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Titlebook: Odontogenesis; Methods and Protocol Petros Papagerakis Book 2019 Springer Science+Business Media, LLC, part of Springer Nature 2019 epithel

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Multiwalled Carbon Nanotubes for Dental Applicationsic-safe drug delivery systems. So far, CNTs are used for a broad range of applications in dentistry, especially for dental tissue repair and restorative. Here we present a protocol of protein immobilization onto MWCNTs and describe the procedure for delivering them into the cells after characterization of the nanotubes.
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Bioengineering Tooth Bud Constructs Using GelMA Hydrogelshed bioengineered tooth bud model for eventual applications in clinical dentistry. We also describe methods to fabricate and analyze bioengineered tooth tissues, including cell isolation, in vivo implantation, and post-harvest analyses.
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Whole-Mount In Situ Hybridization of Mouse Embryos Using DIG-Labeled RNA Probesre embryo and structure. Here, we describe the detailed procedural steps of WMISH, including probe production, embryo fixation and staining, and post-hybridization signal detection. Using this protocol, we visualized highly specific expression patterns of . and . mRNAs in E12.5 mouse embryos.
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Microdissection and Isolation of Mouse Dental Epithelial Cells of Continuously Growing Mouse Incisoras well as are a tool for studies on the mechanisms of normal and abnormal amelogenesis. They may also be applied to studies on other aspects of developmental biology and regenerative medicine using stem cells.
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Application of Cell Lineage Tracing Combined with Immunofluorescence in the Study of Dentinogenesisogeny can be displayed simultaneously, providing more information than cell lineage tracing or immunofluorescence alone. In conclusion, the co-application of cell lineage tracing technique and immunofluorescence is a powerful tool for investigating cell biology in the field of dentinogenesis and tooth development.
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Microdissection and Isolation of Mouse Dental Epithelial Cells of Continuously Growing Mouse Incisorof dental epithelial stem cells allows investigation of a variety of basic biological processes in the context of the stem cells. The ability to analyze dental epithelial stem cells in vitro has emerged as a powerful tool to understand how teeth are constructed and the signaling pathways that regula
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