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Amyloid enhancing factor-loaded macrophages in amyloid fibril formation
1Department of Medicine, Boston University School of Medicine, Massachusetts.
Abstract:
Amyloid enhancing factor (AEF) is believed to be a key agent that triggers the second (deposition) phase of amyloidogenesis. However, the target cells of AEF activation and their function after the activation have not yet been clearly identified. We found that peritoneal resident cells from amyloidotic mice contained very high AEF activity. With a simultaneous subcutaneous injection of 1.0 ml of the casein-adjuvant emulsion, an intravenous injection of 10,000 cells was consistently capable of inducing amyloidosis in a recipient mouse in 72 hours. After 2-hour cultures, the major AEF activity was found in the adherent cells (macrophages). An intravenous injection of 5 to 10 million of the live macrophages with the casein-adjuvant injection caused amyloid deposits in the recipient not only in the spleen and the liver but also in the lung (an extremely rare site of AA amyloid deposition). We have interpreted this finding to indicate that the injected AEF-loaded macrophages, while still residing in the lung and exposed to the blood stream, processed SAA to form amyloid. We further tested this postulate in an in vitro system. In a 4-day culture of the AEF-loaded macrophages in a medium containing SAA-rich mouse serum, small masses (less than 15 microns in diameter) of Congo red positive substance were observed scattered adjacent to or surrounded by the macrophages. The present observations lend strong credence to the conclusion that AEF-loaded macrophages are fully capable of processing SAA to AA and further to amyloid fibrils, and that they indeed play a role in the second phase of amyloidogenesis in vivo.
Insights
Amyloid enhancing factor (AEF) is primarily found in macrophages, which process serum amyloid A (SAA) to form amyloid fibrils. These AEF-loaded macrophages play a crucial role in the deposition phase of amyloidogenesis.
Area of Science:
- Biochemistry
- Immunology
- Pathology
Background:
- Amyloidogenesis involves a deposition phase triggered by amyloid enhancing factor (AEF).
- The specific cells targeted by AEF and their post-activation functions remain unclear.
Purpose of the Study:
- To identify the target cells of AEF activation.
- To elucidate the function of these cells in the amyloid deposition process.
Main Methods:
- Peritoneal resident cells from amyloidotic mice were isolated and cultured.
- AEF activity was assessed in cell fractions.
- Amyloidosis was induced in recipient mice via intravenous injection of AEF-loaded macrophages.
- In vitro cultures of macrophages with SAA-rich serum were performed.
Main Results:
- Peritoneal resident cells from amyloidotic mice exhibited high AEF activity.
- Adherent cells, identified as macrophages, were the primary source of AEF activity after culture.
- Intravenous injection of AEF-loaded macrophages induced amyloid deposition in spleen, liver, and notably, the lung.
- In vitro, AEF-loaded macrophages cultured with SAA-rich serum produced Congo red-positive amyloid fibrils.
Conclusions:
- AEF-loaded macrophages are capable of processing SAA into AA amyloid fibrils.
- Macrophages play a significant role in the second phase of amyloidogenesis, specifically in amyloid deposition.
- This study identifies macrophages as key players in AEF-mediated amyloid formation.