APID Academic Profile Identity

Dr. Dr. Qudsia Kanwal

Associate Professor · Chemistry
Author
APID
7823
ORCID
0000-0002-4303-0694
Google Scholar
https://scholar.google.com/citations?user=C8PWQioAAAAJ&hl=en
Location
Lahore, Punjab province, Pakistan
Expertise
Phytomedicine, nanomedicine, for infectious diseases, diabetes, anticancer , drug designing and delivery
Areas of interest
drug designing and smart delivery,
Member since
August 2024

Biography

Dr. Qudsia Kanwal is Associate professor at Chemistry department , The University of Lahore. She is working in this department since 2016. she is working as Lab coordinator and as a section head of organic chemistry section. She is an active researcher. She has 40 publications of journals of international repute with IF: 150.875. She has developed many prototype products for industrial applications. Her research interest are Organic synthesis, phytochemistry, development of biomaterial for bone tissue engineering and as mucoadhesive drug delivery, drug designing, development and delivery for wound healing, diabetes and cancer. She has recently developed cost effective mouth wash against dental caries from herbal origin. She has designed Temp & pH sensitive drug delivery system for anticancer target specific drug delivery. She is also working on different environmental issues like water purification and antismog agents using self cleaning Nano sized materials to reduce water and environmental pollution. 63 MPhil students and 2 PhD students are on her credit. 3 PhD and 7 Mphil students are working under her supervision.

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Publications

  1. A fast response colorimetric sensor based on food color for ammonia detection
  2. Biosynthesized Metallic and Bimetallic Nanoparticles as Effective Biocides for Plant Protection: Plausible Mechanisms and Challenges
  3. Computational investigations of different iron oxide–coronene nanoclusters: a DFT study
  4. Nanoenzymes: A Radiant Hope for the Early Diagnosis and Effective Treatment of Breast and Ovarian Cancer
  5. Sustainable, economical and rapid treatment of multiple lung diseases using therapeutic potential of curcumin nanoparticles