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Journal ArticleDOI

Initial cellular response to laser surface engineered biomaterials

TLDR
An overview of the initial cellular response to medical implants and the different techniques used to modify the surface of different biomaterials is provided, describing in vitro, pre-clinical, and clinical trials performed thus far.
Abstract
Introducing micro- and nanoscale features on biomaterials in an engineered, controlled manner has been shown to positively affect medical implant integration into the human body. A key factor in this process is the initial cellular response toward the implant. Different techniques such as chemical treatment, plasma spraying, lithography, and coatings, among others, have been applied during the last decades to improve the implant integration. One of the methods that started to be recently exploited is laser surface engineering (LSE). LSE offers a wide range of new surface engineering methods, such as laser surface melting (LSM), laser engineered net shaping (LENS), and selective laser melting/sintering (SLM/S) that can generate complex micro- and nanoscale features with high resolution. This review provides an overview of the initial cellular response to medical implants and the different techniques used to modify the surface of different biomaterials. An emphasis is given to laser techniques that were recently developed for surface texturing, describing in vitro, pre-clinical, and clinical trials performed thus far.

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Citations
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Journal ArticleDOI

In vivo comparison between laser‐treated and grit blasted/acid etched titanium

TL;DR: Laser surface treatment gives the same results to the grit-blasting/acid-etched method and thus is a valid alternative to conventional roughening for dental implant materials.
Journal ArticleDOI

Effects of laser surface melting on crystallographic texture, microstructure, elastic modulus and hardness of Ti−30Nb−4Sn alloy

TL;DR: In this paper, the effects of cold rolling, recrystallization and laser surface melting (LSM) on the microstructure and mechanical properties of a biphase (α + β) Ti−30Nb−4Sn alloy were determined.
Journal ArticleDOI

Laser surface alloying applied on Ti-3Mo and Ti-10Nb sintered parts

TL;DR: In this paper, the laser surface treatments can be applied to sintered parts aiming to close porosity and produce properties gradients, and the laser power was varied from 150 to 450 W, while other laser parameters were kept constant.
References
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Journal ArticleDOI

Geometric control of cell life and death.

TL;DR: Human and bovine capillary endothelial cells were switched from growth to apoptosis by using micropatterned substrates that contained extracellular matrix-coated adhesive islands of decreasing size to progressively restrict cell extension.
Book

Biomaterials Science: An Introduction to Materials in Medicine

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Journal ArticleDOI

Foreign body reaction to biomaterials.

TL;DR: A major focus of this review is on factors that modulate the interaction of macrophages and foreign body giant cells on synthetic surfaces where the chemical, physical, and morphological characteristics of the synthetic surface are considered to play a role in modulating cellular events.
Journal ArticleDOI

The Novel Zinc Finger-Containing Transcription Factor Osterix Is Required for Osteoblast Differentiation and Bone Formation

TL;DR: It is proposed that Runx2/Cbfa1-expressing preosteoblasts are still bipotential cells, because Osx null preostEoblasts express typical chondrocyte marker genes, and Osx acts downstream of Runx 2/C bfa1.
Journal ArticleDOI

Imprint of sub-25 nm vias and trenches in polymers

TL;DR: In this article, a nanoimprint process that presses a mold into a thin thermoplastic polymer film on a substrate to create vias and trenches with a minimum size of 25 nm and a depth of 100 nm has been demonstrated.
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