Centre for Nanotechnology and Advanced Biomaterials (CeNTAB), SASTRA Deemed University, Thanjavur 613 401, Tamil Nadu, India.
School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur 613 401, Tamil Nadu, India.
Biomed Mater. 2021 Apr 14;16(4). doi: 10.1088/1748-605X/abf27d.
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 theirandbiocompatibility, and the uniqueness of BNNT-incorporated tissue engineering scaffolds.
组织工程支架已从细胞黏附、延伸和增殖的被动几何支撑物转变为主动、动态系统,此外还可以响应外部刺激触发细胞的功能成熟。这种“智能”支架需要掺入能够响应内部或外部刺激的主动响应元件。指导细胞命运过程的关键因素之一是机械应力。不同的细胞对各种类型和大小的机械应力有不同的反应。因此,在组织工程支架中加入压力敏感元件将有助于将细胞的反应调至所需水平。氮化硼纳米管(BNNTs)与碳纳米管类似,由于其独特的化学惰性、压电特性、生物相容性以及热稳定性和机械稳定性的结合,引起了相当大的关注。BNNTs 的掺入使支架具有压电特性,可用于刺激接种在其上的细胞。通过用不同的生物分子对其进行表面功能化,可以实现 BNNTs 的生物识别和溶解。多年来,BNNT 在医疗保健纳米技术领域的重要性不断增加。本文讨论了 BNNTs 的突出特性、功能化对其生物相容性的影响以及 BNNT 掺入的组织工程支架的独特性。