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Abstract:
Macrophage invasion in rabbits was elicited by intravitreal injection of trypan blue or latex particles; as after hemorrhage, there are two periods of macrophage invasion with elevated numbers of intravitreal cells at three and 21 days. Release of acid proteolytic activity by macrophages from both time periods was assayed by analysis of the cell-free vitreal supernate and of the medium of cultured cells. Lysates of freshly-isolated macrophages and of adjacent ocular tissues were also analyzed. Although some quantitative differences were observed, a similar profile of acid proteolytic activity toward hemoglobin at pH 2.0 to 6.5 was found in the vitreal supernate and in the cells from both periods. Most macrophages invade via the ciliary processes and during invasion elevated levels of acid proteolytic activity were found in this tissue. Although some macrophages transmigrate the retina, normal acid protease levels were low in sensory retina and essentially unchanged during macrophage invasion. Protease inhibitor studies indicated the presence of carboxyl, cysteinyl, serine and metallo proteases in macrophages and in macrophage-containing tissues. The inhibitor data also suggested qualitative differences in acid protease activities in macrophages from the two invasive periods. During macrophage invasion vitreal pH was reduced from 7.4 to 6.2 suggesting that some macrophage-derived acid proteases may be active in that compartment. Thus, although the phagocytic activity of macrophages aids vitreal clearing, action of macrophage proteases may also contribute to vitreal pathology by cleavage of vitreal proteins.
Insights
Macrophages invade the vitreous humor in two distinct phases after injury, releasing acid proteases that may contribute to ocular pathology despite aiding in debris clearance.
Area of Science:
- Ophthalmology
- Cell Biology
- Biochemistry
Background:
- Macrophage invasion into the vitreous humor occurs following ocular injury.
- Understanding the enzymatic activity of these macrophages is crucial for ocular health.
Purpose of the Study:
- To investigate the acid proteolytic activity of macrophages during invasion into the rabbit vitreous.
- To determine the role of macrophage proteases in vitreous pathology.
Main Methods:
- Eliciting macrophage invasion using intravitreal injections in rabbits.
- Assaying acid proteolytic activity in vitreous fluid, cultured macrophages, and ocular tissues.
- Utilizing protease inhibitors to characterize enzyme activity.
Main Results:
- Two distinct periods of elevated intravitreal macrophages were observed at 3 and 21 days post-injection.
- Macrophages exhibited similar acid proteolytic activity profiles towards hemoglobin across both invasion periods.
- Elevated protease activity was found in ciliary processes, a primary invasion route, while retinal activity remained low.
- Protease inhibitor studies revealed the presence of various protease types within macrophages and ocular tissues.
- Vitreal pH decreased during invasion, potentially activating macrophage-derived proteases.
Conclusions:
- Macrophage invasion involves significant acid proteolytic activity, particularly in the ciliary processes.
- While aiding in vitreous clearing, macrophage proteases may also contribute to ocular pathology through protein cleavage.
- Distinct protease activity profiles suggest temporal differences in macrophage function during invasion.