51 resultados para Ca2 -activated K Current

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8-Methoxy psoralen (8-MOP) exerts a short-term (24 h) mitogenic action, and a long-term (48-72 h) anti-proliferative and melanogenic action on two human melanoma cell lines, SK-Mel 28 and C32TG. An increase of intracellular calcium concentration was observed by spectrofluorometry immediately after the addition of 0.1 mM 8-MOP to both cell lines, previously incubated with calcium probe fluo-3 AM (5 µM). The intracellular Ca2+ chelator BAPTA/AM (1 µM) blocked both early (mitogenic) and late (anti-proliferative and melanogenic) 8-MOP effects on both cell lines, thus revealing the importance of the calcium signal in both short- and long-term 8-MOP-evoked responses. Long-term biological assays with 5 and 10 mM tetraethylammonium chloride (TEA, an inhibitor of Ca2+-dependent K+ channels) did not affect the responses to psoralen; however, in 24-h assays 10 mM TEA blocked the proliferative peak, indicating a modulation of Ca2+-dependent K+ channels by 8-MOP. No alteration of cAMP basal levels or forskolin-stimulated cAMP levels was promoted by 8-MOP in SK-Mel 28 cells, as determined by radioimmunoassay. However, in C32TG cells forskolin-stimulated cAMP levels were further increased in the presence of 8-MOP. In addition, assays with 1 µM protein kinase C and calcium/calmodulin-dependent kinase inhibitors, Ro 31-8220 and KN-93, respectively, excluded the participation of these kinases in the responses evoked by 8-MOP. Western blot with antibodies anti-phosphotyrosine indicated a 92% increase of the phosphorylated state of a 43-kDa band, suggesting that the phosphorylation of this protein is a component of the cascade that leads to the increase of tyrosinase activity.

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Outward current oscillations associated with transient membrane hyperpolarizations were induced in murine macrophage polykaryons by membrane depolarization in the absence of external Na+. Oscillations corresponded to a cyclic activation of Ca2+-dependent K+ currents (IKCa) probably correlated with variations in intracellular Ca2+ concentration. Addition of external Na+ (8 mM) immediately abolished the outward current oscillations, suggesting that the absence of the cation is necessary not only for their induction but also for their maintenance. Oscillations were completely blocked by nisoldipine. Ruthenium red and ryanodine reduced the number of outward current cycles in each episode, whereas quercetin prolonged the hyperpolarization 2- to 15-fold. Neither low molecular weight heparin nor the absence of a Na+ gradient across the membrane had any influence on oscillations. The evidence suggests that Ca2+ entry through a pathway sensitive to Ca2+ channel blockers is elicited by membrane depolarization in Na+-free medium and is essential to initiate oscillations, which are also dependent on the cyclic release of Ca2+ from intracellular Ca2+-sensitive stores; Ca2+ ATPase acts by reducing intracellular Ca2+, thus allowing slow deactivation of IKCa. Evidence is presented that neither a Na+/Ca2+ antiporter nor Ca2+ release from IP3-sensitive Ca2+ stores participate directly in the mechanism of oscillation

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We examined the effect of several K+ channel blockers such as glibenclamide, tolbutamide, charybdotoxin (ChTX), apamin, tetraethylammonium chloride (TEA), 4-aminopyridine (4-AP), and cesium on the ability of fentanyl, a clinically used selective µ-opioid receptor agonist, to promote peripheral antinociception. Antinociception was measured by the paw pressure test in male Wistar rats weighing 180-250 g (N = 5 animals per group). Carrageenan (250 µg/paw) decreased the threshold of responsiveness to noxious pressure (delta = 188.1 ± 5.3 g). This mechanical hyperalgesia was reduced by fentanyl (0.5, 1.5 and 3 µg/paw) in a peripherally mediated and dose-dependent fashion (17.3, 45.3 and 62.6%, respectively). The selective blockers of ATP-sensitive K+ channels glibenclamide (40, 80 and 160 µg/paw) and tolbutamide (80, 160 and 240 µg/paw) dose dependently antagonized the antinociception induced by fentanyl (1.5 µg/paw). In contrast, the effect of fentanyl was unaffected by the large conductance Ca2+-activated K+ channel blocker ChTX (2 µg/paw), the small conductance Ca2+-activated K+ channel blocker apamin (10 µg/paw), or the non-specific K+ channel blocker TEA (150 µg/paw), 4-AP (50 µg/paw), and cesium (250 µg/paw). These results extend previously reported data on the peripheral analgesic effect of morphine and fentanyl, suggesting for the first time that the peripheral µ-opioid receptor-mediated antinociceptive effect of fentanyl depends on activation of ATP-sensitive, but not other, K+ channels.

