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Biomedical subjects

P Borgs

Publications and source records attributed to P Borgs.

3 recordsLinked to original sources

Vascular abnormalities in experimental and human lymphatic filariasis.

Whereas clinical descriptions of grotesque lymphedema and standard light microscopy in human filariasis have elucidated the natural progression of this disease, the link between the nematode and vascular abnormalities including elephantiasis remains poorly understood. Accordingly, we examined the nature and distribution of lymphatic and blood vascular derangements in a variety of tissues and organs from 37 ferrets acutely and chronically infected with Brugia malayi and in 15 patients with Wuchereria bancrofti or Brugia malayi infestation (resected skin, subcutaneous tissue, and lymph nodes) using light and transmission electron microscopy, immunohistochemistry, and in vivo microscopy. In ferrets, eosinophilic abscesses and epithelioid and giant cell granulomas with fragmented worms in various stages of disintegration were found in multiple organs. Blood microvasculopathy consisted of endothelial hyperplasia, focal thickening and stenosis, vessel obliteration with marked perivascular infiltration of lymphocytes, plasma cells, eosinophils, and numerous large macrophages laden with a coarse golden-brown pigment. Endothelial ballooning and swelling, pavementing, denuding, scarring, and sludge formation were seen along with high endothelium in atypical locations. Dilated lymphatics were most prominent near adult worms and showed plump endothelium, thickened walls and valves, thrombus formation, and often perilymphangitis and adjacent tissue fibrosis. In vivo microscopy showed wriggling live adult worms in dilated incompetent sludge-filled groin lymphatics even when microfilaremia and peripheral edema were absent. In human tissues, in addition to "pachyderm" skin changes (keratosis, papillomatosis, acanthosis and collagen deposition), there was blood vessel and lymphatic vasculopathy similar to ferrets (angiocentric inflammation, congestion, vasculitis, thrombosis, thickened vessel walls, dilated lymphatics, lymphangitis, reactive lymph nodal hyperplasia and nodal fibrosis). These changes reflect generalized endothelial damage due to worm products, physical injury to valves and vessel walls from lymphatic-dwelling live worms, and host immune reactivity. Whereas adult worms target the lymphatic apparatus, their offspring and the host immune response primarily affects the blood microvasculature.

Animals

A quantitative lymphocyte localization assay.

Multiple lesions (up to 100 sites) were induced in the skin of sheep using either allogeneic lymphocytes or, in BCG-sensitized animals, tuberculin. Cells recovered from an indwelling lymph catheter draining a prescapular lymph node were labeled with 111-indium, returned to venous blood, and allowed to circulate for 3 hours. Sheep were killed, and the skin lesions and lymph nodes were removed and counted in a gamma spectrometer. High levels of radioactivity (up to 38,000 cpm/lesion) were recovered from lesions, and only a few hundred cpm were recovered from comparable normal skin sites. Dose-response relationships and time kinetics were demonstrated for these lesions, and the radioactivity on blood and lymph cells was measured. The contribution of cell-free radioactivity was negligible. Using replicate injection sites, analytical, internally controlled studies can now be initiated to study the induction, promotion, and suppression of lymphocyte traffic.

Animals

Alcohol, hepatic sinusoidal microcirculation, and chronic liver disease.

According to the "intact cell hypothesis," ethanol (EtOH) primarily targets nonparenchymal hepatic sinusoidal and perisinusoidal cells, thereby promoting sinusoidal capillarization, which impairs microcirculatory exchange of nutrients and wastes, promotes tissue fibrosis, and only indirectly damages hepatic parenchyma. To test this hypothesis, sinusoidal ultrastructure and hepatic lymph flow and protein composition were examined in rats up to 16 weeks after intragastric EtOH (36% calories)-high fat infusion (Tsukamoto-French model) (TF). The findings were compared to dietary controls and interpreted in light of restricted transsinusoidal protein movement observed in patients with alcoholic cirrhosis. In vitro, alterations in rat hepatic sinusoidal endothelial cell (RSE) morphology, proliferative index, and transendothelial macromolecular permeability (Evans blue-albumin uptake into microcarrier beads) were determined after acute and more chronic exposure to 0.1%-5 vol% EtOH. TF displayed 75% increased liver size, perisinusoidal collagenosis, and basal lamina deposition, ascitic fluid, and doubling of hepatic lymph liquid and protein flux. In vitro, 1% EtOH retracted RSE cell margins, enhanced transendothelial Evans blue-albumin flux and suppressed proliferative index. Thus, high EtOH concentration, clinically attainable in the portal blood during an alcoholic binge, both in vivo and in vitro, promotes early structural and functional alterations in sinusoidal endothelium, which over time may be responsible for progressive restriction of free intrahepatic exchange of liquid, macromolecules, and migrating immune cells.

Animals