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首页> 外文期刊>Journal of Materials Science >Implantable photonic crystal for reflection-based optical sensing of biodegradation
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Implantable photonic crystal for reflection-based optical sensing of biodegradation

机译:植入式光子晶体用于基于反射的生物降解光学传感

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Biodegradable inverse opal (IoPPC) was synthesized from a multifunctional carboxylic acid and polyols by colloidal crystal templating. The IoPPC was prepared by infiltration of the monomer solution into interparticle voids of silica colloidal crystal template, polycondensation of the infiltrated film, and removal of the template. The synthesized IoPPC was characterized by infrared absorption, X-ray diffraction measurements, differential scanning calorimetry, and thermogravimetry/mass spectrometry analysis. In order to clarify the effect of biodegradation on the inverse opal structure and the optical reflection property, the IoPPC was implanted in subcutaneous tissue of the lower back of three mice (ICR, 10 weeks, female). After the 2 weeks implantation, fragmented samples were harvested from the implant location and investigated by scanning electron microscope observations and optical reflection measurements. It was found that the reflection peak for the harvested samples decayed from that for the sample without implantation. Such a spectral change is considered to be attributed to the deterioration of the regularity of the inverse opal structures through biodegradation. The finding of this study will serve in the development of reflection-based sensing in various biomedical applications.
机译:通过多官能团羧酸和多元醇通过胶体晶体模板合成了可生物降解的反蛋白石(IoPPC)。通过将单体溶液浸入二氧化硅胶体晶体模板的颗粒间空隙,渗透膜的缩聚并除去模板来制备IoPPC。合成的IoPPC通过红外吸收,X射线衍射测量,差示扫描量热法和热重分析/质谱分析进行表征。为了阐明生物降解对蛋白石反面结构和光学反射特性的影响,将IoPPC植入三只小鼠的下背部皮下组织中(ICR,10周,雌性)。植入2周后,从植入位置收集碎片样品,并通过扫描电子显微镜观察和光学反射测量进行研究。已经发现,所收集的样品的反射峰比没有植入的样品的反射峰衰减。这种光谱变化被认为是由于生物降解引起的反蛋白石结构规则性的恶化。这项研究的发现将有助于各种生物医学应用中基于反射的传感技术的发展。

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