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We examined some of the mechanisms by which the aspirin metabolite and the naturally occurring metabolite gentisic acid induced relaxation of the guinea pig trachea in vitro. In preparations with or without epithelium and contracted by histamine, gentisic acid caused concentration-dependent and reproducible relaxation, with mean EC50 values of 18 µM and Emax of 100% (N = 10) or 20 µM and Emax of 92% (N = 10), respectively. The relaxation caused by gentisic acid was of slow onset in comparison to that caused by norepinephrine, theophylline or vasoactive intestinal peptide (VIP). The relative rank order of potency was: salbutamol 7.9 > VIP 7.0 > gentisic acid 4.7 > theophylline 3.7. Gentisic acid-induced relaxation was markedly reduced (24 ± 7.0, 43 ± 3.9 and 78 ± 5.6%) in preparations with elevated potassium concentration in the medium (20, 40 or 80 mM, respectively). Tetraethylammonium (100 µM), a nonselective blocker of the potassium channels, partially inhibited the relaxation response to gentisic acid, while 4-AP (10 µM), a blocker of the voltage potassium channel, inhibited gentisic acid-induced relaxation by 41 ± 12%. Glibenclamide (1 or 3 µM), at a concentration which markedly inhibited the relaxation induced by the opener of ATP-sensitive K+ channels, levcromakalim, had no effect on the relaxation induced by gentisic acid. Charybdotoxin (0.1 or 0.3 µM), a selective blocker of the large-conductance Ca2+-activated K+ channels, caused rightward shifts (6- and 7-fold) of the gentisic acid concentration-relaxation curve. L-N G-nitroarginine (100 µM), a NO synthase inhibitor, had no effect on the relaxant effect of gentisic acid, and caused a slight displacement to the right in the relaxant effect of the gentisic acid curve at 300 µM, while methylene blue (10 or 30 µM) or ODQ (1 µM), the inhibitors of soluble guanylate cyclase, all failed to affect gentisic acid-induced relaxation. D-P-Cl-Phe6,Leu17[VIP] (0.1 µM), a VIP receptor antagonist, significantly inhibited (37 ± 7%) relaxation induced by gentisic acid, whereas CGRP (8-37) (0.1 µM), a CGRP antagonist, only slightly enhanced the action of gentisic acid. Taken together, these results provide functional evidence for the direct activation of voltage and large-conductance Ca+2-activated K+ channels, or indirect modulation of potassium channels induced by VIP receptors and accounts for the predominant relaxation response caused by gentisic acid in the guinea pig trachea.

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In most of cells bradykinin (BK) induces intracellular calcium mobilization. In pancreatic beta cells intracellular calcium is a major signal for insulin secretion. In these cells, glucose metabolism yields intracellular ATP which blocks membrane potassium channels. The membrane depolarizes, voltage-dependent Ca2+ channels are activated and the intracellular calcium load allows insulin secretion. Repolarization occurs due to activation of the Ca2+-dependent K+ channel. The insulin secretion depends on the integrity of this oscillatory process (bursts). Therefore, we decided to determine whether BK (100 nM) induces bursts in the presence of a non-stimulatory glucose concentration (5.6 mM). During continuous membrane voltage recording, our results showed that bursts were obtained with 11 mM glucose, blocked with 5.6 mM glucose and recovered with 5.6 mM glucose plus 100 nM BK. Thus, the stimulatory process obtained in the presence of BK and of a non-stimulatory concentration of glucose in the present study suggests that BK may facilitate the action of glucose on beta cell secretion.

