Video Experimental Relacionado
Updated: Jul 22, 2026

14:01
Isolation and Derivation of Mouse Embryonic Germinal Cells
Published on: October 22, 2009
Proliferación a largo plazo de células germinales primordiales de ratón en cultivo
J L Resnick1, L S Bixler, L Cheng
1Mammalian Genetics Laboratory, ABL-Basic Research Program, NCI-FCRDC, Frederick, Maryland 21702-1201.
Nature
|October 8, 1992
Resumen
El factor básico de crecimiento de fibroblastos (bFGF) permite la proliferación a largo plazo de las células germinales primordiales (PGC) in vitro. Este descubrimiento establece el primer sistema para el cultivo extensivo de PGC, avanzando la investigación en biología del desarrollo.
Área de la Ciencia:
- Biología del desarrollo Biología del desarrollo.
- Biología de las células madre Biología de las células madre
- El cultivo celular es la cultura celular.
Sus antecedentes:
- Las células germinales primordiales (PGC) son cruciales para la reproducción, ya que se originan temprano en el desarrollo embrionario.
- Los métodos de cultivo in vitro existentes para los PGC tienen limitaciones para mantener la proliferación y el número de células.
- El factor de acero y el factor inhibidor de la leucemia apoyan la supervivencia y la proliferación de PGC, pero no la expansión a largo plazo.
Objetivo del estudio:
- Identificar nuevos factores que promueven la proliferación a largo plazo de los PGCs in vitro.
- Establecer un sistema robusto para el cultivo de PGCs, superando las limitaciones actuales.
Principales métodos:
- Cultivo de células germinales primordiales de ratón (PGC) en vitro.
- Investigando los efectos del factor básico de crecimiento de fibroblastos (bFGF) en combinación con el factor acero y el factor inhibidor de la leucemia.
- Caracterizar las células derivadas para que se parezcan a las células madre embrionarias y las células de carcinoma embrionario.
Principales resultados:
- El factor básico de crecimiento de fibroblastos (bFGF) fue identificado como un nuevo estimulante para la proliferación de PGC in vitro.
- Una combinación de bFGF, factor de acero y factor inhibidor de la leucemia apoyó la proliferación de PGC a largo plazo.
- Esto resultó en la formación de grandes colonias de células germinales embrionarias, que se asemejan a las células madre embrionarias.
Conclusiones:
- El factor básico de crecimiento de los fibroblastos (bFGF) es un factor clave para lograr un cultivo de PGC a largo plazo.
- Este estudio presenta el primer sistema exitoso para el cultivo extensivo in vitro de PGCs.
- Las células germinales embrionarias derivadas ofrecen un modelo valioso para estudiar el desarrollo temprano de las células germinales y la pluripotencia.
Videos de Conceptos Relacionados
Spermatogenesis
Spermatogenesis is the process by which haploid sperm cells are produced in the male testes. It starts with stem cells located close to the outer rim of seminiferous tubules. These spermatogonial stem cells divide asymmetrically to give rise to additional stem cells (meaning that these structures “self-renew”), as well as sperm progenitors, called spermatocytes. Importantly, this method of asymmetric mitotic division maintains a population of spermatogonial stem cells in the male reproductive...
Oogenesis
In human women, oogenesis produces one mature egg cell or ovum for every precursor cell that enters meiosis. This process differs in two unique ways from the equivalent procedure of spermatogenesis in males. First, meiotic divisions during oogenesis are asymmetric, meaning that a large oocyte (containing most of the cytoplasm) and minor polar body are produced as a result of meiosis I, and again following meiosis II. Since only oocytes will go on to form embryos if fertilized, this unequal...
Zygotic Development And Stem Cell Formation
The development of all multicellular organisms starts with the fusion of haploid cells called sperm and egg to form a diploid zygote. A zygote is a totipotent cell that can develop into a complete organism. The zygote undergoes cell division or cleavage to form an 8-cell mass. Until this stage, the cells are spherical, loosely attached, and remain totipotent. Totipotent cells are capable of developing both the embryonic and the extraembryonic tissues. However, as they continue to divide, they...
Embryonic Stem Cells
Embryonic stem (ES) cells were first discovered in mice in 1981 by Martin Evans. In 1998, James Thomson identified a method to isolate embryonic stem cells from humans. Human embryonic stem cells (hESCs) are obtained from 3-5 day old embryos that remain unused after an in vitro fertilization procedure.
ES cells are grown in a culture medium where they can divide indefinitely, creating ES cell lines. Under certain conditions, ES cells can differentiate, either spontaneously into a variety of...
ES cells are grown in a culture medium where they can divide indefinitely, creating ES cell lines. Under certain conditions, ES cells can differentiate, either spontaneously into a variety of...
Spermatogenesis
Spermatogenesis is a complex process that involves the development of sperm cells from undifferentiated stem cells in the seminiferous tubules of the testes. The process is essential for the production of mature and functional sperm cells that are capable of fertilizing an egg.
The process of spermatogenesis can be divided into mitosis, meiosis, and spermiogenesis. During mitosis, the spermatogonia or stem cells divide to produce two identical daughter cells, type A and B spermatogonia. Type-A...
The process of spermatogenesis can be divided into mitosis, meiosis, and spermiogenesis. During mitosis, the spermatogonia or stem cells divide to produce two identical daughter cells, type A and B spermatogonia. Type-A...

