Banani Kundu
Banani Kundu
3B’s Research Group – Biomaterials, Biodegradable and Biomimetics, Avepark – Parque de Ciência e
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Cited by
Cited by
Silk fibroin biomaterials for tissue regenerations
B Kundu, R Rajkhowa, SC Kundu, X Wang
Advanced drug delivery reviews 65 (4), 457-470, 2013
Silk proteins for biomedical applications: Bioengineering perspectives
B Kundu, NE Kurland, S Bano, C Patra, FB Engel, VK Yadavalli, ...
Progress in polymer science 39 (2), 251-267, 2014
Silk scaffolds in bone tissue engineering: An overview
P Bhattacharjee, B Kundu, D Naskar, HW Kim, TK Maiti, D Bhattacharya, ...
Acta biomaterialia 63, 1-17, 2017
Silk protein fibroin from Antheraea mylitta for cardiac tissue engineering
C Patra, S Talukdar, T Novoyatleva, SR Velagala, C Mühlfeld, B Kundu, ...
Biomaterials 33 (9), 2673-2680, 2012
A natural silk fibroin protein‐based transparent bio‐memristor
MK Hota, MK Bera, B Kundu, SC Kundu, CK Maiti
Advanced Functional Materials 22 (21), 4493-4499, 2012
Nonmulberry silk biopolymers
SC Kundu, B Kundu, S Talukdar, S Bano, S Nayak, J Kundu, BB Mandal, ...
Biopolymers 97 (6), 455-467, 2012
Silk sericin/polyacrylamide in situ forming hydrogels for dermal reconstruction
B Kundu, SC Kundu
Biomaterials 33 (30), 7456-7467, 2012
Emerging tumor spheroids technologies for 3D in vitro cancer modeling
T Rodrigues, B Kundu, J Silva-Correia, SC Kundu, JM Oliveira, RL Reis, ...
Pharmacology & therapeutics 184, 201-211, 2018
Silk fibroin/collagen protein hybrid cell-encapsulating hydrogels with tunable gelation and improved physical and biological properties
JO Buitrago, KD Patel, A El-Fiqi, JH Lee, B Kundu, HH Lee, HW Kim
Acta biomaterialia 69, 218-233, 2018
Isolation and processing of silk proteins for biomedical applications
B Kundu, NE Kurland, VK Yadavalli, SC Kundu
International journal of biological macromolecules 70, 70-77, 2014
Bio-inspired mineralization of hydroxyapatite in 3D silk fibroin hydrogel for bone tissue engineering
Y Jin, B Kundu, Y Cai, SC Kundu, J Yao
Colloids and surfaces B: biointerfaces 134, 339-345, 2015
Osteochondral Tissue Engineering In Vivo: A Comparative Study Using Layered Silk Fibroin Scaffolds from Mulberry and Nonmulberry Silkworms
S Saha, B Kundu, J Kirkham, D Wood, SC Kundu, XB Yang
PloS one 8 (11), e80004, 2013
Osteogenesis of human stem cells in silk biomaterial for regenerative therapy
B Kundu, SC Kundu
Progress in Polymer Science 35 (9), 1116-1127, 2010
A silk fibroin based hepatocarcinoma model and the assessment of the drug response in hyaluronan-binding protein 1 overexpressed HepG2 cells
B Kundu, P Saha, K Datta, SC Kundu
Biomaterials 34 (37), 9462-9474, 2013
Nonmulberry silk fibroin scaffold shows superior osteoconductivity than mulberry silk fibroin in calvarial bone regeneration
N Sahu, P Baligar, S Midha, B Kundu, M Bhattacharjee, S Mukherjee, ...
Advanced healthcare materials 4 (11), 1709-1721, 2015
Synthesis and characterization of Cu/Ag nanoparticle loaded mullite nanocomposite system: A potential candidate for antimicrobial and therapeutic applications
S Kar, B Bagchi, B Kundu, S Bhandary, R Basu, P Nandy, S Das
Biochimica et Biophysica Acta (BBA)-General Subjects 1840 (11), 3264-3276, 2014
Potential of inherent RGD containing silk fibroin–poly (Є-caprolactone) nanofibrous matrix for bone tissue engineering
P Bhattacharjee, B Kundu, D Naskar, HW Kim, D Bhattacharya, TK Maiti, ...
Cell and tissue research 363, 525-540, 2016
Nanofibrous nonmulberry silk/PVA scaffold for osteoinduction and osseointegration
P Bhattacharjee, B Kundu, D Naskar, TK Maiti, D Bhattacharya, SC Kundu
Biopolymers 103 (5), 271-284, 2015
Bio-inspired fabrication of fibroin cryogels from the muga silkworm Antheraea assamensis for liver tissue engineering
B Kundu, SC Kundu
Biomedical Materials 8 (5), 055003, 2013
Chinese Oak Tasar Silkworm Antheraea pernyi Silk Proteins: Current Strategies and Future Perspectives for Biomedical Applications
SS Silva, B Kundu, S Lu, RL Reis, SC Kundu
Macromolecular bioscience 19 (3), 1800252, 2019
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