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J Damas

Publications and source records attributed to J Damas.

At least 19 recordsLinked to original sources

Influence of a long-acting bradykinin antagonist, Hoe 140, on some acute inflammatory reactions in the rat.

We studied the influence of Hoe 140, a bradykinin antagonist, on inflammatory reactions induced in rats. Hoe 140 reduced paw oedema induced by bradykinin alone, bradykinin plus prostaglandin (PG) E1, carrageenan, urate crystals or urate crystals plus captopril. The inhibitory effect of Hoe 140 lasted for at least 4 h. Hoe 140 also reduced plasma exudation in sponges implanted in the back of the rat. However it did not modify paw oedema induced by zymosan or by heating the paw at 55 degrees C for 30 s. Carrageenan oedema developed to a small extent in kininogen-deficient rats while the swelling induced by heating the paw of kininogen-deficient rats was the same as that measured in normal animals. Hoe 140 had no effect on the slight swelling induced by carrageenan in kininogen-deficient rats. We conclude that the kinin system is involved in inflammatory reactions induced by carrageenan, urate crystals, sponge implantation but not by zymosan and scalding.

Alprostadil

Distribution of immunoreactive T-kininogen in rat nervous tissues.

The distribution in the nervous system of T-kininogen, the third kallikrein-resistant kininogen of the rat, was determined using bioassays and a radioimmunoassay system. In rat brain homogenates, trypsin released large amounts of a kinin-like myostimulating activity while urinary kallikrein released small amounts. The kinins released by trypsin were identified by HPLC as mostly T-kinin. Radioimmunoassays showed that a T-kininogen-like immunoreactive factor was uniformly distributed throughout the central nervous system. Higher levels were found in female rats than in male rats. Maximum levels were observed in newborn animals. A slight increase of T-kininogen content of the brain was observed after turpentine injection while T-kininogen level in liver was dramatically increased. T-kininogen plasma contamination to the nervous tissues was estimated by injecting 125I-labelled T-kininogen. The T-kininogen content of rat cultured cells and neurons was also examined. Highest levels were found in dorsal root ganglia neurons, lower levels in Schwann cells, phaeochromocytoma cells, mixed cells from spinal ganglion and in astrocytes. Immunocytochemistry showed the presence of T-kininogen in the cytoplasm of cultured dorsal root ganglia neurons and embryonic hippocampal neurons. The distribution of T-kininogen throughout the central and peripheral nervous system of the rat, the variations of its level during the life span suggest that T-kininogen would play the role of a cysteine proteinase inhibitor and not that of a T-kinin-releasing substrate in nervous tissues.

Aging

[Regulation of arteriolar tonus and EDRF].

The physiological significance of the release of NO by endothelial cells was discussed according to the effects of inhibitors of NO formation and to the observations of Mellander et al. on the reactivity of resistance vessels in cat skeletal muscle. Whole results indicate that NO continually takes patent arteries and decreases systemic resistances. However, NO has minimal effects on the arteriolar side of the vascular tree.

Animals

From ethnobotanical uses of Strychnos henningsii to antiinflammatories, analgesics and antispasmodics.

Strychnos henningsii Gilg is used in African traditional medicine for the treatment of various ailments, including rheumatism, gastrointestinal complaints and snake bites. Different preliminary pharmacological experiments are described. The results show that some of the reported folk medicinal applications of S. henningsii can be at least partially explained by the presence of retuline-like alkaloids, whose use could lead to new antinociceptive (antiinflammatory and analgesic) and antispasmodic drugs.

Alkaloids

Dissociation between the effects of zymosan on the systemic and pulmonary vessels of the rat.

1. Zymosan, an activator of the alternative complement pathway, (2 to 16 mg kg-1) injected intravenously via the tail vein of anaesthetized rats, dose-dependently increased the vascular permeability of lung parenchyma, as measured by the accumulation of 125I-labelled albumin in lungs. 2. Pretreatment of the animals with cyclo-oxygenase inhibitors, indomethacin or ketoprofen (3 mg kg-1) or with the lipoxygenase and cyclo-oxygenase inhibitor, BW755C (40 mg kg-1) abolished the vascular permeability changes induced by zymosan (16 mg kg-1). Neither, the PAF antagonist, WEB 2086 (10 mg kg-1) nor the antagonist of mast cell amines, mepyramine and methysergide (3 mg kg-1) affected the plasma exudation in lungs. Zymosan did not induce any accumulation of labelled albumin in lungs of rats made leukopenic by rabbit anti-neutrophil serum. 3. Zymosan (16 mg kg-1) increased the haematocrit. This increase was not modified by indomethacin but reduced by WEB 2086. 3. Intravenous injection of zymosan (3 and 8 mg kg-1) in anaesthetized rats transiently increased right ventricular blood pressure and pulmonary arterial pressure, accelerated respiratory rate and decreased systemic blood pressure. 5. WEB 2086 largely reduced the systemic hypotension but did not affect the increase of pulmonary vascular resistance. Indomethacin inhibited the increase of blood pressure in the right ventricle and the modification of the respiratory rate. This drug did not inhibit but increased the systemic hypotension induced by zymosan. 6. Zymosan (16 mg kg-1) reduced serum complement haemolytic activity by 46%. 7. These data suggest that the pulmonary vascular changes induced by intravascular complement activation with zymosan in rats are mediated by neutrophils and prostanoids while the systemic vascular effects depend mainly on PAF.

Animals

Proteinase inhibitors, kinins and the inflammatory reaction induced by sponge implantation in rats.

