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1.
Braz. j. med. biol. res ; 52(1): e7581, 2019. tab, graf
Article in English | LILACS | ID: biblio-974275

ABSTRACT

Bredemeyera floribunda roots are popularly used to treat snakebites in the semiarid region of Northeast Brazil, and previous studies indicate the anti-ophidian actions of triterpenoid saponins found in its roots. To assess B. floribunda root extract (BFRE) activity against the effects of Bothrops jararacussu venom (BjuV), antiphospholipasic, antiproteolytic, antihemorrhagic, antinecrotic, and anti-edematogenic activities were investigated in mice. Phytochemical analysis revealed the presence of saponins, flavonoids, and sugars, with rutin and saccharose being the major constituents of BFRE. Acute toxicity was determined and BFRE was nontoxic to mice. Phospholipase A2 and proteolytic activities induced by BjuV were inhibited in vitro by BFRE at all concentrations tested herein. BFRE (150 mg/kg) inhibited paw edema induced by BjuV (50 µg/animal), reducing total edema calculated by area under the curve, but carrageenan-induced paw edema was unchanged. Hemorrhagic and necrotizing actions of BjuV (50 µg/animal) were considerably decreased by BFRE treatment. Thus, BFRE blocked the toxic actions of B. jararacussu venom despite having no anti-inflammatory activity, which points to a direct inhibition of venom's toxins, as demonstrated in the in vitro assays. The larger amounts of rutin found in BFRE may play a role in this inhibition, since 3′,4′-OH flavonoids are known inhibitors of phospholipases A2.


Subject(s)
Animals , Male , Rats , Antivenins/pharmacology , Plant Extracts/pharmacology , Plant Roots/chemistry , Crotalid Venoms/antagonists & inhibitors , Edema/drug therapy , Hemorrhage/etiology , Antivenins/isolation & purification , Bothrops , Crotalid Venoms/toxicity , Polygalaceae/chemistry , Disease Models, Animal , Dose-Response Relationship, Drug , Edema/etiology , Hemorrhage/drug therapy
2.
J. venom. anim. toxins incl. trop. dis ; 17(2): 199-208, 2011. ilus, graf, tab
Article in English | LILACS | ID: lil-587780

ABSTRACT

In the present study, the effects of Polybia paulista venom (PPV) on renal and vascular tissues were investigated. Isolated kidneys perfused with PPV (1 and 3 ìg/mL) had increased perfusion pressure, renal vascular resistance, urinary flow, and glomerular filtration rate; and reduced sodium tubular transport. Histological evaluation demonstrated deposits of proteins in Bowman's space and tubular lumen, and focal areas of necrosis. The venom promoted a cytotoxic effect on Madin-Darby canine kidney (MDCK) cells. A significant increase in lactic dehydrogenase levels was observed in response to venom exposure. In isolated mesenteric vascular beds, pressure and vascular resistance augmented in a dose-dependent manner. PPV increased the contractility of aortic rings maintained under basal tension. This contractile response was inhibited when preparations were maintained in Ca2+-free medium. Likewise, verapamil, a voltage-gated calcium channel blocker, also inhibited the contractile response. In this study, phentolamine, a blocker of á-adrenergic receptor blocker, significantly reduced the contractile effect of PPV in the aortic ring. In conclusion, PPV produced nephrotoxicity, which suggests a direct effect on necrotic cellular death in renal tubule cells. The vascular contractile effect of PPV appears to involve calcium influx through voltage-gated calcium channels via adrenergic regulation.


Subject(s)
Animals , Rats , Aorta , Calcium Channel Blockers , Kidney , Wasp Venoms , Phentolamine , Rats, Wistar , Verapamil
3.
J. venom. anim. toxins incl. trop. dis ; 17(3): 333-347, 2011. graf, tab
Article in English | LILACS | ID: lil-597233