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Mammalian cells contain several proteolytic systems to carry out the degradative processes and complex regulatory mechanisms to prevent excessive protein breakdown. Among these systems, the Ca2+-activated proteolytic system involves the cysteine proteases denoted calpains, and their inhibitor, calpastatin. Despite the rapid progress in molecular research on calpains and calpastatin, the physiological role and regulatory mechanisms of these proteins remain obscure. Interest in the adrenergic effect on Ca2+-dependent proteolysis has been stimulated by the finding that the administration of β2-agonists induces muscle hypertrophy and prevents the loss of muscle mass in a variety of pathologic conditions in which calpains are activated. This review summarizes evidence indicating that the sympathetic nervous system produces anabolic, protein-sparing effects on skeletal muscle protein metabolism. Studies are reviewed, which indicate that epinephrine secreted by the adrenal medulla and norepinephrine released from adrenergic terminals have inhibitory effects on Ca2+-dependent protein degradation, mainly in oxidative muscles, by increasing calpastatin levels. Evidence is also presented that this antiproteolytic effect, which occurs under both basal conditions and in stress situations, seems to be mediated by β2- and β3-adrenoceptors and cAMP-dependent pathways. The understanding of the precise mechanisms by which catecholamines promote muscle anabolic effects may have therapeutic value for the treatment of muscle-wasting conditions and may enhance muscle growth in farm species for economic and nutritional purposes.

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Cardiovascular complications are a leading cause of mortality in patients with diabetes mellitus (DM). The present study was designed to investigate the effects of trimetazidine (TMZ), an anti-angina drug, on transient outward potassium current (Ito) remodeling in ventricular myocytes and the plasma contents of free fatty acid (FFA) and glucose in DM. Sprague-Dawley rats, 8 weeks old and weighing 200-250 g, were randomly divided into three groups of 20 animals each. The control group was injected with vehicle (1 mM citrate buffer), the DM group was injected with 65 mg/kg streptozotocin (STZ) for induction of type 1 DM, and the DM + TMZ group was injected with the same dose of STZ followed by a 4-week treatment with TMZ (60 mg·kg-1·day-1). All animals were then euthanized and their hearts excised and subjected to electrophysiological measurements or gene expression analyses. TMZ exposure significantly reversed the increased plasma FFA level in diabetic rats, but failed to change the plasma glucose level. The amplitude of Ito was significantly decreased in left ventricular myocytes from diabetic rats relative to control animals (6.25 ± 1.45 vs 20.72 ± 2.93 pA/pF at +40 mV). The DM-associated Ito reduction was attenuated by TMZ. Moreover, TMZ treatment reversed the increased expression of the channel-forming alpha subunit Kv1.4 and the decreased expression of Kv4.2 and Kv4.3 in diabetic rat hearts. These data demonstrate that TMZ can normalize, or partially normalize, the increased plasma FFA content, the reduced Ito of ventricular myocytes, and the altered expression Kv1.4, Kv4.2, and Kv4.3 in type 1 DM.

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The aim of the present study was to determine the mechanisms underlying the relaxant effect of adrenomedullin (AM) in rat cavernosal smooth muscle (CSM) and the expression of AM system components in this tissue. Functional assays using standard muscle bath procedures were performed in CSM isolated from male Wistar rats. Protein and mRNA levels of pre-pro-AM, calcitonin receptor-like receptor (CRLR), and Subtypes 1, 2 and 3 of the receptor activity-modifying protein (RAMP) family were assessed by Western immunoblotting and quantitative real-time polymerase chain reaction, respectively. Nitrate and 6-keto-prostaglandin F1α (6-keto-PGF1α; a stable product of prostacyclin) levels were determined using commercially available kits. Protein and mRNA of AM, CRLR, and RAMP 1, -2, and -3 were detected in rat CSM. Immunohistochemical assays demonstrated that AM and CRLR were expressed in rat CSM. AM relaxed CSM strips in a concentration-dependent manner. AM22-52, a selective antagonist for AM receptors, reduced the relaxation induced by AM. Conversely, CGRP8-37, a selective antagonist for calcitonin gene-related peptide receptors, did not affect AM-induced relaxation. Preincubation of CSM strips with NG-nitro-L-arginine-methyl-ester (L-NAME, nitric oxide synthase inhibitor), 1H-(1,2,4)oxadiazolo[4,3-a]quinoxalin-1-one (ODQ, quanylyl cyclase inhibitor), Rp-8-Br-PET-cGMPS (cGMP-dependent protein kinase inhibitor), SC560 [5-(4-chlorophenyl)-1-(4-methoxyphenyl)-3-trifluoromethyl pyrazole, selective cyclooxygenase-1 inhibitor], and 4-aminopyridine (voltage-dependent K+ channel blocker) reduced AM-induced relaxation. On the other hand, 7-nitroindazole (selective neuronal nitric oxide synthase inhibitor), wortmannin (phosphatidylinositol 3-kinase inhibitor), H89 (protein kinase A inhibitor), SQ22536 [9-(tetrahydro-2-furanyl)-9H-purin-6-amine, adenylate cyclase inhibitor], glibenclamide (selective blocker of ATP-sensitive K+ channels), and apamin (Ca2+-activated channel blocker) did not affect AM-induced relaxation. AM increased nitrate levels and 6-keto-PGF1α in rat CSM. The major new contribution of this research is that it demonstrated expression of AM and its receptor in rat CSM. Moreover, we provided evidence that AM-induced relaxation in this tissue is mediated by AM receptors by a mechanism that involves the nitric oxide-cGMP pathway, a vasodilator prostanoid, and the opening of voltage-dependent K+ channels.

