Emerging Technologies of Three-Dimensional Printing and Mobile Health in COVID-19 Immunity and Regenerative Dentistry.

IF 2.7 4区 医学 Q3 CELL & TISSUE ENGINEERING Tissue engineering. Part C, Methods Pub Date : 2023-05-01 DOI:10.1089/ten.TEC.2022.0160
Chun Liu, Reuben Staples, Maria Natividad Gómez Cerezo, Saso Ivanovski, Pingping Han
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Abstract

The ongoing coronavirus disease 2019 (COVID-19) pandemic highlights the importance of developing point-of-care (POC) antibody tests for monitoring the COVID-19 immune response upon viral infection or following vaccination, which requires three key aspects to achieve optimal monitoring, including three-dimensional (3D)-printed POC devices, mobile health (mHealth), and noninvasive sampling. As a critical tissue engineering concept, additive manufacturing (AM, also known as 3D printing) enables accurate control over the dimensional and architectural features of the devices. mHealth refers to the use of portable digital devices, such as smartphones, tablet computers, and fitness and medical wearables, to support health, which facilitates contact tracing, and telehealth consultations during the pandemic. Compared with invasive biosample (blood), saliva is of great importance in the spread and surveillance of COVID-19 as a noninvasive diagnostic method for virus detection and immune status monitoring. However, investigations into 3D-printed POC antibody test and mHealth using noninvasive saliva are relatively limited. Further exploration of 3D-printed antibody POC tests and mHealth applications to monitor antibody production for either disease onset or immune response following vaccination is warranted. This review briefly describes the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) virus and immune response after infection and vaccination, then discusses current widely used binding antibody tests using blood samples and enzyme-linked immunosorbent assays on two-dimensional microplates before focusing upon emerging POC technological platforms, such as field-effect transistor biosensors, lateral flow assay, microfluidics, and AM for fabricating immunoassays, and the possibility of their combination with mHealth. This review proposes that noninvasive biofluid sampling combined with 3D POC antibody tests and mHealth technologies is a promising and novel approach for POC detection and surveillance of SARS-CoV-2 immune response. Furthermore, as key concepts in dentistry, the application of 3D printing and mHealth was also included to facilitate the appreciation of cutting edge techniques in regenerative dentistry. This review highlights the potential of 3D printing and mHealth in both COVID-19 immunity monitoring and regenerative dentistry.

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新型冠状病毒免疫和再生牙科的三维打印和移动健康新兴技术。
持续的2019冠状病毒病(COVID-19)大流行凸显了开发即时护理(POC)抗体测试的重要性,以监测病毒感染或接种疫苗后的COVID-19免疫反应,这需要三个关键方面来实现最佳监测,包括三维(3D)打印的即时护理设备、移动医疗(mHealth)和无创采样。作为一个关键的组织工程概念,增材制造(AM,也称为3D打印)可以精确控制设备的尺寸和结构特征。移动健康指的是使用便携式数字设备,如智能手机、平板电脑以及健身和医疗可穿戴设备来支持健康,这有助于在大流行期间追踪接触者并进行远程医疗咨询。与有创生物样本(血液)相比,唾液作为一种无创的病毒检测和免疫状态监测的诊断方法,在COVID-19的传播和监测中具有重要意义。然而,对3d打印POC抗体测试和使用无创唾液的移动健康的研究相对有限。有必要进一步探索3d打印抗体POC测试和移动健康应用,以监测疾病发作或接种疫苗后免疫反应的抗体产生。本文简要介绍了严重急性呼吸综合征冠状病毒2 (SARS-CoV-2)病毒及其感染和接种后的免疫反应,然后讨论了目前广泛使用的血液样本结合抗体检测和二维微孔板酶联免疫吸附试验,然后重点介绍了新兴的POC技术平台,如场效应晶体管生物传感器、侧流试验、微流体和AM制备免疫测定物。以及它们与移动医疗结合的可能性。本综述提出,无创生物体液采样结合3D POC抗体检测和移动健康技术是一种有前途的新型方法,可用于POC检测和监测SARS-CoV-2免疫反应。此外,作为牙科的关键概念,还包括3D打印和移动健康的应用,以促进对再生牙科尖端技术的欣赏。这篇综述强调了3D打印和移动健康在COVID-19免疫监测和再生牙科方面的潜力。
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来源期刊
Tissue engineering. Part C, Methods
Tissue engineering. Part C, Methods Medicine-Medicine (miscellaneous)
CiteScore
5.10
自引率
3.30%
发文量
136
期刊介绍: Tissue Engineering is the preeminent, biomedical journal advancing the field with cutting-edge research and applications that repair or regenerate portions or whole tissues. This multidisciplinary journal brings together the principles of engineering and life sciences in the creation of artificial tissues and regenerative medicine. Tissue Engineering is divided into three parts, providing a central forum for groundbreaking scientific research and developments of clinical applications from leading experts in the field that will enable the functional replacement of tissues. Tissue Engineering Methods (Part C) presents innovative tools and assays in scaffold development, stem cells and biologically active molecules to advance the field and to support clinical translation. Part C publishes monthly.
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