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首页> 外文期刊>Chemistry central journal >Gadolinium-based layered double hydroxide and graphene oxide nano-carriers for magnetic resonance imaging and drug delivery
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Gadolinium-based layered double hydroxide and graphene oxide nano-carriers for magnetic resonance imaging and drug delivery

机译:d基层状双氢氧化物和氧化石墨烯纳米载体,用于磁共振成像和药物递送

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摘要

Gadolinium (Gd)-based contrasts remain one of the most accepted contrast agents for magnetic resonance imaging, which is among the world most recognized noninvasive techniques employed in clinical diagnosis of patients. At ionic state, Gd is considered toxic but less toxic in chelate form. A variety of nano-carriers, including gadolinium oxide (Gd2O3) nanoparticles have been used by researchers to improve the T1 and T2 contrasts of MR images. Even more recently, a few researchers have tried to incorporate contrast agents simultaneously with therapeutic agents using single nano-carrier for theranostic applications. The benefit of this concept is to deliver the drugs, such as anticancer drugs and at the same time to observe what happens to the cancerous cells. The delivery of both agents occurs concurrently. In addition, the toxicity of the anticancer drugs as well as the contrast agents will be significantly reduced due to the presence of the nano-carriers. The use of graphene oxide (GO) and layered double hydroxides (LDH) as candidates for this purpose is the subject of current research, due to their low toxicity and biocompatibility, which have the capacity to be used in theranostic researches. We review here, some of the key features of LDH and GO for simultaneous drugs and diagnostic agents delivery systems for use in theranostics applications.
机译:基于d(Gd)的造影剂仍然是磁共振成像最受接受的造影剂之一,而磁共振造影剂是世界上最公认的用于患者临床诊断的非侵入性技术之一。在离子状态下,Gd被认为具有毒性,但以螯合物形式毒性较小。研究人员已使用多种纳米载体,包括氧化oxide(Gd 2 O 3 )纳米颗粒来改善MR图像的T1和T2对比度。甚至最近,一些研究人员尝试使用单一纳米载体将造影剂与治疗剂同时引入治疗治疗中。这个概念的好处是提供了诸如抗癌药之类的药物,并同时观察癌细胞发生了什么。两种代理的传递同时发生。另外,由于纳米载体的存在,抗癌药以及造影剂的毒性将显着降低。为此目的,使用氧化石墨烯(GO)和层状双氢氧化物(LDH)作为候选物,因为它们的低毒性和生物相容性,并且具有可用于治疗学研究的能力。我们在这里回顾了LDH和GO的一些关键特性,这些特性可同时用于治疗学应用中的药物和诊断剂输送系统。

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