Dr. Faiza Nadeem

Name

Dr. Faiza Nadeem

Designation

Assistant Professor

Email

faiza.nadeem@duhs.edu.pk

Office

Dow College of Biotechnology, Serobiology Building, 3rd Floor, DUHS, Ojha Campus

Qualifications

Ph.D. (Biotechnology), Dr. A.Q. Khan institute of Biotechnology and Genetic Engineering (KIBGE), University of Karachi, Karachi, Pakistan.

 https://orcid.org/0000-0002-0382-6559

Research

  • Shahid, F., Aman, A., & Qader, S. A. U. (2024). Synthesis and characterization of cross-linked aggregates of dextranase (CLAD) for improved stability and recycling efficiency of the biocatalyst. Biocatalysis and Agricultural Biotechnology, 103151.
     
  • Aman A, Shahid, F., Pervez S. 2022. Exploration of a three-dimensional matrix as micro-reactor in the form of reactive polyaminosaccharide hydrogel beads using multipoint covalent interaction approach. Biotechnology Letters. 44(2):299-319.
     
  • Shahid, F., Javed U, Aman A, Qader SAU. (2019). Role of metal ions on the catalytic efficiency of dextran hydrolyzing biocatalyst. Pakistan Journal of Pharmaceutical Sciences, 32(6), pp.2761-2765.
     
  • Shahid, F., Aman A, Pervez S, Qader SAU. (2019). Degradation of long chain polymer (Dextran) using thermostable dextranase from hydrothermal spring isolate (Bacillus megaterium). Geomicrobiology Journal. 36(8):683-693.
     
  • Shahid, F., Aman A, Qader SAU. (2019). Immobilization of dextranase using anionic natural polymer alginate as a matrix for the degradation of a long-chain biopolymer (dextran). International Journal of Polymer Science, 2019.
     
  • Pervez S, Nawaz MA, Shahid, F., Aman A, Tauseef I, Qader SAU. (2019). Characterization of cross-linked amyloglucosidase aggregates from Aspergillus fumigatus KIBGE-IB33 for continuous production of glucose. International journal of biological macromolecules, 135:1252-1260.
     
  • Shahid, F., Aman A, Nawaz MA, Karim A, Qader SAU. (2017). Chitosan hydrogel microspheres: an effective covalent matrix for crosslinking of soluble dextranase to increase stability and recycling efficiency. Bioprocess and biosystems engineering, 40: pp.451-461.
     
  • Zafar SB, Siddiqui NN, Shahid, F., Qader SAU, Aman A. (2018). Bioprospecting of indigenous resources for the exploration of exopolysaccharide producing lactic acid bacteria. Journal of Genetic Engineering and Biotechnology, 16(1):17-22.
     
  • Pervez S, Shahid, F., Aman A, Qader SAU, (2017). Algal biomass: a sustainable, economical and renewable approach for microbial production of pectinolytic enzymes using submerged and solid state fermentation techniques. Biocatalysis and Biotransformation, 35(6), pp.442-449.
     
  • Jahan N, Shahid, F., Aman A, Mujahid TY, Qader SAU, (2017). Utilization of agro waste pectin for the production of industrially important polygalacturonase. Heliyon, 3(6):e00330.
     
  • Ali M, Qader SAU, Shahid, F., Arayne MS, Mumtaz M. (2017). Synthesis, characterization and enzyme inhibitory activity of new pyrazinamide iron complexes. Pak J Pharm Sci, 30(3):825-31.
     
  • Bibi Z, Shahid, F., Qader SAU, Aman A. (2015). Agar–agar entrapment increases the stability of endo-β-1, 4-xylanase for repeated biodegradation of xylan. International journal of biological macromolecules, 75:121-127.
     
  • Ashraf R, Shahid, F., Ali TA. (2007). Association of fungi, bacteria and actinomycetes with different composts. Pak. J. bot, 39(6):2141-2151.