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Normal human neutrophils are a source of a specific interleukin 1 inhibitor
Abstract:
In the course of our study on neutrophil production of an interleukin 1 (IL-1)-like factor, we found that the addition of polymorphonuclear neutrophils (PMN) to monocytes cultured in the presence of zymosan resulted in decreased IL 1 activity of the resultant supernatant, suggesting that PMN may contain an inhibitor of IL 1. The objective of this investigation was to study this IL 1 inhibitor which normal human PMN contain. The inhibitor is constitutively present in the PMN because 0 hr PMN lysates and unstimulated PMN supernatants also show inhibitory activity. The PMN inhibitor inhibits IL 1 (crude and partially purified) in a dose-response manner and does not affect basal [3H]thymidine incorporation in the presence or absence of PHA-P. The PMN inhibitor does not have any effect on interleukin 2 (IL 2)-induced proliferation of the IL 2-dependent CTLL cells. The inhibitor can be generated in the absence of serum and is not produced as a result of proteolytic activity from PMN enzymes. The inhibitor is heat-labile and is most stable at neutral pH. Gel filtration studies on Sephadex G-200 indicate that the inhibitor is heterogeneous in size. Two inhibitory peaks, at 45,000 to 70,000 m.w. and at greater than 160,000 m.w., were observed. When zymosan-stimulated PMN supernatant was chromatographed, there was separation of inhibitory factor from a 17,000 m.w. proliferating factor. Presence of this PMN inhibitor may be important in negative regulation of IL 1.
Insights
Polymorphonuclear neutrophils (PMN) contain an interleukin 1 (IL-1) inhibitor. This PMN-derived inhibitor regulates IL-1 activity and may play a role in immune response modulation.
Area of Science:
- Immunology
- Cell Biology
Background:
- Interleukin 1 (IL-1) is a key cytokine in inflammatory and immune responses.
- Polymorphonuclear neutrophils (PMN) are crucial immune cells involved in innate immunity.
Purpose of the Study:
- To investigate the presence and characteristics of an IL-1 inhibitor within normal human PMN.
Main Methods:
- Culturing PMN with monocytes and zymosan.
- Assessing IL-1 activity in supernatant.
- Characterizing the inhibitor's properties (heat lability, pH stability, molecular weight) using gel filtration.
Main Results:
- PMN lysates and supernatants exhibited dose-dependent inhibition of IL-1 activity.
- The inhibitor did not affect T-cell proliferation or basal thymidine incorporation.
- Gel filtration revealed heterogeneous inhibitor sizes (45-70 kDa and >160 kDa).
Conclusions:
- Normal human PMN constitutively produce an IL-1 inhibitor.
- This PMN-derived inhibitor is heat-labile, stable at neutral pH, and has heterogeneous molecular weights.
- The inhibitor may function in the negative regulation of IL-1 during immune responses.