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Este trabalho discute as características físico-químicas das águas dos rios Solimões, Purus e seus afluentes, coletadas em novembro de 2004 no Estado do Amazonas, entre as cidades de Manacapuru-Alvarães e Anamã-Pirarauara. Foram realizadas análises físico-químicas (temperatura, pH, condutividade elétrica, turbidez, Ca2+, Na+, K+, Mg2+, HCO3-, SO4(2-), Cl-), de elementos-traço (Li, B, Al, Sc, V, Cr, Mn, Fe, Co, Cu, Zn, As, Se, Rb, Sr, Mo, Cd, Sb, Cs, Ba, Pb, La, Ce e U) e isótopos de estrôncio. Os parâmetros analisados e a composição química mostram que as águas dos rios e igarapés da região central da Amazônia são quimicamente distintas entre si. As águas brancas do Solimões são cálcicas-bicarbonatadas e as do Purus bicarbonatadas, os respectivos afluentes são sódico-potássico-bicarbonatados e sódico-potássico-sulfatados. Isso acarreta águas brancas fracamente ácidas a neutras e mais condutivas, enquanto as pretas são menos mineralizadas, mais ácidas, especialmente as do Purus. O Ba, Sr, Cu, V e As mais elevados diferenciam as águas brancas do Solimões das do Purus, bem como os afluentes do primeiro em relação ao segundo. Esse conjunto de características indicam que tanto o Solimões, como o Purus e os respectivos afluentes, estão submetidos a condições geológicas/ambientais distintas. A influência do aporte de sedimentos dos Andes é diluída ao longo da bacia do Solimões e se reflete na formação das várzeas dos Solimões e Purus. Por outro lado as rochas crustais, representadas pelos escudos das Guianas e Brasileiro também contribuem, mas em menor proporção.

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The Amazon River basin is important in the contribution of dissolved material to oceans (4% worldwide). The aim of this work was to study the spatial and the temporal variability of dissolved inorganic materials in the main rivers of the Amazon basin. Data from 2003 to 2011 from six gauging stations of the ORE-HYBAM localized in Solimões, Purus, Madeira and Amazon rivers were used for this study. The concentrations of Ca2+, Na+, K+, Mg2+, Cl-, SO4 -2, HCO3 - and SiO2 were analyzed. At the stations of Solimões and Amazon rivers, the concentrations of Ca2+, Mg2+, HCO3 - and SO4 -2 had heterogeneous distribution over the years and did not show seasonality. At the stations of Madeira river, the concentration of these ions had seasonality inversely proportional to water discharge (dilution-concentration effect). Similar behavior was observed for the concentrations of Cl- and Na+ at the stations of the Solimões, Amazon and Madeira rivers, indicating almost constant release of Cl- and Na+ fluxes during the hydrological cycle. K+ and SiO2 showed almost constant concentrations throughout the years and all the stations, indicating that their flows depend on the river discharge variation. Therefore, the temporal variability of the dissolved inorganic material fluxes in the Solimões and Amazon rivers depends on the hydro-climatic factor and on the heterogeneity of the sources. In the Madeira and Purus rivers there is less influence of these factors, indicating that dissolved load fluxes are mainly associated to silicates weathering. As the Solimões basin contributes approximately 84% of the total flux of dissolved materials in the basin and is mainly under the influence of a hydro-climatic factor, we conclude that the temporal variability of this factor controls the temporal variability of the dissolved material fluxes of the Amazon basin.

