Hollow Microneedle Arrays

Hollow microneedle arrays are engineered assemblies of microscale needles with internal bores that pierce the skin with limited tissue disruption, enabling localized delivery or fluid sampling. They work by creating temporary pathways through the stratum corneum; pressure or diffusion then drives drugs, vaccines, or diagnostic fluids through the hollow channels into targeted skin layers. In bioengineering, these arrays support minimally invasive transdermal therapy, controlled release, and extraction of interstitial fluid for biomarker analysis. Their small size can reduce pain and improve patient acceptance, while ongoing research addresses fabrication, dosing accuracy, and integration with wearable sensing systems.

Hollow Microneedle Arrays - Related Videos

Research

JoVE Journal - Bioengineering

Hollow Microneedle-based Sensor for Multiplexed Transdermal Electrochemical Sensing

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Cited by 34 •

2012

This article details the construction of a multiplexed microneedle-based sensor. The device is being developed for in situ sampling and electrochemical analysis of multiple analytes in a rapid and selective manner. We envision clinical medicine and biomedical research uses for these microneedle-based sensors.

Polymeric Microneedle Array Fabrication by Photolithography

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Cited by 24 •

2015

Here, we present a protocol describing a mold-free fabrication process of the polymeric microneedles by photolithography.

Dissolving Microneedle Array Patches Manufactured By Solvent Casting Technique and Essential Characterization of Microneedle-Based Biomedical Devices

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2026

The present work aims to serve as a practical guide enabling researchers to prepare their own DMAP devices using the solvent-casting method, also known as micromolding, and to perform basic characterization.

Fabrication of a Master Mold for Microneedles with a Micron-sized Air-vent Hole

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2025

This article introduces a unique method for fabricating master molds with an air-vent hole to prevent air entrapment during viscous polymer casting, enabling the fabrication of gelatin microneedles with sharp tips. By reducing the casting volume of high-viscosity gelatin, thin-walled hollow pyramidal microneedles could also be fabricated.

Rodent Brain Microinjection Using a Quartz Microneedle

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2025

Source: Paolone, G., et al. Personalized Needles for Microinjections in the Rodent Brain. J. Vis. Exp. (2018).This video demonstrates a rodent brain microneedle injection using a quartz microneedle with holes. The microneedle is attached to a syringe and micropump to control the delivery rate. The needle with the injection solution is inserted into the brain with the delivery speed set at low. Once positioned, the delivery speed is increased. The needle is withdrawn after a brief pause.

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