Lysate-based Systems

Lysate-based systems are cell-free platforms that use disrupted cells to retain biological machinery outside an intact living organism, enabling controlled biochemical reactions for bioengineering. Cell lysis releases enzymes, ribosomes, nucleic acids, and other molecular components into an extract, where supplied DNA, RNA, substrates, or cofactors can drive processes such as transcription, translation, and metabolic conversion. By separating these functions from cellular growth and survival, lysate-based systems support rapid prototyping of genetic circuits, biosensors, and engineered metabolic pathways. They also provide tractable models for studying molecular mechanisms and can advance distributed biomanufacturing and other applications requiring flexible, programmable biological production.

Lysate-based Systems - Related Videos

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JoVE EoE - Viral Growth and Techniques

Purification of Bacteriophages from Bacterial Lysate

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2026

Source: Pett, N., et al. T4 Bacteriophage and E. coli Interaction in the Murine Intestine: A Prototypical Model for Studying Host-Bacteriophage Dynamics In Vivo. J. Vis. Exp. (2024)This video demonstrates the purification of bacteriophages from bacterial cell lysates using sequential centrifugation, membrane filtration, chloroform extraction, centrifugal filtration, and buffer exchange to obtain a purified phage preparation.

Preparation of Bacteriophage Lysate for Generalized Transduction

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2026

Source: Saragliadis, A., et al. Producing Gene Deletions in Escherichia coli by P1 Transduction with Excisable Antibiotic Resistance Cassettes. J. Vis. Exp.(2018)This video demonstrates preparation of a bacteriophage lysate containing transducing particles. A donor strain is infected, plaques form, and the soft agar overlay is processed with chloroform to yield a clarified lysate for downstream analysis.

Cell-Free In Vitro mRNA Translation In Drosophila Lysates

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2026

Here, we provide details on how to prepare lysates and perform in vitro translation using Drosophila embryos.

Research

JoVE Journal - Bioengineering
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Liquid Chromatography Coupled to Refractive Index or Mass Spectrometric Detection for Metabolite Profiling in Lysate-based Cell-free Systems

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Cited by 6 •

2021

The protocols describe high-performance liquid chromatography methods coupled to refractive index or mass spectrometric detection for studying metabolic reactions in complex lysate-based cell-free systems.

Electrochemiluminescence Assay for Quantification of Target Protein Levels in Brain Lysate

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2025

In this video, we demonstrate the electrochemiluminescence immunoassay for the quantitation of target protein levels in different samples. This assay is based on the luminescence produced in the electrochemical reaction. The intensity of light emitted is proportional to the quantity of the target protein in the sample.

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