Parotid Glands

Parotid glands are the largest paired salivary glands in humans, located near the cheeks and ears, where they produce saliva that supports digestion, lubrication, and oral health. Specialized acinar cells secrete a watery, enzyme-rich fluid, while an interconnected duct system modifies its electrolyte composition before releasing it into the mouth through the parotid duct. Autonomic stimulation, especially during eating, regulates secretion and increases salivary flow. In biology, studying the parotid glands helps explain exocrine secretion, epithelial organization, and digestive physiology, while also informing research on conditions such as inflammation, infection, obstruction, and glandular tumors.

Parotid Glands - Related Videos

Research

JoVE EoE - Immunotherapy

An Ultrasound-Guided Injection of Therapeutic Drugs into Human Salivary Glands

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2025

The video demonstrates an ultrasound-guided injection technique for administering therapeutic drugs into the salivary glands of a human patient.

Radiation Treatment of Organotypic Cultures from Submandibular and Parotid Salivary Glands Models Key In Vivo Characteristics

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Cited by 5 •

2019

Using three-dimensional organotypic cultures to visualize morphology and functional markers of salivary glands may provide novel insights into the mechanisms of tissue damage following radiation. Described here is a protocol to section, culture, irradiate, stain, and image 50–90 μm thick salivary gland sections prior to and following exposure to ionizing radiation.

Retrograde Parotid Gland Infusion through Stensen's Duct in a Non-Human Primate for Vectored Gene Delivery

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2021

Salivary glands have been proposed as a tissue target site for gene therapy, especially in the area of vaccination by gene transfer. We demonstrate gene delivery in a non-human primate model utilizing retrograde parotid infusion.

Cannulation of the Mouse Submandibular Salivary Gland via the Wharton's Duct

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Cited by 17 •

2011

A protocol for the cannulation of the mouse submandibular salivary gland via the Wharton's duct is described. For this experiment, the trypan blue solution is used as a dyer to demonstrate how this technique effectively delivers infusions into the targeted gland, and to suggest the reliability of this new approach as a potential clinical drug/cell therapy for the regeneration of salivary glands.

Gastric Fundic Glands Isolation: A Method to Isolate Fundic Glands from Human Stomach Tissue

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2023

This video describes a method to isolate gastric epithelial cells from the human fundic tissue. The isolated epithelial cells can be used as an in vitro model to study their regulatory roles in gastric physiology and pathophysiology.

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