相关期刊:《Journal of Wuhan University of Technology(Materials Science)》《Chinese Journal of Traumatology》《Regenerative Biomaterials》《Journal of Materials Science & Technology》更多>>
the National Key Research and Development Program of China(Grant No.2022YFC2401801);National Science Foundation of China(Grant No.52002256);Major Project of Sichuan Science and Technology Department(Grant Nos.2022ZDZX0029 and 2021YFS0032);Sichuan University“Zero to one”Innovation Research Project(Grant No.2022SCUH0044).
How to endow bone grafts with long-term antibacterial activity and good bone regenerative ability to achieve the regenerative repair of infected bone defects has been the focus of the clinical treatment of osteomyelit...
supported by the Swiss National Science Foundation Div 3(Grant 31003A-179259 to I.M.);the National Centre of Competence in Research(NCCR)Molecular Systems Engineering(Grant 51NF40-141825 to I.M.).
The increasing recognition of the contribution of the immune system to activate and prime regeneration implies that tissue engineering strategies and biomaterials design should target regulation of early immunological...
supported by Tsinghua University-Peking Union Medical College Hospital Initiative Scientific Research Program(20191080871);the National Natural Science Foundation of China(82272464,82002314).
Long-term nonunion of bone defects has always been a major problem in orthopedic treatment.Artificial bone graft materials such as Poly(lactic-co-glycolic acid)/β-tricalcium phosphate(PLGA/β-TCP)scaffolds are expect...
supported by the National Key Research and Development Program of China(2021YFB3802100,2021YFB3802105);Major Project of Sichuan Science and Technology Department(2022ZDZX0029);the International Science and Technology Innovation Cooperation Project of Sichuan Province(2021YFH0131);National Natural Science Foundation of China(52002256);the Science and Technology Cooperation Program of Sichuan University and Panzhihua City(2021);Sichuan University‘Zero to one’Innovation Research Project(0082604151276).
Calcium phosphate(CaP)bioceramics are widely applied in the bone repairing field attributing to their excellent biological properties,especially osteoinductivity.However,their applications in load-bearing or segmental...
The authors acknowledge financial support for granting Open Access from the European Union’s Horizon 2020 research and innovation programme under the grant agreement No.857287.
With the increase of global population,people’s life expectancy is growing as well.Humans tend to live more active lifestyles and,therefore,trauma generated large defects become more common.Instances of tumour resect...
sponsored by the National Natural Science Foundation of China(52002256);Sichuan Science and Technology Innovation Team of China(2019JDTD0008);China Postdoctoral Innovation Talent Support program(BX20180204);China Postdoctoral Science Foundation(2018M643483);Sichuan University Postdoctoral Interdisciplinary Innovation Fund(0900904153024).
Osteoinductivity is a crucial factor to determine the success and efficiency of posterolateral spinal fusion(PLF)by employing calcium phosphate(Ca-P)bioceramics.In this study,three kinds of Ca-P ceramics with microsca...
This study aimed at evaluating the possibility and effectiveness of osteoinductive bioceramics to fill the tumor cavity following the curettage of sacral giant cell tumor(GCT).Six patients(four females and two males,2...
Implants of titanium(Ti)and its alloys have been widely used for decades in bone tissue engineering.Orthopedic implantation is unavoidably accompanied by bacterial infection,which requires extensive surgical intervent...
This work was supported by the National Key R&D Program of China(2019YFA0110500);the National Natural Science Foundation of China(No.81873941,81701922 and 81701912).
Surface modification using bioactive molecules is frequently performed to improve the biological properties of medical metal biomaterial titanium(Ti)implants.Developmental evidence suggests that mesenchymal stem cell-...
In this study, we use a pluripotent mesenchymal stem cell (MSC) model, C3H/10T1/2, to evaluate three calcium phos-phate (CaP) materials, namely the hydroxyapatite (HA), α-tricalcium phosphate (α-TCP) and β-tricalci...