ABSTRACT

In this study, we evaluated the actions of Crotalus durissus cumanensis venom (CDCmV), and its crotoxin (Crtx) fraction, on renal and vascular functions in Wistar rats. In isolated perfused kidneys, CDCmV (10 µg/mL) significantly increased the perfusion pressure (PP) from 110.7 ± 2.4 to 125.3 ± 2.8 mmHg after 30 minutes. This effect was accompanied by an increased renal vascular resistance (RVR) from 5.4 ± 0.1 to 6.2 ± 0.2 mmHg/mL.g-1.min-1. We observed decreases in urinary flow (UF) from 0.13 ± 0.01 to 0.05 ± 001 mL.g-1.min-1 and glomerular filtration rate (GFR) from 0.66 ± 0.06 to 0.18 ± 0.02 mL.g-1.min-1. Crtx did not change PP or RVR, but diminished GFR (from 0.65 ± 0.05 to 0.26 ± 003 mL.g-1.min-1) and UF (from 0.11 ± 0.008 to 0.09 ± 0.008 mL.g-1.min-1). Both CDCmV and Crtx reduced the percentage of tubular transport of sodium, chloride and potassium. The cytotoxicity of these substances against MDCK cells was tested by the MTT method: only CDCmV caused a decrease in the cell viability with an IC50 of 5.4 µg/mL. In endothelium-intact isolated aortic rings, CDCmV (0.1 to 30 µg/mL) increased the sustained phenylephrine-induced contraction to a value of 130.0 ± 6.6 percent of its corresponding control, but showed a relaxant effect in endothelium-denuded preparations. Similar results were observed in aortic rings contracted with potassium (40 mM). Crtx was ineffective in aortic ring assays. Thus, it is reasonable to suggest that the renal effects induced by the CDCmV may be due to its influence on the endothelium's ability to release factors that can alter the contractile behavior of vascular smooth muscle. In conclusion, CDCmV is toxic to kidney cells. It changes parameters of the renal function including the glomerular filtration rate, renal vascular resistance and tubular transport. The actions induced by CDCmV also involve endothelium-dependent vasoactive properties. Their effects may be only partially attributed to Crtx.


Subject(s)
Animals , Female , Rats , Crotalus , Crotoxin , Rats, Wistar , Crotalid Venoms/toxicity
4.
J. venom. anim. toxins incl. trop. dis ; 16(3): 493-504, 2010. ilus, graf, tab
Article in English | LILACS | ID: lil-557178

ABSTRACT

Snake venom proteins from the C-type lectin family have very distinct biological activities despite their highly conserved primary structure, which is homologous to the carbohydrate recognition region of true C-type lectins. We purified a lectin-like protein (BmLec) from Bothrops moojeni venom and investigated its effect on platelet aggregation, insulin secretion, antibacterial activity, and isolated kidney cells. The BmLec was purified using two chromatographic steps: affinity chromatography and reverse phase high performance liquid chromatography (HPLC). BmLec showed a dose-dependent platelet aggregation and significantly decreased the bacterial growth rate in approximately 15 percent. During scanning electron microscopy, the profile of Xanthomonas axonopodis pv. passiflorae treated with lectin disclosed a high vesiculation and membrane rupture. BmLec induced a strong and significant increase in insulin secretion at 2.8 and 16.7 mM glucose concentrations, and this effect was seen in the presence of EGTA in both experiments. BmLec (10 µg/mL) increased the perfusion pressure, renal vascular resistance and urinary flow. The glomerular filtration rate and percentages of sodium, potassium and chloride tubular transport were reduced at 60 minutes of perfusion. Renal alterations caused by BmLec were completely inhibited by indomethacin in all evaluated parameters. In conclusion, the C-type lectin isolated from Bothrops moojeni affected platelet aggregation, insulin secretion, antibacterial activity and isolated kidney function.


