Somatic Cell Nuclear Transfer

Somatic cell nuclear transfer (SCNT) is a cloning technique that creates an embryo by replacing an egg cell’s nucleus with the nucleus of a differentiated somatic cell. After the enucleated egg is activated, cellular factors reprogram the transferred nucleus to a pluripotent state, enabling embryonic development and, in some cases, implantation. In immunology and infection research, SCNT can produce genetically matched animal models for examining immune responses, host–pathogen interactions, and disease susceptibility. It also supports studies of developmental reprogramming and may help generate patient-matched cells for investigating immune disorders, although efficiency and ethical considerations limit its use.

Somatic Cell Nuclear Transfer - Related Videos

Research

JoVE Journal - Biology

A Simple Microaspiration Technique for Isolating Somatic Cells from Cryopreserved Equine Semen as Nuclear Donors for Cloning

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2025

This protocol presents a simple microaspiration technique to isolate viable somatic cells (SCs) from cryopreserved equine semen. Unlike traditional approaches, this technique avoids long in vitro cultures and overcomes sperm contamination, enabling immediate use in somatic cell cloning.

Nuclear Transfer into Mouse Oocytes

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Cited by 7 •

2006

This movie and the protocol are intended to help learning nuclear transfer.

Research

JoVE Journal - Developmental Biology
Free Sample

Combinational Treatment of Trichostatin A and Vitamin C Improves the Efficiency of Cloning Mice by Somatic Cell Nuclear Transfer

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Cited by 20 •

2018

We describe a dramatically improved method for mouse cloning using trichostatin A, vitamin C, and deionized bovine serum albumin. We show a simplified, reproducible protocol that supports efficient development of cloned embryos. Hence, this method could become a standardized procedure for mouse cloning.

Education

JoVE Science Education - Advanced Biology

Tissue Regeneration with Somatic Stem Cells

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2023

Somatic or adult stem cells, like embryonic stem cells, are capable of self-renewal but demonstrate a restricted differentiation potential. Nonetheless, these cells are crucial to homeostatic processes and play an important role in tissue repair. By studying and manipulating this cell population, scientist may be able to develop new regenerative therapies for injuries and diseases. This video first defines somatic stem cells, and then explores the role these cells play in tissue regeneration.

Assessing Somatic Hypermutation in Ramos B Cells after Overexpression or Knockdown of Specific Genes

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Cited by 5 •

2011

We describe how to perform retroviral or lentiviral infections of overexpression or shRNA-containing constructs in the human Ramos B-cell line and how to measure somatic hypermutation in these cells.

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