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Updated: Jan 27, 2026

Biology of Microbial Communities - Interview
Published on: May 28, 2007
Evidence of a microbial etiology for sialoliths
W K Kao1, Richard A Chole1, M Allison Ogden1
1Department of Otolaryngology, Washington University in St. Louis, St. Louis, Missouri, U.S.A.
Objectives:
Sialolithiasis is the primary etiology for parotid and submandibular swelling, potentially resulting in discomfort, bacterial infections, and hospitalization. The etiology of sialolith formation is unknown. Currently, the proposed etiologies range from inflammation, coalescence of organic molecules, sialomicrolith formation, pH changes, and biofilm formation. In this study, we performed a descriptive analysis of images obtained through electron microscopy of sialoliths. Based on our findings and descriptive analysis, we hypothesize that sialolith formation is likely multifactorial and begins with biofilm formation. Biofilm formation then triggers a host immune response, and it is the interaction of biofilm with host immune cells and calcium nanoparticles that forms the nidus and creates a favorable environment for calcium precipitation.
Methods:
Sialoliths were extracted from patients and imaged under light and scanning electron microscopy. Specimens for light microscopy were prepared using a diamond saw. Specimens for electron microscopy were freeze-fractured, thus providing an undisturbed view of the core of the sialolith.
Results:
We were able to identify clear evidence of biofilm caves at the core of each sialolith. These biofilm caves were complex with the presence of bacteria and dehydrated extrapolysaccharide matrix, host cells (immune cells, platelets and erythrocytes), and calcium nanoparticles.
Conclusion:
The etiology of sialolith formation is likely multifactorial. We propose that biofilm formation within a single salivary gland or duct leads to local ductal injury, which results in the influx of host immune cells that interact with the biofilm and calcium nanoparticles, creating a scaffold upon which further calcium deposition can occur.
Level Of Evidence:
NA Laryngoscope, 130:69-74, 2020.
Insights
Sialolithiasis, a cause of salivary gland swelling, may start with biofilm formation. This triggers an immune response, leading to calcium buildup and sialolith development. Understanding this multifactorial etiology is key.
Area of Science:
- Oral pathology
- Microbiology
- Immunology
Background:
- Sialolithiasis causes parotid and submandibular swelling, leading to complications like infection and hospitalization.
- The exact cause of sialolith formation remains unknown, with theories including inflammation, organic molecule coalescence, and biofilm formation.
Purpose of the Study:
- To investigate the etiology of sialolith formation using electron microscopy.
- To analyze the structural components of sialoliths to understand their formation process.
Main Methods:
- Sialoliths were extracted from patients.
- Specimens were analyzed using light and scanning electron microscopy, including freeze-fracturing for undisturbed core views.
Main Results:
- Electron microscopy revealed biofilm caves at the core of sialoliths.
- These caves contained bacteria, extracellular matrix, host immune cells, platelets, erythrocytes, and calcium nanoparticles.
Conclusions:
- Sialolith formation is likely multifactorial, initiated by biofilm formation in salivary glands or ducts.
- Biofilm triggers a host immune response, creating a scaffold for calcium deposition and sialolith development.
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