Subject(s)
Animals , Bothrops , Crotalid Venoms , Insulin , Kidney , Lectins, C-Type/isolation & purification , Platelet Aggregation , Chromatography, High Pressure Liquid/methods
5.
J. venom. anim. toxins incl. trop. dis ; 16(4): 614-622, 2010. ilus, graf
Article in English | LILACS | ID: lil-566161

ABSTRACT

Some snake venom proteins present enzymatic activities, such as L-amino acid oxidase (LAAO). The aim of this paper was to investigate the effect of Bothrops leucurus total venom (BleuTV) and its fraction LAAO (BleuLAAO) on bacteria, yeast, and promastigote forms of Leishmania amazonensis and Leishmania chagasi, and epimastigote forms of Trypanosoma cruzi. BleuTV was isolated with a Protein Pack 5PW® (Waters Corporation, USA), and several fractions were obtained. BleuLAAO was purified to high molecular homogeneity, and its N-terminal amino acid sequence shared a high degree of amino acid conservation with other LAAOs. BleuTV inhibited Staphylococcus aureus growth in a dose-dependent manner, with a minimum inhibitory concentration (MIC) of 25 ìg/mL, which corresponded to its minimum lethal concentration (MLC). BleuTV also inhibited the growth of promastigote forms of L. chagasi and L. amazonensis, with respective IC50 values of 1.94 ìg/mL and 5.49 ìg/mL. Furthermore, it repressed T. cruzi growth with an IC50 of 1.14 ìg/mL. However, BleuLAAO did not inhibit the growth of the microorganisms studied and was not toxic to macrophages. BleuTV had low toxicity against macrophages at the concentrations studied. In conclusion, whole venom from Bothrops leucurus inhibited the growth of some microorganisms, including S. aureus, Leishmania sp., and T. cruzi.


Subject(s)
Animals , L-Amino Acid Oxidase , Crotalid Venoms/antagonists & inhibitors , Crotalid Venoms/isolation & purification , Leishmania/microbiology , Staphylococcus aureus , Trypanosoma cruzi/microbiology
6.
J. venom. anim. toxins incl. trop. dis ; 15(1): 125-135, 2009. ilus, graf
Article in English | LILACS | ID: lil-508235

ABSTRACT

Thalassophryne nattereri (niquim) is a venomous fish responsible for numerous accidents involving fishermen in northern and northeastern Brazil. The aim of the present investigation was to evaluate the action of antivenom on renal effects caused by Thalassophryne nattereri venom. Isolated kidneys of Wistar rats were perfused with a previously dialyzed Krebs-Henseleit solution containing 6 g% bovine serum albumin. The antivenom action was studied through perfusion pressure (PP), renal vascular resistance (RVR), urinary flow (UF) and glomerular filtration rate (GFR). The niquim venom (1 miug/mL), the antivenom alone (1 miug/mL) or the venom incubated with antivenom were added to the system 30 minutes after the beginning of each perfusion. Previous works have shown venom induced-alterations of renal function parameters. In the isolated rat Kidney, T. nattereri venom (1 miug/mL) increased the perfusion pressure and renal vascular resistance at 60, 90 and 120 minutes. UF and GFR also increased at 60, 90 and 120 minutes when compared with the control group; however, no effects were observed on the percent of sodium (% TNa more control equal 81.1 more or less 0.86; % TNa more 60 equal 78.04 more or less 1.18; % TNa more 90 equal -5.16 more or less 3.34; %TNa more 120 equal 79.49 more or less 0.87) and potassium (%TKcontrol equal 72.29 more or less 1.12; %TK more 60 equal 75.41 more or less 0.65; % TK more 90 equal 71.23 more or less 2.55; % TK more 120 equal 76.62 more or less 1.04) tubular transporto. The administration of the antivenom (1 miug/mL) incubated with venom (1 miug/mL) reduced the changes in PP, RVR, UF and GFR provoked by Thalassophryne nattereri venom. The group perfused with venom alone showed a moderate deposit of a proteinaceous material in the tubules and urinary space.(...)


Subject(s)
Animals , Male , Rats , Antivenins , Kidney/anatomy & histology , Kidney/pathology , Fish Venoms/antagonists & inhibitors , Fish Venoms/toxicity
7.
Braz. j. biol ; 68(1): 149-154, Feb. 2008. ilus, tab
Article in English | LILACS | ID: lil-482196

