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101. Novel Palladium Hydride Surface Enabling Simultaneous Bacterial Killing and Osteogenic Formation through Proton Capturing and Activation of Antioxidant System in Immune Microenvironments.

102. L-arginine loading porous PEEK promotes percutaneous tissue repair through macrophage orchestration.

103. Tailoring the multiscale mechanics of tunable decellularized extracellular matrix (dECM) for wound healing through immunomodulation.

104. Puerarin@Chitosan composite for infected bone repair through mimicking the bio-functions of antimicrobial peptides.

105. Corrigendum to 'Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation' [Bioactive Materials, Volume 9 (March 2022) Page 491-507].

107. Optimizing the bio-degradability and biocompatibility of a biogenic collagen membrane through cross-linking and zinc-doped hydroxyapatite.

108. Magnesium cationic cue enriched interfacial tissue microenvironment nurtures the osseointegration of gamma-irradiated allograft bone.

109. Rapid bacterial elimination achieved by sonodynamic Au@Cu 2 O hybrid nanocubes.

110. Sequential activation of heterogeneous macrophage phenotypes is essential for biomaterials-induced bone regeneration.

111. Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation.

112. In vitro and in vivo antibacterial performance of Zr & O PIII magnesium alloys with high concentration of oxygen vacancies.

113. Regulation of extracellular bioactive cations in bone tissue microenvironment induces favorable osteoimmune conditions to accelerate in situ bone regeneration.

114. A tailored positively-charged hydrophobic surface reduces the risk of implant associated infections.

115. Stepwise 3D-spatio-temporal magnesium cationic niche: Nanocomposite scaffold mediated microenvironment for modulating intramembranous ossification.

116. Electrospun chitosan/PVA/bioglass Nanofibrous membrane with spatially designed structure for accelerating chronic wound healing.

117. A surface-engineered multifunctional TiO 2 based nano-layer simultaneously elevates the corrosion resistance, osteoconductivity and antimicrobial property of a magnesium alloy.

118. A functionalized TiO 2 /Mg 2 TiO 4 nano-layer on biodegradable magnesium implant enables superior bone-implant integration and bacterial disinfection.

119. A surface-engineered polyetheretherketone biomaterial implant with direct and immunoregulatory antibacterial activity against methicillin-resistant Staphylococcus aureus.

120. Calcium carbonate unit realignment under acidification: A potential compensatory mechanism in an edible estuarine oyster.

121. Precisely controlled delivery of magnesium ions thru sponge-like monodisperse PLGA/nano-MgO-alginate core-shell microsphere device to enable in-situ bone regeneration.

122. Infection-prevention on Ti implants by controlled drug release from folic acid/ZnO quantum dots sealed titania nanotubes.

123. Biomaterials based strategies for rotator cuff repair.

124. Bone grafts and biomaterials substitutes for bone defect repair: A review.

125. Anti-biofouling function of amorphous nano-Ta 2 O 5 coating for VO 2 -based intelligent windows.

126. Controlled release and biocompatibility of polymer/titania nanotube array system on titanium implants.

127. Development of novel implants with self-antibacterial performance through in-situ growth of 1D ZnO nanowire.

128. Interfacial Fast Release Layer in Monodisperse Poly (lactic-co-glycolic acid) Microspheres Accelerates the Drug Release.

129. Silver nanoparticles promote osteogenesis of mesenchymal stem cells and improve bone fracture healing in osteogenesis mechanism mouse model.

130. Osteogenic ability of Cu-bearing stainless steel.

131. Silver nanoparticles alter proteoglycan expression in the promotion of tendon repair.

132. Enhanced antimicrobial properties, cytocompatibility, and corrosion resistance of plasma-modified biodegradable magnesium alloys.

133. Self-assembled magnetic fluorescent polymeric micelles for magnetic resonance and optical imaging.

134. Cytocompatibility, osseointegration, and bioactivity of three-dimensional porous and nanostructured network on polyetheretherketone.

135. In vivo stimulation of bone formation by aluminum and oxygen plasma surface-modified magnesium implants.

136. Fluorescent magnetic Fe3 O4 /rare Earth colloidal nanoparticles for dual-modality imaging.

137. Low-modulus Mg/PCL hybrid bone substitute for osteoporotic fracture fixation.

138. Wear mechanism and tribological characteristics of porous NiTi shape memory alloy for bone scaffold.

139. Magnetic, fluorescent, and thermo-responsive Fe(3)O(4)/rare earth incorporated poly(St-NIPAM) core-shell colloidal nanoparticles in multimodal optical/magnetic resonance imaging probes.

140. Thermosensitive poly(N-isopropylacrylamide-co-glycidyl methacrylate) microgels for controlled drug release.

141. Functional replication of the tendon tissue microenvironment by a bioimprinted substrate and the support of tenocytic differentiation of mesenchymal stem cells.

142. Biodegradable metallic materials for orthopaedic implantations: A review.

143. Design and preparation of novel fluorescent polyimides containing ortho -linked units and pyridine moieties.

144. Modulation of collagen alignment by silver nanoparticles results in better mechanical properties in wound healing.

145. Relationship between osseointegration and superelastic biomechanics in porous NiTi scaffolds.

146. Activation of mitogen-activated protein kinases cellular signal transduction pathway in mammalian cells induced by silicon carbide nanowires.

147. A biodegradable polymer-based coating to control the performance of magnesium alloy orthopaedic implants.

148. Nickel release behavior and surface characteristics of porous NiTi shape memory alloy modified by different chemical processes.

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