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Updated: Jul 22, 2026

Depletion and Reconstitution of Macrophages in Mice
Published on: August 1, 2012
Identification of the lipophilic factor produced by macrophages that stimulates steroidogenesis
W D Nes1, Y O Lukyanenko, Z H Jia
1Department of Chemistry and Biochemistry, Texas Tech University, Lubbock 79430, USA.
Abstract:
Macrophages are known to release a lipophilic factor that stimulates testosterone production by Leydig cells. This macrophage-derived factor (MDF) is thought to be physiologically relevant, because removal of macrophages from the testis results in altered testosterone secretion and reduced fertility. The purpose of the present study was to purify this factor, elucidate its chemical structure, and determine whether it is both present in the testis and acts when injected intratesticularly. Culture media from testicular and peritoneal macrophages were extracted with ether, and the organic phase was sequentially purified on C18, silica, and cyano-HPLC columns. MDF was detected using a rat Leydig cell bioassay, with testosterone secretion being the end point. Purified material and crude ether extracts were analyzed by gas chromatography/mass spectrometry and nuclear magnetic resonance spectroscopy. The time of elution of MDF from both testicular and peritoneal macrophages was identical on all three HPLC columns. A single peak was observed when MDF, obtained from the final HPLC column, was analyzed by gas chromatography. The MS fragmentation pattern of purified material from both peritoneal and testicular macrophages was identical to that of a reference preparation of 25-hydroxycholesterol. Also, the nuclear magnetic resonance spectrum of MDF was similar to that of authentic 25-hydroxycholesterol. When 25-hydroxycholesterol was subjected to the identical purification scheme as MDF, it was found to elute at the same times as MDF on all three columns and elicited activity in the Leydig cell bioassay as expected. Control medium purified identically did not contain 25-hydroxycholesterol or have biological activity. Ether extracts of testis contained 25-hydroxycholesterol, indicating that this compound is present under physiological conditions. Similarly, when 25-hydroxycholesterol was injected into the testis of adult rats, testosterone production was increased within 3 h. Taken together, these data indicate that the lipophilic factor produced by macrophages that stimulates steroidogenesis is 25-hydroxycholesterol.
Insights
Macrophages produce a factor that stimulates testosterone production. Researchers identified this macrophage-derived factor (MDF) as 25-hydroxycholesterol, confirming its presence and function in the testis.
Area of Science:
- Reproductive biology
- Endocrinology
- Cell biology
Background:
- Macrophages in the testis secrete a lipophilic factor stimulating Leydig cell testosterone production.
- This macrophage-derived factor (MDF) is crucial for normal testosterone secretion and male fertility.
- Previous studies suggested the physiological relevance of MDF, but its identity remained unknown.
Purpose of the Study:
- To purify the macrophage-derived factor (MDF).
- To elucidate the chemical structure of MDF.
- To confirm the presence and in vivo function of MDF in the testis.
Main Methods:
- Macrophages were cultured, and media extracted to isolate MDF.
- Purification involved sequential chromatography (C18, silica, cyano-HPLC).
- Structural identification utilized gas chromatography/mass spectrometry (GC/MS) and nuclear magnetic resonance (NMR) spectroscopy. Leydig cell bioassays assessed testosterone stimulation.
Main Results:
- Purified MDF from testicular and peritoneal macrophages exhibited identical chromatographic behavior.
- GC/MS and NMR analyses revealed MDF's identity as 25-hydroxycholesterol.
- 25-hydroxycholesterol stimulated testosterone production in Leydig cells and increased testosterone levels when injected into rat testes.
Conclusions:
- The lipophilic factor produced by macrophages that stimulates steroidogenesis is 25-hydroxycholesterol.
- 25-hydroxycholesterol is present in the testis and actively stimulates testosterone production in vivo.
- These findings identify a key molecular link between testicular macrophages and Leydig cell function.
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