ABSTRACT

Guanylin and uroguanylin are small cysteine-rich peptides involved in the regulation of fluid and electrolyte homeostasis through binding and activation of guanylyl cyclases signaling molecules expressed in intestine and kidney. Guanylin is less potent than uroguanylin as a natriuretic agent and is degraded in vitro by chymotrypsin due to unique structural features in the bioactive moiety of the peptide. Thus, the aim of this study was to verify whether or not guanylin is degraded by chymotrypsin-like proteases present in the kidney brush-border membranes. The isolated perfused rat kidney assay was used in this regard. Guanylin (0.2 µM) induced no changes in kidney function. However, when pretreated by the black-eyed pea trypsin and chymotrypsin inhibitor (BTCI - 1.0 µM; guanylin - 0.2 µM) it promoted increases in urine flow (deltaUF of 0.25 ± 0.09 mL.g-1/min, P < 0.05) and Na+ excretion ( percent delta ENa+ of 18.20 ± 2.17, P < 0.05). BTCI (1.0 µM) also increased percentENa+ (from 22.8 ± 1.30 to 34.4 ± 3.48, P < 0.05, 90 minutes). Furthermore, BTCI (3.0 µM) induced increases in glomerular filtration rate (GFR; from 0.96 ± 0.02 to 1.28 0.02 mL.g-1/min, P < 0.05, 60 minutes). The present paper strongly suggests that chymotrypsin-like proteases play a role in renal metabolism of guanylin and describes for the first time renal effects induced by a member of the Bowman-Birk family of protease inhibitors.


Guanilina e uroguanilina são peptídeos pequenos, ricos em cisteína, envolvidos na regulação da homeostase de fluidos e eletrólitos através da ligação e ativação da guanilato ciclase expressa no intestino e nos rins. A guanilina é menos potente do que a uroguanilina como agente natriurético e é degradada in vitro pela quimiotripsina devido a características estruturais únicas no domínio bioativo do peptídeo. Portanto o objetivo deste trabalho foi verificar se a guanilina é degradada por proteases tipo quimiotripsina, presentes na membrana da borda em escova dos rins. Para esta investigação, foi usado o modelo do rim isolado de rato perfundido. A Guanilina (0,2 µM) não induziu mudanças na função renal. Entretanto, quando pré-tratada com inibidor de tripsina e de quimiotripsina de black-eyed pea (BTCI - 1,0 µM; guanilina - 0,2 µM) promoveu um aumento no fluxo urinário (deltaUF de 0,25 ± 0,09 mL.g-1/min, P < 0,05) e na excreção de Na+ ( por centoDENa+ de 18,20 ± 2,17, P < 0,05). BTCI (1,0 µM) também aumenta por centoENa+ (de 22,8 ± 1,30 a 34,4 ± 3,48, P < 0,0590 minutos). Além disto, BTCI (3,0 µM) induziu um aumento da taxa de filtração glomerular (GFR; de 0,96 ± 0,02 para 1,28 ± 0,02 mL.g-1/min, P < 0,05, 60 minutos). O presente trabalho sugere fortemente que proteases semelhantes à quimiotripsina desempenham um papel no metabolismo renal de guanilinas e descreve, pela primeira vez, os efeitos renais induzidos por um membro da família de inibidores de proteases do tipo Bowman-Birk.


Subject(s)
Animals , Female , Male , Rats , Gastrointestinal Hormones/pharmacology , Kidney Glomerulus/drug effects , Kidney Tubules/drug effects , Natriuresis/drug effects , Natriuretic Peptides/pharmacology , Protease Inhibitors/pharmacology , Dose-Response Relationship, Drug , Kidney Glomerulus/physiology , Kidney Tubules/physiology , Natriuresis/physiology , Plant Proteins/pharmacology , Rats, Inbred WKY
8.
Braz. j. med. biol. res ; 37(10): 1525-1530, Oct. 2004. tab
Article in English | LILACS | ID: lil-383024