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Carbono e nutrientes liberados na decomposição de resíduos orgânicos podem sofrer vários tipos de interação com diferentes componentes da fase mineral, alterando sua dinâmica no solo. Com o objetivo de avaliar a retenção de carbono, Ca2+, Mg2+ e K+ em caulinita natural e goethita sintética, foi realizado um experimento com mistura de palha de milho em substratos inorgânicos preparados com areia e quantidades conhecidas de cada componente. Nesses substratos, foram realizadas percolações com água destilada aos 7, 15, 33, 68 e 113 dias de incubação, em temperatura ambiente, sendo as massas dos elementos liberados acumuladas no tempo. Após duzentos dias de incubação, foi determinado o carbono orgânico total que permaneceu nos substratos. A soma das massas de Ca2+, Mg2+, K+ e carbono, liberados com a água de percolação, foi inversamente relacionada com a massa dos componentes inorgânicos nos substratos, exceto para o K+ nos substratos com goethita. A caulinita e a goethita apresentaram diferente retenção do Ca2+, Mg2+ e K+ liberados, independentemente da área superficial, o que pode estar relacionado com suas distintas características eletroquímicas superficiais. A goethita foi mais efetiva do que a caulinita em reter carbono da solução do solo e acumular carbono orgânico total, sendo sua maior reatividade diretamente relacionada com sua superfície específica.

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Os diferentes sistemas de preparo provocam alterações nas propriedades químicas, físicas e biológicas do solo, podendo requerer modificações no manejo e nas recomendações de adubação e calagem. Este trabalho avaliou os efeitos dos sistemas de preparo sobre as propriedades químicas e físicas do solo, em um experimento instalado em 1985. A área experimental vem sendo cultivada com culturas anuais em seis sistemas de preparo: semeadura direta (SD), arado de discos (AD), arado de aivecas (AA), grade pesada (GP), grade pesada + arado de discos (GP + AD) e grade pesada + arado de aivecas (GP + AA). O delineamento utilizado foi de blocos completos casualizados, com quatro repetições. As amostragens foram realizadas após a cultura do milho (safra 2001/02), nas profundidades de 0-5, 5-10 e 10-20 cm. As amostras de solo foram submetidas às análises químicas e físicas e as médias comparadas pelo teste de Tukey. Os sistemas de preparo influíram nas propriedades químicas e físicas do solo, com a maior parte das diferenças ocorrendo entre a SD e os demais sistemas. A densidade do solo foi superior na SD, em relação à dos demais tratamentos. Houve incremento nos valores de MO, pH, CTC efetiva, Ca2+, Mg2+, K e P, na camada superficial da SD, em relação às demais profundidades. A semeadura direta apresentou valores de Al3+ inferiores aos dos demais tratamentos, na camada de 0-5 cm de profundidade, e superiores aos dos tratamentos AD, GP e GP + AA, na camada de 10-20 cm. Os tratamentos AD, GP, GP + AD e GP + AA apresentaram valores de K superiores aos dos tratamentos SD e AA, na camada de 0-5 cm de profundidade. O tratamento SD apresentou teores de P disponível superiores aos dos demais tratamentos, na camada de 0-5 cm de profundidade e na média das três profundidades.

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O presente estudo teve por objetivo caracterizar, física, química e micromorfologicamente, solos desenvolvidos de sedimentos pertencentes ao Grupo Barreiras, no sul da Bahia, bem como solo formado a partir de rocha do embasamento cristalino, sendo este tomado como diferencial entre os demais. Para isso, foram selecionadas e analisadas amostras de horizontes de solos de duas toposseqüências representativas dos solos dos tabuleiros costeiros: (1) Latossolo Vermelho eutrófico argissólico, Argissolo Amarelo distrófico latossólico e Espodossolo Ferrocárbico órtico dúrico; (2) Argissolo Amarelo distrófico abrúptico, Argissolo Amarelo distrófico típico e Espodossolo Cárbico órtico dúrico. A caracterização física constou da determinação da textura, argila dispersa em água, grau de floculação e densidade do solo. As análises químicas consistiram da determinação do pH em H2O e em KCl, Ca2+, Mg2+, K+, Na+, Al3+, H + Al, P, C-orgânico e ataque sulfúrico. Os solos das duas toposseqüências apresentaram diferenciação quanto às características morfológicas e físicas (textura), principalmente no que se refere à manifestação do caráter coeso. Os Argissolos inseridos no platô mais amplo e menos dissecado apresentaram maior gradiente textural e estado de coesão mais pronunciado. Os valores de densidade do solo, tanto para os horizontes coesos quanto para o fragipã e duripã, foram elevados, guardando uma relação inversa com o teor em matéria orgânica. As principais características micromorfológicas observadas nos horizontes coesos dos Argissolos Amarelos estudados foram: pequena quantidade de poros, atividade biológica e presença de argilãs de iluviação, confirmando a presença de B textural.

