Gene Integration

Gene integration is the incorporation of an external DNA sequence into a cell’s genome, allowing the added genetic material to persist as cells divide and potentially be inherited. It occurs when DNA delivery systems or molecular tools introduce a gene and cellular repair pathways insert it through mechanisms such as homologous recombination or non-homologous end joining; transposases and viral vectors can also promote integration. In biology, gene integration supports the creation of stable cell lines and transgenic organisms, investigation of gene function, and development of gene-based therapies, while integration site and copy number can influence gene expression and cellular behavior.

Gene Integration - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

AAV-Mediated Gene Delivery for Visualization of Compromised Retinal Membrane Integrity

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2026

Source: Vacca, O., et al. Using Adeno-associated Virus as a Tool to Study Retinal Barriers in Disease. J. Vis. Exp. (2015).This video demonstrates the method of AAV-mediated gene delivery in a transgenic mouse retina, followed by tissue dissection and staining to assess inner limiting membrane integrity.

PiggyBac Transposon-Mediated Gene Editing in Human iPSCs: A Procedure to Integrate Gene of Interest in Human iPSCs Using PiggyBac Transposon System

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2025

This video demonstrates the procedure to generate motor neurons by transfection of human iPSCs with PiggyBac transposon system by the ectopic expression of lineage-specific transcription factors.

TALEN-Mediated Targeted Gene Integration: Using Engineered Sequence-Specific Nucleases for the Precise Insertion of Fluorescent Protein Gene into hiPSCs

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2025

This video describes a precise genome editing technique in human induced pluripotent stem cells, or hiPSCs, using TALENs to create double-stranded breaks at a targeted locus, inducing homology-directed repair for fluorescence protein gene integration.

Fluorescence-microscopy Screening and Next-generation Sequencing: Useful Tools for the Identification of Genes Involved in Organelle Integrity

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Cited by 4 •

2012

A fundamental quest in cell biology is to define the mechanisms that underlie the identity of the organelles that make eukaryotic cells. Here we propose a method to identify the genes responsible for the morphological and functional integrity of plant organelles using fluorescence microscopy and next-generation sequencing tools.

Education

JoVE Core - Calculus

Integration by Parts: Indefinite Integrals

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2026

Integration by parts is a fundamental technique in calculus for evaluating integrals involving the product of two functions. It is particularly useful when direct integration is not feasible. The method is based on the product rule for differentiation, which states that the derivative of a product equals the derivative of the first function times the second, plus the first function times the derivative of the second. By integrating this identity and rearranging terms, the integration by parts...

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