ABSTRACT

Because thalidomide and pentoxifylline inhibit the synthesis and release of tumor necrosis factor-alpha (TNF-alpha), we determined the effect of these drugs on the renal damage induced by supernatants of macrophages activated with Crotalus durissus cascavella venom in order to identify the role of TNF-alpha in the process. Rat peritoneal macrophages were collected with RPMI medium and stimulated in vitro with C.d. cascavella venom (10 µg/ml) in the absence and presence of thalidomide (15 µM) or pentoxifylline (500 µM) for 1 h and washed and kept in culture for 2 h. Supernatant (1 ml) was tested on an isolated perfused rat kidney (N = 6 for each group). The first 30 min of each experiment were used as control. The supernatant was added to the perfusion system. All experiments lasted 120 min. The toxic effect of the preparation of venom-stimulated macrophages on renal parameters was determined. At 120 min, thalidomide (Thalid) and pentoxifylline (Ptx) inhibited (P < 0.05) the increase in perfusion pressure caused by the venom (control = 114.0 ± 1.3; venom = 137.1 ± 1.5; Thalid = 121.0 ± 2.5; Ptx = 121.4 ± 4.0 mmHg), renal vascular resistance (control = 4.5 ± 0.2; venom = 7.3 ± 0.6; Thalid = 4.5 ± 0.9; Ptx = 4.8 ± 0.6 mmHg/ml g-1 min-1), urinary flow (control = 0.23 ± 0.001; venom = 0.44 ± 0.01; Thalid = 0.22 ± 0.007; Ptx = 0.21 ± 0.009 ml g-1 min-1), glomerular filtration rate (control = 0.72 ± 0.06; venom = 1.91 ± 0.11; Thalid = 0.75 ± 0.04; Ptx = 0.77 ± 0.05 ml g-1 min-1) and the decrease in percent tubular sodium transport (control = 77.0 ± 0.9; venom = 73.9 ± 0.66; Thalid = 76.6 ± 1.1; Ptx = 81.8 ± 2.0 percent), percent tubular chloride transport (control = 77.1 ± 1.2; venom = 71.4 ± 1.1; Thalid = 77.6 ± 1.7; Ptx = 76.8 ± 1.2 percent), and percent tubular potassium transport (control = 72.7 ± 1.1; venom = 63.0 ± 1.1; Thalid = 72.6 ± 1.0; Ptx = 74.8 ± 1.0 percent), 30 min before and during the stimulation of macrophages with C.d. cascavella venom. These data suggest the participation of TNF-alpha in the renal effects induced by supernatant of macrophages activated with C.d. cascavella venom.


Subject(s)
Animals , Male , Female , Rats , Crotalid Venoms , Immunosuppressive Agents , Pentoxifylline , Thalidomide , Tumor Necrosis Factor-alpha , Kidney , Macrophage Activation , Macrophages, Peritoneal , Rats, Wistar
9.
Braz. j. med. biol. res ; 34(10): 1347-1352, Oct. 2001. tab, graf
Article in English | LILACS | ID: lil-299838

ABSTRACT

Many studies have reported the occurrence of lethal acute renal failure after snakebites. The aim of the present investigation was to determine alterations in renal function produced by Crotalus durissus terrificus venom and crotoxin as well as the histological alterations induced by these venoms. Isolated kidneys from Wistar rats weighing 240 to 280 g were perfused with Krebs-Henseleit solution containing 6 g percent of previously dialyzed bovine serum albumin. The effects of Crotalus durissus terrificus venom and crotoxin were studied on glomerular filtration rate (GFR), urinary flow (UF), perfusion pressure (PP) and percentage sodium tubular transport ( percentTNa+). The infusion of Crotalus durissus terrificus venom (10 æg/ml) and crotoxin (10 æg/ml) increased GFR (control80 = 0.78 + or - 0.07, venom80 = 1.1 + or - 0.07, crotoxin80 = 2.0 + or - 0.05 ml g-1 min-1, P<0.05) and UF (control80 = 0.20 + or - 0.02, venom80 = 0.32 + or - 0.03, crotoxin80 = 0.70 + or - 0.05 ml g-1 min-1, P<0.05), and decreased percentTNa+ (control100 = 75.0 + or - 2.3, venom100 = 62.9 + or - 1.0, crotoxin80 = 69.0 + or - 1.0 ml g-1 min-1, P<0.05). The infusion of crude venom tended to reduce PP, although the effect was not significant, whereas with crotoxin PP remained stable during the 100 min of perfusion. The kidneys perfused with crude venom and crotoxin showed abundant protein material in the urinary space and tubules. We conclude that Crotalus durissus terrificus venom and crotoxin, its major component, cause acute nephrotoxicity in the isolated rat kidney. The current experiments demonstrate a direct effect of venom and crotoxin on the perfused isolated kidney


