Greater Omentum Implantation

Greater omentum implantation is a bioengineering and regenerative medicine strategy that places cells, biomaterials, or tissue-engineered constructs within the greater omentum, a vascularized fold of peritoneal tissue, to support their survival and integration. After implantation, the omentum supplies blood vessels and extracellular-matrix interactions, while local inflammatory and healing responses can promote vascularization, remodeling, and engraftment of the implanted material. This approach provides a living in vivo environment for evaluating engineered tissues, cell-based therapies, and implantable devices, helping assess construct maturation, biocompatibility, and functional performance before translation to more demanding anatomical sites.

Greater Omentum Implantation - Related Videos

Research

JoVE EoE - Gynecologic Cancer

Modeling Ovarian Cancer Cell Colonization of Omentum: An Ex Vivo Method to Establish Milky Spot Colonization of Fluorescently Labeled Ovarian Cancer Cells in Murine Omentum Explants

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2023

In this video, we establish an ex vivo omental organ culture overlaid with GFP-expressing ovarian cancer cells to study ovarian cancer colonization within the omental explant. This protocol analyzes immune cell structures within the omentum known as milky spots that promote metastases.

Mesothelial Cell Isolation: A Technique to Isolate Primary Mesothelial Cells From Human Omentum Tissue Specimen

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2023

This video describes the protocol to isolate primary human mesothelial cells from the human omentum specimen. The mesothelial cells can be used to establish an in vitro ovarian cancer model to investigate ovarian cancer cell adhesion, invasion, and proliferation.

A Method for Islet Transplantation to the Omentum in Mouse

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Cited by 4 •

2019

A method for the omental transplantation of islets in a mouse is introduced. The isolated islets are mixed with hydrogel and the mixture is placed into the omental pouch of a diabetic mouse. Then, the blood glucose is monitored, and immuno-histochemical analysis is performed.

Bioluminescence Imaging for Assessment of Immune Responses Following Implantation of Engineered Heart Tissue (EHT)

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Cited by 4 •

2011

This video demonstrates the use of in vivo bioluminescence imaging to study immune responses after implantation of Engineered Heart Tissue (EHT) in rats.

An Ex Vivo Model of Ovarian Cancer Peritoneal Metastasis Using Human Omentum

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2024

This protocol describes the establishment of a three-dimensional (3D) ex vivo model of cancer cell-omentum interaction. The model provides a platform for elucidating pro-tumor mechanisms within the adipose niche and for testing novel therapies.

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