
AbstractWound healing is a sophisticated process for which various treatment methods have beendeveloped. Bioceramics with the ability to release inorganic ions in biological environments play acrucial role in cellular metabolism and exhibit bactericidal activity, contributing to numerousphysiological processes. Their multifaceted roles in biological systems highlight their significance.The release of different metallic ions from bioceramics enables the repair of both hard and softtissues. These ions may be effective in cell motility, proliferation, differentiation, adhesion,angiogenesis, and antibiosis. Unlike conventional medications, the bioactivity and antibacterialproperties of bioceramics are typically not associated with side effects or bacterial resistance.Because of their remarkable mechanical qualities, bioceramics are widely known for their ability toaid in the repair of hard tissues. The application of three main types of bioceramics—oxideceramics, silicate-based ceramics, and calcium-phosphate ceramics—in the context of wound care iscovered in this review after we first examine wound treatment and its common techniques. Thisreview presents bioceramics as an economical and effective substitute for wound healing. Our goalis to motivate scientists to use bioceramics
Angiogenesis, Antibacterial , Wound Treatment, Bioceramic.
Angiogenesis, Antibacterial , Wound Treatment, Bioceramic.
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