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An Overview of the Applications of Nanomaterials and Development of Stents in Treating Cardiovascular Disorders

机译:纳米材料在心血管疾病中的应用及支架的发展概况

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The applications of nanotechnology materials are rapidly advancing and will leave no field untouched by their ground breaking innovations. Nanoparticles are molecules with a diameter ranging from 10-100 nm and are available in different types such as spheres, rods, shells, cages and SERS particles which vary in shape, size and physical properties. The potential applications of nanomaterials include targeted drug and gene delivery, cancer diagnosis and therapy, determination of biological molecules and microorganisms, molecular probes for diagnosis of?disease, immunoassay, and enzyme immobilization. Four types of stent devices include balloon angioplasty, bare metal stents, drug-eluting stents, and bioresorbable stents. Devices manufactured using nanotechnology materials have promising biomedical applications, and most noteworthy among them are the implantable non-woven nanofibrous stents for opening up narrowed blood vessels. The drug-eluting smart stents serve as reservoirs for delivery of medicines that prevent artery closure. The basic characteristics of a well-designed stent are that it must fit snugly in the blocked artery wall and form a scaffold to enhance blood flow without getting dislodged and/or drag-along further in the implanted blood vessel. In addition, the elastic and mechanical behaviour of a stent must match with the native tissue. Nano-robots constitute another important application of nanotechnology in health sciences. These devices may not only help to monitor and record detailed biomechanical and histopathological information of different tissues and organs in both humans and animal models, but also reduce the invasiveness risk and diagnostic cost of human diseases. Due to their specificity and site targeting properties, the nanomaterials may be a real boon for the diagnosis and treatment of diseases. However, several safety and regulatory questions remain to be addressed regarding the usefulness of conventional in vitro and in vivo methods employed for assessing short- and long-term consequences of nanoparticles and nanomaterials in humans, marine and wild animals as well as acute and chronic levels of exposure to environment.
机译:纳米技术材料的应用正在迅速发展,其突破性的创新将不影响任何领域。纳米粒子是直径范围为10-100 nm的分子,可以以不同类型获得,例如球形,棒形,壳形,笼形和SERS颗粒,它们的形状,大小和物理特性会有所不同。纳米材料的潜在应用包括靶向药物和基因的递送,癌症的诊断和治疗,生物分子和微生物的测定,用于疾病诊断的分子探针,免疫测定和酶固定化。四种类型的支架设备包括球囊血管成形术,裸金属支架,药物洗脱支架和生物可吸收支架。使用纳米技术材料制造的设备具有广阔的生物医学应用前景,其中最值得注意的是用于打开狭窄血管的可植入非织造纳米纤维支架。药物洗脱智能支架可作为药物储存器,以防止动脉闭塞。精心设计的支架的基本特征是,它必须紧密贴合在阻塞的动脉壁上并形成一个支架,以增强血液流动,而不会在植入的血管中进一步移位和/或拖拉。另外,支架的弹性和机械性能必须与天然组织相匹配。纳米机器人构成了纳米技术在健康科学领域的另一个重要应用。这些设备不仅可以帮助监视和记录人类和动物模型中不同组织和器官的详细生物力学和组织病理学信息,而且可以降低人类疾病的侵袭风险和诊断成本。由于它们的特异性和靶向部位的特性,纳米材料可能是诊断和治疗疾病的真正福音。然而,关于用于评估纳米颗粒和纳米材料对人类,海洋和野生动物以及急性和慢性水平的短期和长期后果的常规体外和体内方法的有效性,尚需解决几个安全和监管问题。暴露于环境中。

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