Subject(s)
Animals , Male , Rats , Crotalid Venoms , Crotalus , Kidney , Blood Pressure , Crotoxin , Glomerular Filtration Rate , Kidney , Kidney Tubules , Rats, Wistar , Sodium , Urodynamics
10.
Braz. j. med. biol. res ; 32(8): 985-8, Aug. 1999. tab
Article in English | LILACS | ID: lil-238967

ABSTRACT

Microcystin is a hepatotoxic peptide which inhibits protein phosphatase types 1 and 2A. The objective of the present study was to evaluate the physiopathologic effects of microcystin-LR in isolated perfused rat kidney. Adult Wistar rats (N = 5) of both sexes (240-280 g) were utilized. Microcystin-LR (1 µg/ml) was perfused over a period of 120 min, during which samples of urine and perfusate were collected at 10-min intervals to determine the levels of inulin, sodium, potassium and osmolality. We observed a significant increase in urinary flow with a peak effect at 90 min (control (C) = 0.20 + or- 0.01 and treated (T) = 0.32 + or - 0.01 ml g-1 min(-1), P<0.05). At 90 min there was a significant increase in perfusate pressure (C = 129.7 + or - 4.81 and T = 175.0 + or - 1.15 mmHg) and glomerular filtration rate (C = 0.66 + or - 0.07 and T = 1.10 + or - 0.04 ml g-1 min(-1) and there was a significant reduction in fractional sodium tubular transport at 120 min (C = 78.6 + or - 0.98 and T = 73.9 + or - 0.95 percent). Histopathologic analysis of the perfused kidneys showed protein material in the urinary space, suggestive of renal toxicity. These data demonstrate renal vascular, glomerular and urinary effects of microcystin-LR, indicating that microcystin acts directly on the kidney by probable inhibition of protein phosphatases


Subject(s)
Rats , Animals , Female , Bacterial Toxins/toxicity , Enzyme Inhibitors/toxicity , Kidney/drug effects , Peptides, Cyclic/toxicity , Bacterial Toxins/isolation & purification , Kidney Diseases/metabolism , Kidney/enzymology , Rats, Wistar , Time Factors
11.
Braz. j. med. biol. res ; 29(2): 267-71, Feb. 1996. graf
Article in English | LILACS | ID: lil-161680

ABSTRACT

Guanylin is an endogenous peptide synthesized by several mammalian species that mimics the effects of a thermostable enterotoxin of Escherichia coli (STa: NTFYCCELCCNPACAGCY) in the gut. We have cloned a lysine-1 derivative of rat guanylin (Lys-1-NTCEICAYAACTGC) and tested its effects on ileal tissue membranes in Ussing chambers and in the isolated perfused rat kidney. Rabbit ileal mucosa membranes were mounted into a Ussing chamber and the effects of Lys-1 guanylin (Lys-1 G) and STa enterotoxin peptide on chloride secretion were determined by changes in short-circuit current (Isc). Lys-1 G (10 to 100 nM) showed a dose-dependent effect on chloride secretion with a maximal response estimated to be 52 microA/cm2. Lys-1 G mimics the effect of STa peptide, but the enterotoxin elicited a greater maximal effect of 120 microA/cm2 (p<0.01). Lys-1 G (2.5 microg/ml) promoted an increase in both urine flow (from 0.13 +/- 0.07 to 0.40 +/- 0.01 ml g(-1) min(-1), N = 4; P<0.05) and glomerular filtration rate (from 0.68 +/- 0.02 to 0.85 0.00 ml g(-1) min(-1), N = 4; P<0.01) in the isolated perfused kidney and a reduction of the fractional reabsorption of sodium (from 76.0 +/- 0.03 to 59.5 +/- 0.85 percent, N = 4; P<0.01). These maximal effects were accompanied by intense natriuretic effect observed 30 and 60 min after drug administration. The Lys-1 G analog similar to STa enterotoxin elicited intestinal chloride secretion and a natriuretic effect. These data demonstrate that the cloned peptide analog retains the biological activity of the native hormone and presents activity similar to STa. The properties of Lys-1 G resemble those of a factor formed during perfusion of the hypoxic rabbit kidney and named by us factor natriureticus similis (FNS).


