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Achieving ultrasensitive in vivo detection of bone crack with polydopamine-capsulated surface-enhanced Raman nanoparticle

机译:用多胺封装表面增强拉曼纳米粒子的骨裂纹体内检测超细筛

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The timely diagnosis and intervention of bone microdamage are essential for preventing its accumulation and further diminishing the risk of skeletal fracture. Although staining methods have been adopted to better depict the microdamage on bone, their clinical impacts are still limited because they are based on histological sections which are inherently destructive. Here, highly sensitive and non-invasive in vivo detection of bone crack can be achieved by surface-enhanced Raman scattering (SERS) technique using a carefully chosen polydopamine(PDA)-SERS nanoparticle tag. The bone crack can be specifically labeled by PDA-SERS tags taking advantage of high affinity of PDA towards calcium exposed on the damaged bone, and identified by an intense featured Raman signal both in vitro and in vivo benefiting from the surface-enhanced resonance Raman scattering effect. As a preliminary in vivo application, it is found that PDA-SERS tags present no serious adverse effect in mouse model and hold good biocompatibility. This work may help the development of SERS technique for ultrasensitive in vivo detection of bone crack in clinic. (C) 2016 Elsevier Ltd. All rights reserved.
机译:骨髓微岩的及时诊断和干预对于预防其积累并进一步减少骨骼骨折的风险至关重要。虽然已经采用染色方法以更好地描绘骨骼上的微米血管量,但它们的临床影响仍然有限,因为它们是基于本质上具有破坏性的组织学部分。这里,可以通过使用精心选择的聚德莫胺(PDA)纳米粒子标签来实现高度敏感的骨裂纹的体内裂缝的骨裂纹的侵袭性和非侵入性。骨裂缝可以用PDA-SERS标记特异性标记,所述PDA-SERS标签可利用PDA高亲和力朝向受损骨暴露的钙,并通过体外和体内均受强烈的特征拉曼信号来识别从表面增强的共振拉曼散射(Vivo)受益影响。作为体内申请的初步,发现PDA-SERS标签在小鼠模型中没有对良好的不利影响并保持良好的生物相容性。这项工作可能有助于开发临床骨裂纹体内体内检测的超声静脉。 (c)2016 Elsevier Ltd.保留所有权利。

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