Photodynamic viral inactivation: Recent advances and potential applications [0.03%]
光动力病毒失活法:最近的研究进展及其潜在应用
Jace A Willis,Vsevolod Cheburkanov,Giulia Kassab et al.
Jace A Willis et al.
Antibiotic-resistant bacteria, which are growing at a frightening rate worldwide, has put the world on a long-standing alert. The COVID-19 health crisis reinforced the pressing need to address a fast-developing pandemic. To mitigate these h...
3D bioprinting for high-throughput screening: Drug screening, disease modeling, and precision medicine applications [0.03%]
高通量筛选的三维生物打印:药物筛选、疾病建模及精准医疗应用
Andrea Mazzocchi,Shay Soker,Aleksander Skardal
Andrea Mazzocchi
High-throughput technologies have become essential in many fields of pharmaceutical and biological development and production. Such technologies were initially developed with compatibility with liquid handling-based cell culture techniques ...
Liqun Ning,Carmen J Gil,Boeun Hwang et al.
Liqun Ning et al.
3D bioprinting techniques have shown great promise in various fields of tissue engineering and regenerative medicine. Yet, creating a tissue construct that faithfully represents the tightly regulated composition, microenvironment, and funct...
Conformational state switching and pathways of chromosome dynamics in cell cycle [0.03%]
细胞周期中染色体动态的构象状态转换及路径
Xiakun Chu,Jin Wang
Xiakun Chu
The cell cycle is a process and function of a cell with different phases essential for cell growth, proliferation, and replication. It depends on the structure and dynamics of the underlying DNA molecule, which underpins the genome function...
Max J Lerman,Josephine Lembong,Greg Gillen et al.
Max J Lerman et al.
3D printing plays an important role in various biomedical research applications including, but not limited to, culture systems and implantable devices. In this review, we discuss recent development in the applications of 3D printing technol...
James B Hu,Martin L Tomov,Jan W Buikema et al.
James B Hu et al.
Three-dimensional (3D) cardiac tissue bioprinting occupies a critical crossroads position between the fields of materials engineering, cardiovascular biology, 3D printing, and rational organ replacement design. This complex area of research...
Fast transformation of 2D nanofiber membranes into pre-molded 3D scaffolds with biomimetic and oriented porous structure for biomedical applications [0.03%]
快速将二维纳米纤维膜转化为具有生物仿生和取向多孔结构的三维支架的制备及其在生物医学中的应用研究
Shixuan Chen,Johnson V John,Alec McCarthy et al.
Shixuan Chen et al.
The ability to transform two-dimensional (2D) structures into three-dimensional (3D) structures leads to a variety of applications in fields such as soft electronics, soft robotics, and other biomedical-related fields. Previous reports have...
Modulating physical, chemical, and biological properties in 3D printing for tissue engineering applications [0.03%]
用于组织工程的三维打印物理、化学和生物性能调节
Claire Yu,Wei Zhu,Bingjie Sun et al.
Claire Yu et al.
Over the years, 3D printing technologies have transformed the field of tissue engineering and regenerative medicine by providing a tool that enables unprecedented flexibility, speed, control, and precision over conventional manufacturing me...
Stochasticity in materials structure, properties, and processing-A review [0.03%]
材料的结构、性能和制备中的随机性-综述文章
Robert Hull,Pawel Keblinski,Dan Lewis et al.
Robert Hull et al.
We review the concept of stochasticity-i.e., unpredictable or uncontrolled fluctuations in structure, chemistry, or kinetic processes-in materials. We first define six broad classes of stochasticity: equilibrium (thermodynamic) fluctuations...
J J McClelland,A V Steele,B Knuffman et al.
J J McClelland et al.
Nanoscale focused ion beams (FIBs) represent one of the most useful tools in nanotechnology, enabling nanofabrication via milling and gas-assisted deposition, microscopy and microanalysis, and selective, spatially resolved doping of materia...