We studied the influence of aprotinin and soya bean trypsin inhibitor (SBTI) on the inflammatory reaction induced by the implantation of dry sponges in normal Wistar rats and in kininogen-deficient Brown Norway rats, during the first day after the implantation. In normal rats, aprotinin reduced the volume and total protein content of the exudates at 3 h but not thereafter. Aprotinin also markedly reduced the immunoreactive kinins and kallikrein in the exudates. Aprotinin did not modify the volume of the exudates of the Brown Norway rats. SBTI reduced the inflammatory reaction in both rat strains but did not significantly modify the formation of immunoreactive kinins. The inflammatory reaction developed more slowly in Brown Norway rats. The kinin system is thus involved during the first hours of the development of this acute inflammatory reaction. The anti-inflammatory effect of SBTI does not depend on the inhibition of kinin formation.

Animals

Kinins and peritoneal exudates induced by carrageenin and zymosan in rats.

1. Kinins were measured by a radioimmunoassay in the inflammatory exudates induced by carrageenin or zymosan in the peritoneal cavity of normal Wistar rats and of kininogen-deficient Brown Norway rats. 2. After administration of carrageenin to normal rats, levels of immunoreactive kinins showed a single peak during the first two hours and then decreased. The presence of kinins preceded and accompanied the exudation of 125I-labelled albumin. Kinins were identified as bradykinin by chromatography. 3. Captopril, an inhibitor of kininase 2, increased the level of kinins and the volume of the exudates after carrageenin treatment. In Brown Norway rats, the volume of the exudates was small and contained little or undetectable amounts of immunoreactive kinins. 4. During zymosan-induced peritonitis, the exudates were devoid of immunoreactive kinins in both species. The volume of the exudates was larger in kininogen-deficient rats than in normal rats. 5. We conclude that in rats, the kinin system is a major factor responsible for the development of the inflammatory reactions induced by carrageenin, but is not involved in the reactions induced by zymosan.

Animals

The significance of high molecular weight kininogen for contact activation of rat blood coagulation, in vitro.

The involvement of the high molecular weight rat kininogen in the activation of the rat contact system by kaolin-cephalin, kaolin, sulfatides and ellagic acid has been investigated, using a rat plasma congenitally devoid of this kininogen. Coagulation times induced by these activators were shorter in normal as well as in deficient rat plasma than in normal human plasma. Coagulation times were prolonged in deficient rat plasma, when the incubation times was three min or less. By kaolin or cephalin-kaolin, this prolongation disappeared when the incubation time reached ten min. The activation of plasma prekallikrein developed slowly in deficient plasma with all the triggers but reached control level after ten min of incubation. By kaolin-cephalin, the activation of Hageman factor was weak and slow in deficient plasma during the ten min of incubation. In rat, high molecular weight kininogen plays thus a role in the activation of the contact system by these triggers. But this role seems to be less important than in human plasma.

Animals

Acute phase plasma proteins in kininogen-deficient Brown Norway rats.

We examined whether Brown Norway rat plasma (BN/May Pfd f) contains alpha 1-cysteine proteinase inhibitor (alpha 1-CPI), also called major acute phase alpha 1-protein or T-kininogen. T-kininogen is a low molecular weight kininogen from which kinin can be released by trypsin but not by kallikreins. The BN plasma reacted with rabbit anti-alpha 1-CPI gamma globulins. Purified alpha 1-CPI released a kinin-like activity with trypsin and with homogenate of salivary glands, as Brown Norway rat plasma did. High concentration of added rat urine induced a small release (10%) of kinin from alpha 1-CPI. Preincubation of Brown Norway rat plasma with rabbit anti-rat alpha 1-CPI gamma-globulins nearly suppressed the kinin-forming substrate of trypsin in this plasma. These results indicated that plasma of our Brown Norway rats contains only alpha 1-CPI as kinin-forming substrate. This plasma contains low amount of alpha 2-macroglobulin, while its content in orosomucoid and haptoglobin was a little larger than that of Wistar rat plasma.

Acute-Phase Proteins

[Stimulation of rat mastocytes and molecular oxygen].

Free peritoneal mast-cells of the rat are stimulated in vitro by molecular oxygen as well as by hydrogen peroxide. Histamine release is also observed in vivo when molecular oxygen or diluted solutions of hydrogen peroxide are injected into the peritoneal cavity of the rat. Inflammatory lesions are produced (vascular congestion, oedema, exudate) which are suppressed by pretreatment with anti-H1 antihistaminics. When hydrogen peroxide solutions are more concentrated, inflammation is also provoked but antihistaminics are no more inhibitory. Mast-cells of the skin and of the lungs are not stimulated neither by molecular oxygen, nor by hydrogen peroxide.

Animals

[Inhibition of carrageenan edema by carrageenan itself].

The influence of two kinin forming agents: iota carrageenan and ellagic acid, on the paw oedema induced by 48/80, an amino-liberator, or by carrageenan iota, has been studied, in the Rat. Ellagic acid and carrageenan, by intraperitoneal injection, reduce the paw oedema induced respectively by 48/80 and carrageenan itself. This inhibition depends on a non-specific "counter-irritation" and not on kininogen stores depletion. Ellagic acid, by intravenous injection, diminishes the oedema induced by carrageenan; swelling due to 48/80, is not affected. So kininogen activation plays some role in the inflammatory processes induced by iota carrageenan. Carrageenan by intravenous injection, suppresses his own inflammatory action but does not influence at all the similar action of 48/80. The anti-inflammatory effect of carrageenan does not exclusively depend on kininogen stores depletion.

Animals