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Updated: Dec 25, 2025

Prescribed 3-D Direct Writing of Suspended Micron/Sub-micron Scale Fiber Structures via a Robotic Dispensing System
Published on: June 12, 2015
Laser-triggered drug release from polymeric 3-D micro-structured films via optical fibers
Maxim A Kurochkin1, Olga A Sindeeva2, Ekaterina P Brodovskaya3
1Skolkovo Institute of Science and Technology, 3 Nobelya Str., Moscow 143025, Russia; Key Laboratory of Microsystems and Microstructures Manufacturing, Ministry of Education Micro/Nanotechnology Research Centre, Harbin Institute of Technology, 2 Yikuang Street B1, 150080 Harbin, China.
Abstract:
Photosensitive polymeric three-dimensional microstructured film (PTMF) is a new type of patterned polymeric films functionalized with an array of sealed hollow 3D containers. The microstructured system with enclosed chemicals provides a tool for the even distribution of biologically active substances on a given surface that can be deposited on medical implants or used as a cells substrate. In this work, we proposed a way for photothermally activating and releasing encapsulated substances at picogram amounts from the PTMF surface in different environments using laser radiation delivered with a multimode optical fiber. The photosensitive PTMFs were prepared by the layer-by-layer (LbL) assembly from alternatively charged polyelectrolytes followed by covering with a layer of hydrophobic polylactic acid (PLA) and a layer of gold nanoparticles (AuNPs). Moreover, the typical photothermal cargo release amounts were determined on the surface of the PTMF for a range of laser powers delivered to films placed in the air, deionized (DI) water, and 1% agarose gel. The agarose gel was used as a soft tissue model for developing a technique for the laser activation of PTMFs deep in tissues using optical waveguides. The number of PTMF chambers activated by a near-infrared (NIR) laser beam was evaluated as the function of optical parameters.

