Genetic Modification

Genetic modification is the deliberate alteration of an organism’s genetic material to change specific traits or biological functions. In molecular engineering, researchers introduce, remove, or edit DNA using tools such as recombinant DNA methods and CRISPR-based systems, which can target defined sequences and direct cellular repair or gene expression. These approaches support the design of microorganisms that produce useful compounds, plants with improved characteristics, and engineered cells for research or therapeutic development. Genetic modification also helps scientists investigate gene function, optimize biological systems, and develop more precise strategies for biotechnology, medicine, agriculture, and environmental applications.

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Genetic Modification of Primary Human Keratinocytes: A Method for Genetically Manipulating Keratinocytes Using Recombinant Retroviruses

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2023

This video describes a detailed protocol for producing genetically modified primary human keratinocytes recombinant retrovirus. This method can be used to manipulate gene expression in keratinocytes.

Stereotaxic Injection of Viruses for Stable Genetic Modification in a Mouse Model

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2025

Source: Porlan, E., et al. Stable and Efficient Genetic Modification of Cells in the Adult Mouse V-SVZ for the Analysis of Neural Stem Cell Autonomous and Non-autonomous Effects. J. Vis. Exp. (2016)This video demonstrates stable genetic modification of neural stem cells (NSCs) in the ventricular-subventricular zone (V-SVZ) through stereotaxic injection of a virus-carrying therapeutic gene in a mouse model. The virus enters NSCs, undergoes reverse transcription, integrates into the genome, and...

Targeted Microinjection and Electroporation of Primate Cerebral Organoids for Genetic Modification

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Cited by 3 •

2023

The electroporation of primate cerebral organoids provides a precise and efficient approach to introduce transient genetic modification(s) into different progenitor types and neurons in a model system close to primate (patho)physiological neocortex development. This allows the study of neurodevelopmental and evolutionary processes and can also be applied for disease modeling.

Genetic Modification and Recombination of Salivary Gland Organ Cultures

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Cited by 20 •

2013

A technique to genetically manipulate epithelial cells within whole ex vivo cultured embryonic mouse submandibular glands (SMGs) using viral gene transfer is described. This method takes advantage of the innate ability of SMG epithelium and mesenchyme to spontaneously recombine after separation and infection of epithelial rudiments with adenoviral vectors.

Genetic Modification of Cyanobacteria by Conjugation Using the CyanoGate Modular Cloning Toolkit

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Cited by 19 •

2019

Here, we present a protocol describing how to i) assemble a self-replicating vector using the CyanoGate modular cloning toolkit, ii) introduce the vector into a cyanobacterial host by conjugation, and iii) characterize transgenic cyanobacteria strains using a plate reader or flow cytometry.

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