Results 71 to 80 of about 174,022 (169)

Melt electrowriting (MEW)-PCL composite Three-Dimensional exosome hydrogel scaffold for wound healing

open access: yesMaterials & Design
While mesenchymal stem cell-derived exosomes hold substantial potential in wound healing, challenges persist in terms of large-scale production and activity of 2D-culture derived exosome, as well as addressing their inactivation and loss during ...
Xiangkai Kong   +10 more
doaj   +1 more source

From Flexible to Conformable Pressure Sensors: Mechanisms, Materials, and Biomedical Applications

open access: yesAdvanced Electronic Materials, Volume 12, Issue 16, 24 August 2026.
This review highlights recent progress, challenges and future opportunities in pressure sensing for advanced biomedical applications. We summarize key transduction mechanisms and emerging material strategies, discuss representative wearable and implantable applications for continuous physiological monitoring and provide a focused perspective on barrier
Rishabh B. Mishra   +2 more
wiley   +1 more source

Rational Design and Functionalization of Melt Electrowritten 4D Scaffolds for Biomedical Applications

open access: yesNano-Micro Letters
Highlights This review categorically analyzes the state of the art of the structural complexity of melt electrowriting (MEW) scaffolds, ranging from 1D, 2D to 3D architectures, and presents advanced strategies to enhance scaffold quality.
Yanping Zhang   +4 more
doaj   +1 more source

Printomics: the high-throughput analysis of printing parameters applied to melt electrowriting

open access: yes, 2019
Melt electrowriting (MEW) combines the fundamental principles of electrospinning, a fibre forming technology, and 3D printing. The process, however, is highly complex and the quality of the fabricated structures strongly depends on the interplay of key ...
Wunner, Felix M   +7 more
core   +1 more source

Predicting Melt‐Electrospinning Direct Writing Deposition Patterns via Multi‐Body Dynamics Simulation

open access: yesAdvanced Theory and Simulations, Volume 9, Issue 7, July 2026.
Melt‐electrospinning direct writing deposits polymer fibers into predefined patterns for tissue‐engineering scaffolds, but predicting fiber placement along moving nozzle paths is difficult. A validated physical model is applied to arbitrary trajectories and feed rates, reproducing experimentally written geometries and the transition from coiled to ...
Abiy Wubneh   +2 more
wiley   +1 more source

Application of Textile Technology in Vascular Tissue Engineering

open access: yesTextiles
Cardiovascular diseases pose a significant global health burden, driving the need for artificial vascular grafts to address limitations of autologous and allogeneic vessels. This review examines the integration of fiber materials and textile technologies
Hua Ji, Hongjun Yang, Zehao Li
doaj   +1 more source

Experimental investigation of hydrodynamics of melt layer during laser cutting of steel [PDF]

open access: yes, 2011
In laser cutting process, understanding of hydrodynamics of melt layer is significant, because it is an important factor which controls the final quality. In this work, we observed hydrodynamics of melt layer on kerf front in the case of laser cutting of
Remy Fabbro   +3 more
core   +1 more source

Synchronizing the Osteochondral Regeneration Process through Spatial Patterning of Stable and Hypertrophic Cartilage Organoids

open access: yesAdvanced Materials, Volume 38, Issue 33, 12 June 2026.
Zonated osteochondral assembloid implants are engineered through scaffold‐free spatial assembly of induced pluripotent stem cell (iPSC)‐derived chondrocyte organoids and periosteum‐derived osteogenic organoids. Implanted into full‐thickness rat osteochondral defects, they promote hyaline‐like cartilage repair, support subchondral bone formation with ...
Liuqi Peng   +3 more
wiley   +1 more source

4D Biomimetic Wrinkled Porous Textiles via Electrospinning and Melt Electrowriting for Advanced Strain Sensing

open access: yesSmall Structures
We present an innovative strategy for fabricating strain sensors based on nonwoven, porous, and wrinkled textile architectures that mimic the mechanical behavior of biological tissues.
Zhander Vohr Soreño   +3 more
doaj   +1 more source

Shaping Function: Polymeric 3D Systems With Unconventional Geometries for Biomedical Applications

open access: yesSmall, Volume 22, Issue 33, 12 June 2026.
Particle shape is a key design parameter governing biological interactions. Advances in fabrication enable precise control over anisotropy and compartmentalization, allowing modulation of cellular uptake, transport, and biodistribution, ultimately enhancing therapeutic performance. ABSTRACT Polymer geometry is a primary determinant of physical behavior
Francisca G. Perfeito   +2 more
wiley   +1 more source

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