Continuous Flow

Continuous flow is a process in which liquids, gases, or biological materials move continuously through a system rather than being handled in separate batches. It works by maintaining a controlled input and output, allowing transport, mixing, reaction, or exchange to occur as material passes through channels, vessels, or bioreactors. In biology, continuous flow supports cell perfusion, microbial cultivation, wastewater treatment, and laboratory assays by supplying nutrients or reactants while removing products and waste. Controlling flow rate, residence time, temperature, and concentration can improve environmental stability, reproducibility, and process efficiency, making the approach valuable for studying dynamic biological systems and developing scalable bioprocesses.

Continuous Flow - Related Videos

Research

JoVE Journal - Bioengineering
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Parallel-plate Flow Chamber and Continuous Flow Circuit to Evaluate Endothelial Progenitor Cells under Laminar Flow Shear Stress

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Cited by 51 •

2012

We are describing a method to subject adherent cells to laminar flow shear stress in a sterile continuous flow circuit. The cells' adhesion, morphology can be studied through the transparent chamber, samples obtained from the circuit for metabolite analysis and cells harvested after shear exposure for future experiments or culture.

Research

JoVE Journal - Bioengineering

The Submerged Printing of Cells onto a Modified Surface Using a Continuous Flow Microspotter

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Cited by 2 •

2014

This 3D microfluidic printing technology prints arrays of cells onto submerged surfaces. We describe how arrays of cells are delivered microfluidically in 3D flow cells onto submerged surfaces. By printing onto submerged surfaces, cell microarrays were produced that allow for drug screening and cytotoxicity assessment in a multitude of areas.

Continuous Flow Chemistry: Reaction of Diphenyldiazomethane with p-Nitrobenzoic Acid

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Cited by 2 •

2017

Flow chemistry carries environmental and economic advantages by leveraging superior mixing, heat transfer and cost benefits. Herein, we provide a blueprint to transfer chemical processes from batch to flow mode. The reaction of diphenyldiazomethane (DDM) with p-nitrobenzoic acid, conducted in batch and flow, was chosen for proof of concept.

Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example

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Cited by 6 •

2015

Real-time monitoring allows for fast optimization of reactions performed using continuous-flow processing. Here the preparation of 3-acetylcoumarin is used as an example. The apparatus for performing in-situ Raman monitoring is described, as are the steps required to optimize the reaction.

The Fabrication and Operation of a Continuous Flow, Micro-Electroporation System with Permeabilization Detection

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Cited by 4 •

2022

This protocol describes the microfabrication techniques required to build a lab-on-a-chip, microfluidic electroporation device. The experimental setup performs controlled, single-cell-level transfections in a continuous flow and can be extended to higher throughputs with population-based control. An analysis is provided showcasing the ability to electrically monitor the degree of cell membrane permeabilization in real-time.

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