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A Review on the Heightened Mechanical Features of Nanosilica-Based Concrete and the Response of Human Fibroblasts to Nanosilica

Eribe M. Jonathan, Ikhazuagbe H. Ifijen, Kate E. Mokobia, Emmanuel I. Okeke, Chiadika I. Omoruyi, Bala Anegbe

2022Biomedical Materials & Devices12 citationsDOI

Topics & Concepts

Materials scienceFibroblastExtracellular matrixUltimate tensile strengthGranulation tissueCompressive strengthCementIn vivoAdhesionProperties of concreteBiomedical engineeringNanotechnologyWound healingComposite materialChemistryIn vitroMedicineSurgeryBiotechnologyBiochemistryBiologyBone Tissue Engineering MaterialsInnovative concrete reinforcement materialsMagnesium Oxide Properties and Applications
A Review on the Heightened Mechanical Features of Nanosilica-Based Concrete and the Response of Human Fibroblasts to Nanosilica | Litcius