Subject(s)
Animals , Male , Female , Rats , Rabbits , Kidney/drug effects , Lysine/analogs & derivatives , Natriuresis/drug effects , Intestinal Secretions , Kidney/physiology , Sodium/metabolism
12.
Braz. j. med. biol. res ; 26(9): 983-7, Sept. 1993. graf
Article in English | LILACS | ID: lil-148772

ABSTRACT

Cholera toxin peptide stimulates adenylyl cyclase activity in several tissues and causes severe intestinal water and electrolyte secretion. To evaluate the regulatory function of sodium transport in renal tubules, we studied the effect of cholera toxin peptide on rat kidneys. Isolated kidneys from adult male hooded rats weighting 240-335 g were perfused with Krebs-Henseleit solution containing 60 mg/ml dialyzed bovine serum albumin (BSA). The effects of Vibrio cholerae peptide (CT; molecular weight, approximately 82,000 Dalton) on glomerular filtration rate (GFR), proximal sodium reabsorption ( per cent pTNa+) and urinary flow rate (UF) were studied. All experiments were preceded by a 30-min control period and in another group of kidneys the time course of the variables was followed without toxin infusion, for a paired control. Control kidneys perfused with Krebs-Henseleit solution plus 60 mg/ml BSA presented stable GFR (paired internal control GFR30 min = 0.596 +/- 0.248 ml g-1 min-1 vs GFR120 min = 0.694 +/- 0.362, N = 32; P > 0.05) and per cent pTNa+ ( per cent pTNa+ 30 min = 75 +/- 8.3 vs 84 +/- 1.6 for the internal control, N = 32; P > 0.05). CT caused a dose (0.03, 0.75 and 1.0 microgram/ml)-dependent decrease in GFR starting at 30 min and with a maximal peak of effect at 90 min after toxin infusion (GFRCT = 0.130 +/- 0.086 ml g-1 min-1, N = 12, vs paired internal control GFRControl/30 min = 0.660 +/- 0.132, N = 12; P < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)


Subject(s)
Animals , Male , Rats , Enterotoxins/pharmacology , Sodium/metabolism , Kidney Tubules, Proximal , Vibrio cholerae , Glomerular Filtration Rate , Time Factors , Biological Transport, Active
13.
Braz. j. med. biol. res ; 25(6): 633-6, 1992.
Article in English | LILACS | ID: lil-109077

ABSTRACT

In order to compare the function of sodium transport between the intestine and tubule, we studied the effect of thermostable E. coli enterotoxin on rat kidneys. Isolated kidneys from adult male hooded rats weighing 240-335 g were perfused with Krebs-Henseleit solution containing 60 mg/ml dialyzed bovine serum albumin. The effects of E. coli enterotoxin (STa; moleculasr weight approximately 2000; 18 amino acids with three disulfide bonds) were studied on glomerular filtration rater (GFR), net urinary flow rate (UF) and fractional sodium reabsorption (% TNa+). All experiments were preceded by a 30-min control period, and in some kidney the time course of the variables was followed without toxin infusion, for a paired control, STa(0.1 ug/ml) infused into the perfusate 30 min after the beginning of the experimental period promoted a significant decline in % TNa+ from 78.4 ñ 1.6 (control period) to 51.6 ñ 6.8 (P<0.001) 90 min after the administration of the toxin. This effect was followed by an increase in net urinary flow (UF) in toxin-treated kidneys (UF) in toxin-treated kidneys (UF sta=0.120 ñ 0.009 vs UF control = 0.056 ñ 0.011 ml g-1, P<0.008). The GFR of control and STa-treated kidneys did not change during the total time of perfusion and after toxin imnfusion. Our data demonstrate that STa promotes a specific decrease in tubular sodium transport in the rat kidney


Subject(s)
Rats , Body Temperature/drug effects , Enterotoxins , Escherichia coli , Glomerular Filtration Rate , Intestinal Absorption , Kidney , Natriuresis , Sodium
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