Porous chitosan scaffolds for tissue engineering SV Madihally, HWT Matthew Biomaterials 20 (12), 1133-1142, 1999 | 2111 | 1999 |
In vitro characterization of chitosan–gelatin scaffolds for tissue engineering Y Huang, S Onyeri, M Siewe, A Moshfeghian, SV Madihally Biomaterials 26 (36), 7616-7627, 2005 | 747 | 2005 |
Characterization of chitosan–polycaprolactone blends for tissue engineering applications A Sarasam, SV Madihally Biomaterials 26 (27), 5500-5508, 2005 | 531 | 2005 |
Synthetic hydrogels: Synthesis, novel trends, and applications USK Madduma‐Bandarage, SV Madihally Journal of Applied Polymer Science 138 (19), 50376, 2021 | 316 | 2021 |
Recent advances in multiaxial electrospinning for drug delivery A Khalf, SV Madihally European Journal of Pharmaceutics and Biopharmaceutics 112, 1-17, 2017 | 260 | 2017 |
Vascular cell responses to polysaccharide materials:: in vitro and in vivo evaluations JM Chupa, AM Foster, SR Sumner, SV Madihally, HWT Matthew Biomaterials 21 (22), 2315-2322, 2000 | 258 | 2000 |
Encyclopedia of chemical processing S Lee Taylor & Francis US, 2006 | 248 | 2006 |
A Multi-Layered Scaffold of A Chitosan and Gelatin Hydrogel Supported by A Pcl Core for Cardiac Tissue Engineering S Pok, JD Myers, SV Madihally, JG Jacot Acta Biomaterialia, 2012 | 240 | 2012 |
Cell colonization in degradable 3D porous matrices BJ Lawrence, SV Madihally Cell adhesion & migration 2 (1), 9-16, 2008 | 232 | 2008 |
3D conductive nanocomposite scaffold for bone tissue engineering A Shahini, M Yazdimamaghani, KJ Walker, MA Eastman, ... International journal of nanomedicine, 167-181, 2014 | 220 | 2014 |
Blending chitosan with polycaprolactone: effects on physicochemical and antibacterial properties AR Sarasam, RK Krishnaswamy, SV Madihally Biomacromolecules 7 (4), 1131-1138, 2006 | 216 | 2006 |
Influence of insulin therapy on burn wound healing in rats SV Madibally, V Solomon, RN Mitchell, L Van De Water, ML Yarmush, ... Journal of surgical research 109 (2), 92-100, 2003 | 129 | 2003 |
Hybrid macroporous gelatin/bioactive-glass/nanosilver scaffolds with controlled degradation behavior and antimicrobial activity for bone tissue engineering M Yazdimamaghani, D Vashaee, S Assefa, KJ Walker, SV Madihally, ... Journal of biomedical nanotechnology 10 (6), 911-931, 2014 | 120 | 2014 |
Bioprinted chitosan-gelatin thermosensitive hydrogels using an inexpensive 3D printer KD Roehm, SV Madihally Biofabrication 10 (1), 015002, 2017 | 118 | 2017 |
Antibacterial activity of chitosan-based matrices on oral pathogens AR Sarasam, P Brown, SS Khajotia, JJ Dmytryk, SV Madihally Journal of Materials Science: Materials in Medicine 19, 1083-1090, 2008 | 99 | 2008 |
Genistein reduces the production of proinflammatory molecules in human chondrocytes S Hooshmand, DY Soung, EA Lucas, SV Madihally, CW Levenson, ... The Journal of nutritional biochemistry 18 (9), 609-614, 2007 | 99 | 2007 |
Understanding roles of porcine small intestinal submucosa in urinary bladder regeneration: identification of variable regenerative characteristics of small intestinal submucosa HK Lin, SY Godiwalla, B Palmer, D Frimberger, Q Yang, SV Madihally, ... Tissue Engineering Part B: Reviews 20 (1), 73-83, 2014 | 94 | 2014 |
Physical characteristics of small intestinal submucosa scaffolds are location‐dependent D Raghavan, BP Kropp, HK Lin, Y Zhang, R Cowan, SV Madihally Journal of Biomedical Materials Research Part A: An Official Journal of The …, 2005 | 91 | 2005 |
Surface modification of stainless steel orthopedic implants by sol–gel ZrTiO4 and ZrTiO4–PMMA coatings E Salahinejad, MJ Hadianfard, DD Macdonald, M Mozafari, KJ Walker, ... Journal of biomedical nanotechnology 9 (8), 1327-1335, 2013 | 84 | 2013 |
Next generation of electrosprayed fibers for tissue regeneration JK Hong, SV Madihally Tissue Engineering Part B: Reviews 17 (2), 125-142, 2011 | 83 | 2011 |