Organoid Genetic Engineering

Organoid genetic engineering is the targeted modification of three-dimensional, stem-cell-derived tissue models to investigate how genes control human development. It typically uses CRISPR-Cas9 or related genome-editing systems to introduce mutations, correct variants, insert reporters, or regulate gene activity in selected cells before or during organoid formation. Because organoids self-organize in culture, engineered cells can reveal how genetic changes alter cell fate, tissue patterning, morphogenesis, and interactions among developing cell types. In developmental biology, these models help link genotype to phenotype, test mechanisms implicated in congenital disorders, and evaluate candidate therapies in a human-relevant experimental system.

Organoid Genetic Engineering - Related Videos

Education

JoVE Science Education - Advanced Biology

An Overview of Genetic Engineering

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2023

Genetic engineering – the process of purposefully altering an organism’s DNA – has been used to create powerful research tools and model organisms, and has also seen many agricultural applications. However, in order to engineer traits to tackle complex agricultural problems such as stress tolerance, or to realize the promise of gene therapy for treating human diseases, further advances in the field are still needed. Important considerations include the safe and efficient delivery of genetic...

Research

JoVE Journal - Medicine

Generation and Genetic Manipulation of Human Cervical Organoids

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2026

We present a detailed protocol to establish and genetically manipulate human cervical organoids.

Genetic Engineering of Model Organisms

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2023

Transgenesis, or the use of genetic engineering to alter gene expression, is widely used in the field of developmental biology. Scientists use a number of approaches to alter the function of genes to understand their roles in developmental processes. This includes replacement of a gene with a nonfunctional copy, or adding a visualizable tag to a gene that allows the resultant fusion protein to be tracked throughout development. In this video, the viewers will learn about the principles behind...

Research

JoVE Journal - Genetics
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Universal and Efficient Electroporation Protocol for Genetic Engineering of Gastrointestinal Organoids

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Cited by 17 •

2020

This protocol describes an efficient electroporation method for the transfection of four different gastrointestinal organoid entities with larger plasmids (to the extent of 10 kB). It can be performed within one day and does not need extensive preparation or special, cost-intensive electroporation buffers.

What is Genetic Engineering?

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2026

Genetic engineering is the process of modifying an organism’s DNA to introduce new, desirable traits. Many organisms, from bacteria to plants and animals, have been genetically modified for academic, medical, agricultural, and industrial purposes. While genetic engineering has definite benefits, ethical concerns surround modifying humans and our food supply.Scientists can Deliberately Modify an Organism’s GenomeGenetic engineering is possible because the genetic code—the way information is...

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