Impact
The project NanoBOOST aimed to address the clinical problem of osteoporosis, by developing an injectable hydrogel to target disease impaired bone remodelling and promote bone regeneration. The hydrogels combined for the first time mechanically robust nano-silicates with antioxidant-ion substituted nano-particles, to target impaired bone remodelling and drive regeneration in a disease compromised load-bearing environment. Overall, the project generated scientific, economic and societal impacts. To ensure proper dissemination of research and findings, I designed a plan that maximizes the reach of the general public and scientific communities. The results derived from the project were extensively communicated to the research community by a presentation during international conferences. This includes:
Publications
1. Kaur ,K et al., Biomimetic Inspired Hydrogels for Regenerative Vertebral Body Stenting, Current Osteoporosis Reports, 21,806,2023.
2. Kaur ,K et al., Advances in the development of nano-engineered mechanically robust hydrogels for minimally invasive treatment of bone defects, Gels, 9,809,2023
Conferences
1. Kaur ,K et al., Tiny materials with huge potential: nanoparticle reinforced hydrogels for bone regeneration, BINI 2023, Dublin (Oral).
2. Kaur ,K et al., Thermoresponsive single wall carbon nanotubes reinforced collagen/chitosan hydrogels compatible for bone tissue engineering, BINI,2022 (Oral).
3. Kaur ,K et al., Injectable Chitosan/Collagen Hydrogels Nano-Engineered With Functionalized Single Wall Carbon Nanotubes For Minimally Invasive Applications in Bone, 2021 CRS Annual Meeting, 2022 (Canada) (Oral).
4. Kaur ,K et al., Nanoengineered Mechanically Robust Bioactive Particles Disseminated in Chitosan/Collagen Matrix for Osteoporotic Bone Treatment, TERMIS EU 2022,Krakow (Oral).
EU funding has been acknowledged in all the conference and 1st author presentations.@MSCActions was acknowledged in all the communications.