Ovarian Microenvironment

The ovarian microenvironment is the network of cells, extracellular matrix, blood vessels, hormones, and signaling molecules surrounding ovarian follicles and oocytes, shaping their development and function. Through coordinated communication among oocytes, granulosa and theca cells, stromal and immune cells, and vascular tissues, it regulates follicle growth, steroid production, nutrient exchange, and ovulation. Changes in this local environment can influence oocyte quality, reproductive aging, and conditions such as infertility or ovarian disease. Studying the ovarian microenvironment helps researchers understand reproductive biology and supports the development of improved fertility treatments, disease models, and tissue-engineering strategies.

Ovarian Microenvironment - Related Videos

Research

JoVE Journal - Immunology and Infection

An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses

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Cited by 18 •

2010

To study in vivo tumor growth and tumor microenvironment, we used a syngeneic and orthotopic mouse model of ovarian cancer in immunocompetent animals. We transduced a mouse tumor cell line (MOV1) with Katushka fluorescent protein (MOV1KAT) and here we show its orthotopic implantation in ovary and in vivo imaging.

Ovarian Fat Pad Transplantation Assay: An In Vivo Technique to Introduce Cells into Ovarian Fat Pad in Mouse Models

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2023

In this video, we demonstrate an assay for transplantation of experimental cells and tissue fragments into the mouse ovarian fat pad. This method can be used to monitor cell regeneration and tumor transformation via non-invasive techniques.

Probing the Ovarian Microenvironment: Methods for Isolation, 2D Culture, and Organoid Culture of Mouse Ovarian Somatic Cells

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2026

We describe methods for isolating mouse ovarian somatic cells from a stroma-enriched fraction of the ovary and for generating mouse ovarian somatic organoids using a scaffold-free approach.

Modeling the Early Steps of Ovarian Cancer Dissemination in an Organotypic Culture of the Human Peritoneal Cavity

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Cited by 20 •

2015

Here, we present a protocol to construct a three-dimensional in vitro model of the lining of the peritoneal cavity, composed of primary human mesothelial cells and fibroblasts layered with extracellular matrix, as a tool to investigate ovarian cancer cell adhesion, invasion, and proliferation.

Fabrication and Use of MicroEnvironment microArrays (MEArrays)

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Cited by 25 •

2012

A combinatorial functional screening method for gaining insights into the impacts of the molecular composition of microenvironments on cellular functions is described. The method takes advantage of existing microarray-based technologies to generate arrays of defined combinatorial microenvironments that support cell adhesion and functional analysis.

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