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Narayan Chandra Mishra
Narayan Chandra Mishra Associate Professor misrafpt[at]iitr.ac.in 0132-271-4352/4353
Areas of Interest
  • Biotechnology, Chemical Engineering, Tissue Engineering, Biotechnology, Biofuels, Solid Waste Management
  • Polymer Blends and Composites, Polymers for Drug Delivery, Tissue Engineering and Biosensors
  • Nanotechnology, Nanofibers, Nanoparticles, Drug delivery, Biosensor
Professional Background
FromToDesignationOrganisation
19941995Process EngineerSupreme Paper Mills Ltd., Kolkata
19972001Lecturer, Dept. of Chemical EngineeringBeant College of Engg. and Technology, Punjab
20022006Research ScientistMax-Planck-Institute of Colloids and Interfaces, Germany
20062007Postdoctoral Research FellowAcademia Sinica, Taipei, Taiwan
20072013Assistant ProfessorIIT Roorkee, India
2014to dateAssociate professorIIT Roorkee, India
Educational Details
DegreeSubjectUniversityYear
PhDInterface Science & Engineering (Thin Liquid Film Stability)Max-Planck-Institute of Colloids and Interfaces, Germany2005
M.Tech.Chemical EngineeringIIT Kanpur, Kanpur, India1997
B.Tech.Chemical TechnologyCulcutta University1994
B.Sc. (Hons)Chemistry St. Xavier's College, Calcutta1991
National International Collaboration
TopicOrganisationLevel
Tissue EnginereringAIIMS, New Delhi, Jaslok Hospital, MumbaiRP
Tissue Engineering, NanotechnologyAcademia Sinica, TaipeiRP
Books Authored
  1. Mishra, N. C. and Mitra, Sharamistha, ‘Polymeric Nanofibers in Regenerative Medicine’, in Book of “Nanomedicine for Drug Delivery and Therapeutics”(2013) edit Mishra, A.K., John Wiley & Sons, New Jersey, USA.
  2. Mishra, N. C. and Gupta, S., ‘Materials for Tissue Engineering’, Recent Res. Devel. Mat. Sci. Engg., 4(2011): 41-52, Transworld Research Network (ISBN: 978-81-7895-537-7).
Refereed Journal Papers

1.

Gautam, S., Chia-Fu Chou, Dinda, A. K., Potdar, P.D. and Mishra, N. C., ‘Fabrication and characterization of PCL/gelatin/chitosan ternary nanofibrous composite scaffold for tissue engineering applications’,  Journal of Materials Science 49 (2014) 1076–1089.

 

2.

Gautam, S., Chia-Fu Chou, Dinda, A. K., Potdar, P.D. and Mishra, N. C.,Surface modification of nanofibrous polycaprolactone/gelatin composite scaffold by collagen type I grafting for skin tissue engineering’, Materials Science & Engineering C  34 (2014) 402–409.

 

3.

Gupta, S.K., Dinda, A.K., Potdar, P.D., Mishra, N. C., ‘Surface Modified Goat-Lung Decellularized Scaffold for Bio-Artificial Skin Tissue Engineering Applications’, Journal of Biomaterials and Tissue Eng. 3(2013) 643-652.

 

4.

Gupta, S.K., Dinda, A.K., Potdar, P.D., Mishra, N. C., Fabrication and characterization of scaffold from cadaver goat-lung tissue for skin tissue engineering applications, Material Science and Engineering C 33,7(2013) 4032-4038.

 

5.

Gupta, S.K., Dinda, A.K., Potdar, P.D., Mishra, N. C., Modification of decellularized goat-lung scaffold with chitosan/nanohydroxyapatite composite for bone tissue engineering applications, BioMed Research International, 2013 (2013) 1-11.

 

6.

Gautam, S., Dinda, A. K., and Mishra, N. C., ‘Fabrication of polycaprolactone/gelatine composite nanofibrous tissue engineering scaffold by electrospinning method’, Materials Science & Engineering C  33,3 (2013) 1228–1235.

 

7.

Vashisth, P., Nikhil, K., Pemmaraju,S.C., Pruth, P.A., Mallick, V,.Singh, H., Patel, A., Mishra, N.C., Singh, R.P. and Pruthi, V., ‘Antibiofilm activity of quercetin-encapsulated cytocompatible nanofibers against Candida albicans’, Journal of Bioactive and Compatible Polymers 28,6 (2013) 652-665.

 

8.

Sharma, C., Dinda, A.K., Mishra, N. C.,‘Fabrication of chitosan-gelatin-alginate composite tissue engineering scaffold by a novel “zero-surfactant foaming-technique’, Journal of Applied Polymer Science 127, 4 (2013) 3228-3241.

 

9.

Sharma, C., Dinda, A. K. and Mishra, N. C., ‘Synthesis and Characterization of Glycine Modified Chitosan-Gelatin-Alginate Composite Scaffold for Tissue Engineering Applications’, Journal of Biomaterials and Tissue Engineering 2(2012)133-142.

 

10.

Gupta S., Dinda, A.K., Sharma, C.,Ray, A. K. and Mishra, N.C., “Tooth Tissue Engineering: Potential and Pitfalls”, Journal of Biomimetics, Biomaterials and Tissue Engineering 12 (2012) 59-81.

 

11.

Nanda, H. S. and Mishra, N.C., ‘Amphotericin B” loaded natural biodegradable nanofibers as a potential drug delivery system against Leishmaniasis’, Current Nanoscience, 7(6) (2011) 943-949.

 

12.

Sharma, C., Gautam S., Dinda, A. K., Mishra, N. C., ‘Cartilage Tissue Engineering: Current Scenario and Challenges’ Advanced Materials Letters, 2(2) (2011) 90-99.

 

13.

Chung, K-y., Mishra, N. C., Wang, C-c., Lin, F-h. and Lin, K-h., “Fabricating Scaffold by Microfluidics”, Biomicrofluidics, AIP 3 (2009) 022403-1-8.

 

            14.

Dutt, D., Mishra, AK, Kumar, A, Mishra, N C., Cost reduction and upgrading of basic properties of Absorbent grade Paper, Bioresources 7, 3 (2012) 3125-3131.

 

15.

Koshle, V. K., Bhardwaj, N. K. and Mishra, N. C., ‘Studies on deinkability factors of old newsprints by using different surfactants and process variables’, IPPTA 22(4) (2010) 127-132.

 

16.

Mishra, N. C., Müller, H.-J., Krustev, R., Möhwald, H., “Properties of foam films stabilized with, tetra-ethyl ammonium perfluoro octane sulfonate” J. Fluorine Chemistry 127 (2006)133-139.

 

17.

Mishra, N. C., Müller, H.-J. and Krustev, R., Möhwald, H., “Interactions and Stability of Foam Films from Pentaethyleneglycol Monodecyl Ether” Colloids and Surfaces A282-283 (2006) 92-98.

 

18.

Mishra, N. C., Muruganathan, RM., Müller, H.-J. and Krustev, R., “The dependence of the interactions in foam films on surfactant concentration” Colloids and Surfaces A 256 (2005) 77-83.

 

19.

Mishra, N. C. and R. P. Singh, “Equation of State Modeling of Excess Molar Volumes”, Ind. Chem. Eng. Section A 43(3) (2001) 152-163.

 

20.

Sinha, S. and Mishra, N. C., “Diesel Fuel Alternative from Vegetable Oils” Chemical Engineering World 32 (1997) 77–80.

 

21.

Sinha, S., Mishra, N. C., “Effective Safety Management in Solvent Extraction of Edible Oil” and Singh, R. P.Chemical Engineering World, 31 (1996)141–145.