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Boron nitride nanotube scaffolds: emergence of a new era in regenerative medicine

机译:硼氮化物纳米管脚手架:再生医学中新时代的出现

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Tissue engineering scaffolds have transformed from passive geometrical supports for cell adhesion, extension and proliferation to active, dynamic systems that can in addition, trigger functional maturation of the cells in response to external stimuli. Such 'smart' scaffolds require the incorporation of active response elements that can respond to internal or external stimuli. One of the key elements that direct the cell fate processes is mechanical stress. Different cells respond to various types and magnitudes of mechanical stresses. The incorporation of a pressure-sensitive element in the tissue engineering scaffold therefore, will aid in tuning the cell response to the desired levels. Boron nitride nanotubes (BNNTs) are analogous to carbon nanotubes and have attracted considerable attention due to their unique amalgamation of chemical inertness, piezoelectric property, biocompatibility and, thermal and mechanical stability. Incorporation of BNNTs in scaffolds confers them with piezoelectric property that can be used to stimulate the cells seeded on them. Biorecognition and solubilization of BNNTs can be engineered through surface functionalization with different biomolecules. Over the years, the importance of BNNT has grown in the realm of healthcare nanotechnology. This review discusses the salient properties of BNNTs, the influence of functionalization on their in vitro and in vivo biocompatibility, and the uniqueness of BNNT-incorporated tissue engineering scaffolds.
机译:组织工程支架已经从无源几何支撑件转化为细胞粘附,延伸和增殖到活性,动态系统,这可以是可以添加的,响应外部刺激的电池功能成熟。这种“智能”脚手架需要纳入可以响应内部或外部刺激的主动响应元素。指导小区命运过程的关键元件之一是机械应力。不同的细胞响应各种类型和机械应力的大小。因此,在组织工程支架中掺入压敏元件,因此将有助于调节细胞响应所需的水平。氮化硼纳米管(BNNT)类似于碳纳米管,并且由于它们独特的化学惰性,压电性,生物相容性和热和机械稳定性而引起了相当大的关注。在脚手架中的加入BNNTS将它们与压电性能赋予它们,这些性能可用于刺激种子上的细胞。通过用不同的生物分子通过表面官能化设计BioRecognition和Bnnts的增溶化。多年来,BNNT的重要性已在医疗保健纳米技术领域种植。本综述讨论了BNNT的显着性质,官能化对其体外和体内生物相容性的影响,以及BNNT掺入组织工程支架的唯一性。

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