DEVELOPMENT AND IN-VITRO EVALUATION OF QUANTUM DOTS AS A CARRIER FOR DELIVERY OF 5-FLUOROURACIL

Authors

  • Nikhil N Godbole Modern College of Pharmacy
  • Upendra C Galgatte Department of Pharmaceutics, Modern College of Pharmacy, Sector 21, Yamunanagar, Nigdi, Pune 411044, Maharashtra, India
  • Pravin D Chaudhari Modern College of Pharmacy

Keywords:

Anti-cancer, 5-fluorouracil, Nanoparticles, Quantum dots, Targeted drug delivery

Abstract

Objective: The present study was aimed to develop and evaluate quantum dots (QDs) as a carrier for delivery of 5-fluorouracil (5-FU).

Methods: This research work includes a synthesis, characterization and in vitro study of 5-fluorouracil (5-FU) QDs. Zinc oxide QDs were synthesized, and the drug was loaded on them. These QDs were further coated with Eudragit E PO to achieve drug release only at the acidic pH range as well as to overcome release of drug in the formulation vehicle itself.

Results: For 5-FU QDs optimized batch, yield (74±0.001 %), drug loading (85.58±0.08 %) and drug content (95±0.015%) were observed. FTIR spectroscopy revealed no any incompatibility between drug, polymer and metal SEM images shown drug loaded QDs with rough surface and Eudragit E PO coated QDs with smooth surface. The DSC curve of 5-FU exhibits peak at 286 °C corresponding to its melting point and Eudragit E PO coated QDs exhibit peak at 272 °C. This shifting of the endotherm suggested possible interaction of 5-FU and Eudragit E PO coated QDs. The diffractogram of pure drug showed multi-crystalline nature. However pure Eudragit E PO showed amorphous nature. Optimized QDs showed the crystalline nature of the drug. Mean particle size of optimized formulation batch was 201.92 nm and zeta potential was found+1.85 mV.

Conclusion: An Optimized batch of QDs has the potential to utilize in future for imaging of cancer cells and targeting delivery of 5-FU.

 

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References

Mishra. Quantum dot probes in disease diagnosis. Int J Pharm Pharm Sci Res 2011;1:42-6.

Qi L, Gao X. Emerging application of quantum dots for drug delivery and therapy. Expert Opin Drug Delivery 2008;5:263-7.

Ghasemi Y, Peymani P, Afifi S. Quantum dot: a magic nanoparticle for imaging, detection and targeting. Acta Biomed 2009;80:156-65.

Pericleous P, Gazouli M, Lyberopoulou A, Rizos A, Nikiteas N, Efstathopoulos E. Quantum dots hold promise for early cancer imaging and detection. Int J Cancer 2012;131:519–28.

Smith A, Dave S, Nie S, True L, Gao X. Multicolour quantum dots for molecular diagnostic of cancer. Expert Rev Mol Diagn 2006;6:231-44.

Modani S, Kharwade M, Nijhawan M. Quantum dots: a novelty of medical field with multiple applications. Int J Curr Pharm Res 2013;5:55-9.

Degim IT, Kadioglu D. Cheap, suitable, predictable and manageable nanoparticles for drug delivery: Quantum Dots. Curr Drug Delivery 2013;10:32-8.

Klaus Florey. Analytical Profiles of drug Substances. Academic Press 2005;2:221-44.

Tummala S, Satish Kumar M, Prakash A. Formulation and characterization of 5-fluorouracil enteric coated nanoparticles for sustained and localized release in treating colorectal cancer. Saudi Pharm J 2015;23:308–14.

Farquharson. Surface-enhanced raman spectral measurements of 5-fluorouracil in saliva. Molecules 2008;13:2608-27.

Indian Pharmacopoeia. The government of India, Ministry of Health and Family welfare. Ghaziabad 2010;2:562.

Published

01-01-2016

How to Cite

Godbole, N. N., U. C. Galgatte, and P. D. Chaudhari. “DEVELOPMENT AND IN-VITRO EVALUATION OF QUANTUM DOTS AS A CARRIER FOR DELIVERY OF 5-FLUOROURACIL”. International Journal of Pharmacy and Pharmaceutical Sciences, vol. 8, no. 1, Jan. 2016, pp. 289-96, https://journals.innovareacademics.in/index.php/ijpps/article/view/9024.

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Original Article(s)