Fluidic Delivery

Fluidic delivery is the controlled transport of liquids through channels, reservoirs, and interfaces, enabling precise handling of biological materials in neuroscience and other research fields. Microfluidic systems regulate flow using pressure differences, pumps, valves, or capillary forces to direct defined volumes of drugs, cells, reagents, or signaling molecules to selected locations and compartments. These platforms support localized treatment of neural cultures, compartmentalized neuron studies, controlled exposure to neurotransmitters, and sampling from small experimental volumes. By improving spatial and temporal control while limiting reagent use, fluidic delivery helps researchers investigate neural communication, cellular responses, disease mechanisms, and therapeutic strategies.

Fluidic Delivery - Related Videos

Research

JoVE Journal - Neuroscience
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Scalable Fluidic Injector Arrays for Viral Targeting of Intact 3-D Brain Circuits

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Cited by 10 •

2010

Controlling and analyzing neural circuits in vivo would be facilitated by a technology for delivery of viruses and other reagents to desired 3-dimensional sets of brain regions. We demonstrate customized fluidic injector array fabrication, and delivery of virally-encoded optical sensitizers, enabling optical manipulation of complex brain circuits.

Maintaining and Assessing Various Tissue and Cell Types of the Eye Using a Novel Pumpless Fluidics System

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Cited by 2 •

2023

Real-time analysis of live tissue yields important functional and mechanistic data. This paper describes the protocols and critical variables to ensure accurate and reproducible generation of data by a novel and pump-free multi-channel fluidics system that maintains and assesses a wide range of tissue and cell models.

Research

JoVE Journal - Biology

High Speed Droplet-based Delivery System for Passive Pumping in Microfluidic Devices

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Cited by 1 •

2009

A novel microfluidic system has been developed using the phenomenon of passive pumping and a user controlled fluid delivery system. This microfluidic system has the potential to be used in a wide variety of biological applications given its low cost, ease of use, volumetric precision, high speed, repeatability and automation.

Intraductal Delivery to the Rabbit Mammary Gland

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Cited by 9 •

2017

Here, we describe a technique for the localized delivery of reagents to the rabbit mammary gland via an intraductal injection. In addition, we describe a protocol for visualization and the confirmation of delivery by high-resolution ultrasound imaging of contrast agents.

Cell Squeezing as a Robust, Microfluidic Intracellular Delivery Platform

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Cited by 40 •

2013

Rapid mechanical deformation of cells has emerged as a promising, vector-free method for intracellular delivery of macromolecules and nanomaterials. This protocol provides detailed steps on how to use the system for a broad range of applications.

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