Related Experiment Videos
Melanotransferrin is produced by senile plaque-associated reactive microglia in Alzheimer's disease
T Yamada1, Y Tsujioka, J Taguchi
1Department of Internal Medicine and Health Care, Fukuoka University, Fukuoka, Japan.
Abstract:
Melanotransferrin (MTf), also known as p97, has been localized in capillary endothelial cells of human brain. In Alzheimer's-diseased (AD) brain tissues, reactive microglial cells located in senile plaques exhibit elevated levels of MTf. The localization of the p97 protein may reflect its site of synthesis or could reflect a paracrine site of action. We examined the expression of MTf mRNA by in situ hybridization histochemistry using AD and healthy brain tissues. We also examined normal liver tissues by immunohistochemistry and in situ hybridization. In all the brain tissues examined, capillaries had positive signals for MTf mRNA. In AD tissues, expression of MTf mRNA appeared in reactive microglial cells in the grey matter specifically associated with dense plaques. In liver tissues, immunohistochemistry using anti-p97 antibody demonstrated that sinusoids were positively stained. In addition, in situ hybridization histochemistry revealed that hepatocytes had positive signals. These results suggest that p97 expression in reactive microglial cells are closely related to AD pathology. These results also support the notion that p97, which appears elevated in the cerebral spinal fluid and serum of AD patients, originates in the reactive microglia associated with dense senile plaques. Thus, p97 is a unique cellular hallmark of AD and further suggests that metal transport mechanisms play a role in this disease.
Insights
Melanotransferrin (MTf), or p97, is elevated in Alzheimer's disease (AD) brain microglial cells. This study suggests reactive microglia are a key source of p97 in AD, implicating metal transport in disease pathology.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Melanotransferrin (MTf), also known as p97, is found in human brain capillary endothelial cells.
- Elevated MTf levels are observed in reactive microglial cells within senile plaques in Alzheimer's disease (AD) brain tissues.
Purpose of the Study:
- To investigate the cellular origin and expression patterns of MTf mRNA in both AD and healthy brain tissues.
- To examine MTf expression in normal liver tissues to understand its broader cellular localization.
Main Methods:
- In situ hybridization histochemistry to detect MTf mRNA in brain and liver tissues.
- Immunohistochemistry using anti-p97 antibody on liver tissues.
Main Results:
- MTf mRNA was detected in capillaries of all examined brain tissues.
- In AD tissues, MTf mRNA expression was specifically found in reactive microglial cells associated with dense plaques.
- Liver tissue analysis showed MTf staining in sinusoids and positive MTf mRNA signals in hepatocytes.
Conclusions:
- p97 expression in reactive microglial cells is closely linked to AD pathology.
- Reactive microglia associated with senile plaques are a likely source of elevated p97 in AD cerebrospinal fluid and serum.
- p97 serves as a unique cellular hallmark for AD, suggesting a role for metal transport mechanisms in the disease.