Manchester Metropolitan University, UK
Biography:
Pankaj Singla is pursuing PhD under the supervision of Prof. R. K. Mahajan from GNDU, Amritsar India and currently he is working as Visiting PhD scholar under the supervision of Dr. Marloes Peeters in Manchester Metropolitan University, Manchester UK. His area of interest is to deliver the hydrophobic drugs viz. anticancer drugs, antiepileptic drugs via Polymeric based nanoparicles
Pluronic (Tri–block copolymers) play an important role in pharmaceutical performance to increase the solubility and bioavailability of hydrophobic drugs. These micelles often lack stability, exhibit unsatisfactory drug loading capacity, or have broad size distribution this work aims to solve this issue by studying the solubilization of hydrophobic drugs in different pluronic micelles at variable temperature. Herein, a series of five pluronic micelles viz. P84, P85, F127, F108 and F68 have been select for study solubilization of hydrophobic drug Lamotrigine (LAM) at different temperatures i.e. 370C, 470C and 570C using UV-Visible spectroscopy.
Manchester Metropolitan University, UK
Biography:
Pankaj Singla is pursuing PhD under the supervision of Prof. R. K. Mahajan from GNDU, Amritsar India and currently he is working as Visiting PhD scholar under the supervision of Dr. Marloes Peeters in Manchester Metropolitan University, Manchester UK. His area of interest is to deliver the hydrophobic drugs viz. anticancer drugs, antiepileptic drugs via Polymeric based nanoparicles
Pluronic (Tri–block copolymers) play an important role in pharmaceutical performance to increase the solubility and bioavailability of hydrophobic drugs. These micelles often lack stability, exhibit unsatisfactory drug loading capacity, or have broad size distribution this work aims to solve this issue by studying the solubilization of hydrophobic drugs in different pluronic micelles at variable temperature. Herein, a series of five pluronic micelles viz. P84, P85, F127, F108 and F68 have been select for study solubilization of hydrophobic drug Lamotrigine (LAM) at different temperatures i.e. 370C, 470C and 570C using UV-Visible spectroscopy.