. NICM Health Research Institute, Western Sydney University, NSW, 2751, Australia

Abstract

MMEO (3′-methoxy-3′,4″(methylenedioxy)-2,5-epoksilignan-4′ol-6-on) is a derivative of DMEO (3′-methoxy-3″,4″(methylenedioxy)-2,5-epoksilignan-4′,6-diol) synthesized through demethylation using dimethylsulfoxide-acetic anhydride reagent. MMEO inhibits Hedgehog signaling at a concentration of 4.1 μM. The current study aimed to formulate MMEO as solid dispersed nanoparticles and determine their physicochemical properties and inhibitory activities. XRD (X-ray diffraction) analysis showed that the crystalline particles of the pure compound MMEO was smaller than MMEO nanoparticles. Image J software showed that at concentrations of 25 mg/mL and 50 mg/mL, the average nanoparticle sizes were 852.26 nm and 178.65 nm, respectively. Therefore, the MMEO solid dispersion system with the PEG 4000 polymer increases the solubility of MMEO. The higher the concentration of PEG 4000 the greater the solubility of MMEO. Treating pancreatic cancer cell lines with MMEO silenced the smoothened function by downregulating mRNA Ptch expression. This study suggests that MMEO may inhibit pancreatic cancer disease.

Publisher

American Scientific Publishers

Subject

Pharmaceutical Science,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

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