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用于牙本质-牙髓复合体再生治疗的掺锶纳米生物活性玻璃水泥的评估

Evaluation of Strontium-Doped Nanobioactive Glass Cement for Dentin-Pulp Complex Regeneration Therapy.

作者信息

Mandakhbayar Nandin, El-Fiqi Ahmed, Lee Jung-Hwan, Kim Hae-Won

机构信息

Department of Nanobiomedical Science and BK21 PLUS NBM Global Research Center for Regenerative Medicine, Dankook University, Cheonan 31116, South Korea.

Glass Research Department, National Research Centre, Cairo 12622, Egypt.

出版信息

ACS Biomater Sci Eng. 2019 Nov 11;5(11):6117-6126. doi: 10.1021/acsbiomaterials.9b01018. Epub 2019 Oct 24.

DOI:10.1021/acsbiomaterials.9b01018
PMID:33405665
Abstract

Introducing new generations of injectable bioactive types of cement that fulfill excellent injectability, rapid self-setting, high bioactivity, proper biodegradability, and fast therapeutic ion-releasing capability is highly demanded for tooth and bone regeneration. Here, we announce therapeutic fast ion-releasing nanobiocements (NBCs) based on sol-gel-processed calcium silicate mesoporous nanobioactive glass with or without strontium (NBC, Sr-free and Sr-NBC, Sr-doped). The stimulating role of Sr ions in odontogenesis of stem cells derived from dental pulp (DPSCs) and in in vivo dentin formation has been investigated. The nanobiocement was formulated through the mixing of bioactive glass nanopowder with a phosphate-buffered saline (P/L = 0.5 g/mL) to form a soft cement paste that hardens within 5-10 min in the ambient environment. The self-setting originated from a setting reaction involving the deposition of hydroxyapatite as evidenced from X-ray diffraction. Both nanobiocements showed the rapid release of therapeutic ions with biologically effective doses, including strontium (Sr), calcium (Ca), or silicon (Si). In vitro cell cultures with DPSCs showed excellent biocompatibility and high odontogenic potential, especially from Sr-NBC. In an in vivo study, Sr-NBC showed more new dentin formation compared to that of NBC, revealed by two different animal models (odontogenesis in subcutaneous and natural tooth environment). Also, NBCs showed high loading capacities of simvastatin used as a model drug. Taken together, Sr-NBC could be considered as a multifunctional nanobiocement with high bioactivity, excellent biodegradability, fast therapeutic ion release, and high drug loading capability, which potentiates its application in dentin-pulp complex regeneration therapy.

摘要

牙齿和骨骼再生迫切需要新一代可注射的生物活性水泥,这种水泥要具备出色的可注射性、快速自凝性、高生物活性、适当的生物降解性以及快速的治疗性离子释放能力。在此,我们公布了基于溶胶 - 凝胶法制备的含钙硅酸盐介孔纳米生物活性玻璃(含或不含锶)的治疗性快速离子释放纳米生物水泥(NBCs,无锶的NBC和掺锶的Sr - NBC)。研究了锶离子在牙髓干细胞(DPSCs)牙发生以及体内牙本质形成中的刺激作用。通过将生物活性玻璃纳米粉末与磷酸盐缓冲盐水(P/L = 0.5 g/mL)混合来配制纳米生物水泥,形成一种软水泥糊剂,该糊剂在环境条件下5 - 10分钟内硬化。如X射线衍射所示,自凝源于涉及羟基磷灰石沉积的凝固反应。两种纳米生物水泥都显示出具有生物有效剂量的治疗性离子的快速释放,包括锶(Sr)、钙(Ca)或硅(Si)。用DPSCs进行的体外细胞培养显示出优异的生物相容性和高牙发生潜力,特别是来自Sr - NBC的。在一项体内研究中,通过两种不同的动物模型(皮下牙发生和天然牙齿环境)表明,与NBC相比,Sr - NBC显示出更多的新牙本质形成。此外,NBCs对用作模型药物的辛伐他汀具有高负载能力。综上所述,Sr - NBC可被视为一种具有高生物活性、优异生物降解性、快速治疗性离子释放和高药物负载能力的多功能纳米生物水泥,这增强了其在牙本质 - 牙髓复合体再生治疗中的应用。

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