laser lithography
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Micromachines ◽  
2021 ◽  
Vol 12 (12) ◽  
pp. 1572
Author(s):  
Junyang Li ◽  
Lei Fan ◽  
Yanfang Li ◽  
Tanyong Wei ◽  
Cheng Wang ◽  
...  

Cell-carrying magnet-driven microrobots are easily affected by blood flow or body fluids during transportation in the body, and thus cells often fall off from the microrobots. To reduce the loss of loaded cells, we developed a microrobot with a bioactive nanostructured titanate surface (NTS), which enhances cell adhesion. The microrobot was fabricated using 3D laser lithography and coated with nickel for magnetic actuation. Then, the microrobot was coated with titanium for the external generation of an NTS through reactions in NaOH solution. Enhanced cell adhesion may be attributed to the changes in the surface wettability of the microrobot and in the morphology of the loaded cells. An experiment was performed on a microfluidic chip for the simulation of blood flow environment, and result revealed that the cells adhered closely to the microrobot with NTS and were not obviously affected by flow. The cell viability and protein absorption test and alkaline phosphatase activity assay indicated that NTS can provide a regulatory means for improving cell proliferation and early osteogenic differentiation. This research provided a novel microrobotic platform that can positively influence the behaviour of cells loaded on microrobots through surface nanotopography, thereby opening up a new route for microrobot cell delivery.


2021 ◽  
pp. 263-269
Author(s):  
Manisha Bharati ◽  
Lokesh Rana ◽  
Reema Gupta ◽  
Monika Tomar ◽  
Vinay Gupta
Keyword(s):  

Micromachines ◽  
2021 ◽  
Vol 12 (11) ◽  
pp. 1362
Author(s):  
Qisong Li ◽  
Xuran Dai ◽  
Haosong Shi ◽  
Yi Liu ◽  
Long Zhang

Herein, we report a novel optical glass material, fluoroaluminate (AlF3) glass, with excellent optical transmittance from ultraviolet to infrared wavelength ranges, which provides more options for application in optical devices. Based on its performance, the phase-type Fresnel zone plate (FZP) by ultraviolet femtosecond (fs) laser-inscribed lithography is achieved, which induces the refractive index change by fs-laser tailoring. The realization of ultraviolet fs-laser fabrication inside glass can benefit from the excellent optical performance of the AlF3 glass. Compared with traditional surface-etching micro-optical elements, the phase-type FZP based on AlF3 glass exhibits a clear and well-defined geometry and presents perfect environmental suitability without surface roughness problems. Additionally, optical focusing and multi-wavelength imaging can be easily obtained. Phase-type FZP embedded in AlF3 glass has great potential applications in the imaging and focusing in glass-integrated photonics, especially for the ultraviolet wavelength range.


2021 ◽  
Vol 13 (36) ◽  
pp. 43622-43631
Author(s):  
Ji Huang ◽  
Lan Jiang ◽  
Xiaowei Li ◽  
Shipeng Zhou ◽  
Shuai Gao ◽  
...  

2021 ◽  
pp. 2100051
Author(s):  
Irene Bernardeschi ◽  
Muhammad Ilyas ◽  
Lucia Beccai

Author(s):  
Johnny Moughames ◽  
Xavier Porte ◽  
Laurent Larger ◽  
Maxime Jacquot ◽  
Muamer Kadic ◽  
...  
Keyword(s):  

Author(s):  
Maximilian Protte ◽  
Varun B. Verma ◽  
Jan Philipp Hopker ◽  
Richard P. Mirin ◽  
Sae Woo Nam ◽  
...  

Author(s):  
Gaoliang Dai ◽  
Xiukun Hu ◽  
Julian Hering ◽  
Matthias Eifler ◽  
Joerg Seewig ◽  
...  

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