Handbook of Porous Silicon 2014
DOI: 10.1007/978-3-319-04508-5_38-1
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Biocompatibility of Porous Silicon

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Cited by 8 publications
(2 citation statements)
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“…They showed and confirmed the growth of HAp on the nanoporous silicon particles and proved that PS can be a real bioactive material. In the same way, Bowditch et al (1998) ; Low and Voelcker. (2014) ; Dalilottojari, et al (2015) reported the biocompatible, biodegradable and bioactive properties of PS with size pore tunability, high surface area, and opened outlooks in different fields as tissue engineering, drug delivery, oncology, orthopedics, ophthalmology and even in vivo/in vitro biosensors or biomarkers ( Hernández-Montelongo et al, 2015 ).…”
Section: Introductionmentioning
confidence: 83%
“…They showed and confirmed the growth of HAp on the nanoporous silicon particles and proved that PS can be a real bioactive material. In the same way, Bowditch et al (1998) ; Low and Voelcker. (2014) ; Dalilottojari, et al (2015) reported the biocompatible, biodegradable and bioactive properties of PS with size pore tunability, high surface area, and opened outlooks in different fields as tissue engineering, drug delivery, oncology, orthopedics, ophthalmology and even in vivo/in vitro biosensors or biomarkers ( Hernández-Montelongo et al, 2015 ).…”
Section: Introductionmentioning
confidence: 83%
“…In this work, we introduced AgNPs into pSiMPs in order to suppress the spreading of AgNPs and to enhance the biocompatibility for the clinical applications. pSiMPs has unique features in the biological system, such as a slow degradation (>month) without toxic byproduct, the secure activity of encapsulated substrate, and a high localization property inside the body after local injection. The hybrid composite of AgNPs and pSiMPs maximizes the benefits of each particle in terms of bioimaging and biocompatibility.…”
mentioning
confidence: 99%