Boron-containing bioactive glasses in bone and soft tissue engineering P Balasubramanian, T Büttner, VM Pacheco, AR Boccaccini Journal of the European ceramic society 38 (3), 855-869, 2018 | 215 | 2018 |
Ag modified mesoporous bioactive glass nanoparticles for enhanced antibacterial activity in 3D infected skin model K Zheng, P Balasubramanian, TE Paterson, R Stein, S MacNeil, S Fiorilli, ... Materials Science and Engineering: C 103, 109764, 2019 | 107 | 2019 |
Angiogenic potential of boron-containing bioactive glasses: in vitro study P Balasubramanian, L Hupa, B Jokic, R Detsch, A Grünewald, ... Journal of Materials Science 52, 8785-8792, 2017 | 107 | 2017 |
Zinc-containing bioactive glasses for bone regeneration, dental and orthopedic applications P Balasubramanian, LA Strobel, U Kneser, AR Boccaccini Biomedical glasses 1 (1), 2015 | 99 | 2015 |
Preparation and in vitro characterization of silver-doped bioactive glass nanoparticles fabricated using a sol-gel process and modified Stöber method AA El-Rashidy, G Waly, A Gad, AA Hashem, P Balasubramanian, S Kaya, ... Journal of Non-Crystalline Solids 483, 26-36, 2018 | 67 | 2018 |
Collagen in Human Tissues: Structure, Function, and Biomedical Implications from a Tissue Engineering Perspective P Balasubramanian, M Prabhakaran, M Sireesha, S Ramakrishna Advances in Polymer Science 251, 173 - 206, 2013 | 67 | 2013 |
Ion release, hydroxyapatite conversion, and cytotoxicity of boron‐containing bioactive glass scaffolds P Balasubramanian, A Grünewald, R Detsch, L Hupa, B Jokic, F Tallia, ... International Journal of Applied Glass Science 7 (2), 206-215, 2016 | 64 | 2016 |
Human cardiomyocyte interaction with electrospun fibrinogen/gelatin nanofibers for myocardial regeneration P Balasubramanian, MP Prabhakaran, D Kai, S Ramakrishna Journal of Biomaterials Science, Polymer Edition 24 (14), 1660-1675, 2013 | 61 | 2013 |
Advances in electrospun nanofibers for bone and cartilage regeneration L Ghasemi-Mobarakeh, MP Prabhakaran, P Balasubramanian, G Jin, ... Journal of Nanoscience and Nanotechnology 13 (7), 4656-4671, 2013 | 56 | 2013 |
Incorporation of boron in mesoporous bioactive glass nanoparticles reduces inflammatory response and delays osteogenic differentiation K Zheng, Y Fan, E Torre, P Balasubramanian, N Taccardi, C Cassinelli, ... Particle & Particle Systems Characterization 37 (7), 2000054, 2020 | 43 | 2020 |
Bioactivation of titanium dioxide scaffolds by ALP-functionalization A Sengottuvelan, P Balasubramanian, J Will, AR Boccaccini Bioactive materials 2 (2), 108-115, 2017 | 35 | 2017 |
Bi-layered porous constructs of PCL-coated 45S5 bioactive glass and electrospun collagen-PCL fibers P Balasubramanian, JA Roether, DW Schubert, JP Beier, AR Boccaccini Journal of Porous Materials 22, 1215-1226, 2015 | 28 | 2015 |
Bioactive glasses and glass‐ceramics versus hydroxyapatite: comparison of angiogenic potential and biological responsiveness D Bellucci, S Braccini, F Chiellini, P Balasubramanian, AR Boccaccini, ... Journal of Biomedical Materials Research Part A 107 (12), 2601-2609, 2019 | 18 | 2019 |
Induction of VEGF secretion from bone marrow stromal cell line (ST-2) by the dissolution products of mesoporous silica glass particles containing CuO and SrO P Balasubramanian, AJ Salinas, S Sanchez-Salcedo, R Detsch, ... Journal of Non-Crystalline Solids 500, 217-224, 2018 | 18 | 2018 |
Characterizing the degradation behavior of bioceramic scaffolds OM Goudouri, P Balasubramanian, AR Boccaccini Characterisation and Design of Tissue Scaffolds, 127-147, 2016 | 14 | 2016 |
Micro-computed-tomography-guided analysis of in vitro structural modifications in two types of 45S5 bioactive glass based scaffolds F Westhauser, F Ciraldo, P Balasubramanian, AS Senger, G Schmidmaier, ... Materials 10 (12), 1341, 2017 | 13 | 2017 |
Influence of dissolution products of a novel Ca-enriched silicate bioactive glass-ceramic on VEGF release from bone marrow stromal cells P Balasubramanian, R Detsch, L Esteban-Tejeda, A Grünewald, JS Moya, ... Biomedical glasses 3 (1), 104-110, 2017 | 12 | 2017 |
Bilayered bioactive glass scaffolds incorporating fibrous morphology by flock technology P Balasubramanian, AR Boccaccini Materials Letters 158, 313-316, 2015 | 12 | 2015 |
Injectable polymeric materials and evaluation of their in vivo functional assessment in cardiac tissue engineering P Balasubramanian, MP Prabhakaran, AA Al Masri, S Ramakrishna Journal of Biomaterials and Tissue Engineering 1 (2), 149-165, 2011 | 5 | 2011 |
Surface Modification of Bioactive Glass Scaffolds P Balasubramanian PQDT-Global, 2016 | | 2016 |