Small Intestinal Submucosa

Small intestinal submucosa (SIS) is a collagen-rich extracellular matrix layer, often derived from porcine intestine, that serves as a biological scaffold for regenerative medicine and tissue engineering. Decellularization removes most cellular components while preserving matrix architecture, structural proteins, and signaling molecules that support cell attachment, migration, and host-driven remodeling. In bioengineering, SIS can be formed into sheets, tubes, or three-dimensional scaffolds for repairing skin, blood vessels, urinary tissues, and gastrointestinal structures. Its biodegradability and ability to guide new tissue formation make it a widely studied alternative to synthetic materials, although performance depends on processing, implantation site, and mechanical demands.

Small Intestinal Submucosa - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Isolating Enteric Glial Cells From the Submucosa and Lamina Propria of a Mouse

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2025

This video demonstrates a method for isolating enteric glial cells from the submucosa and lamina propria of the mouse intestine. It outlines the steps involved in extracting submucosa and lamina propria tissue, isolating the enteric glial cells from them, and culturing the cells on a coated well-plate to establish an enteric glial cell culture.

A Protocol for Lentiviral Transduction and Downstream Analysis of Intestinal Organoids

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Cited by 81 •

2015

In this video protocol we give a step by step explanation of lentiviral transduction in organoids of primary intestinal epithelium and of processing and downstream analysis of these cultures by quantitative RT-PCR, RNA-microarray and immunohistochemistry.

Functional Assessment of Intestinal Motility and Gut Wall Inflammation in Rodents: Analyses in a Standardized Model of Intestinal Manipulation

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Cited by 32 •

2012

Postoperative ileus (POI) is a complication of abdominal surgery leading to increased morbidity and a prolonged hospital stay. Because prophylactic or therapeutic strategies are lacking intensified research is necessary. Therefore we established a standardized and feasible mouse model to investigate the pathophysiology of POI and to study potential therapeutic options.

Autonomous and Rechargeable Microneurostimulator Endoscopically Implantable into the Submucosa

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Cited by 1 •

2018

The application of high-frequency low-energetic stimulation can alleviate the symptoms of gastric dysmotility. In this research, a miniature, endoscopically implantable and wirelessly rechargeable device which is implanted into a submucosal pocket is presented. Successful both-way communication and stimulation control were achieved during an experiment on live pig.

A Novel Method for the Culture and Polarized Stimulation of Human Intestinal Mucosa Explants

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Cited by 16 •

2013

We introduce a novel method for the maintenance of human intestinal mucosa in culture and monitoring of the response to various types of stimuli over at least 24 hrs. With our method, the polarity of the tissue is maintained, allowing for a physiological stimulation via the apical route.

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