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O conhecimento de atributos químicos e físicos de solos nos mares de morros pode fornecer importantes subsídios ao planejamento sustentável dos seus recursos naturais. Nesse sentido, realizou-se a caracterização química e física de um Cambissolo Háplico Tb distrófico sob diferentes usos, no município de Visconde do Rio Branco, na Zona da Mata mineira. Foram avaliadas áreas com seringueira, laranja, cana, pastagem e mata. Seringueira, laranja e pastagem estão instaladas há 15 anos, e a cana, há 1,5 ano, sendo antes pastagem. Todos os usos agrícolas tiveram histórico com cana por aproximadamente 100 anos. A amostragem foi realizada em trincheiras, com três repetições, nas profundidades de 0 a 20 e 20 a 40 cm. Foram analisados as seguintes propriedades químicas: matéria orgânica do solo (MOS), pH em H2O, P, Ca2+, Mg2+, K+, Al3+, H + Al, SB, CTC efetiva (t), CTC a pH 7,0 (T), V, m e P-rem. As propriedades físicas analisadas foram: granulometria, densidade de partículas, densidade do solo, porosidade total, curva de retenção de água, resistência do solo à penetração e estabilidade de agregados em água, bem como as relações capacidade de água disponível/porosidade total (CAD/PT) e água retida na capacidade de campo/porosidade total (CC/PT). Os resultados demonstraram que o solo, em todos os usos, apresenta baixa fertilidade e caráter distrófico, com Al3+ dominando o complexo de troca, com exceção do solo sob cana, que apresenta fertilidade média e teores negligenciáveis de Al3+ trocável no complexo de troca. O uso agrícola do solo reduziu a MOS. As características físicas nos usos com seringueira e cana assemelharam-se às da mata, ao passo que laranja e pastagem mostraram degradação física, evidenciada pelos maiores valores de densidade e resistência do solo à penetração, e redução do espaço poroso e da estabilidade de agregados em água.

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Solos desenvolvidos em ambiente de clima semi-árido podem apresentar, naturalmente, acúmulo de sais que comprometem seu uso agrícola, o que pode ser incrementado pelo manejo inadequado da irrigação. Dependendo do uso, a degradação destes solos pode ocorrer com maior ou menor intensidade. Este trabalho teve como objetivo avaliar usos do solo utilizando atributos químicos em um perímetro irrigado na região semiárida do Nordeste do Brasil. Os usos do solo foram separados em áreas com culturas de ciclo curto (C), com fruticultura (F), com pastagem (P), áreas descartadas (D) e áreas com vegetação nativa (V). Coletaram-se amostras de solo deformadas nas camadas de 0-10, 10-30 e 30-60 cm, e indeformadas nas duas primeiras camadas para as determinações químicas e de densidade do solo, respectivamente. Os indicadores pH e condutividade elétrica do extrato de saturação, pH do solo, P disponível, C orgânico total, Ca2+, Mg2+, K+ e Na+, CTC, soma de bases (SB), percentagem de saturação por bases (V %), percentagem de Na trocável e estoque de C foram submetidos à análise multivariada, pela técnica de análise de componentes principais, e agrupamento pelo método Tocher. Os usos relacionados a sistemas produtivos apresentaram-se diferentes quanto à qualidade química do solo em relação aos atributos analisados do uso V; entre os usos relacionados a sistemas produtivos, C e D apresentaram qualidade química mais semelhante, o mesmo ocorrendo para os usos C e P. Em relação ao uso V, os usos C, D, P e F apresentaram, nas três camadas analisadas, maiores valores dos atributos pHs, pH do extrato de saturação, condutividade elétrica do extrato de saturação, Ca e Mg trocáveis, SB, V % e P disponível. Os usos F e P apresentaram o menor teor de C orgânico total. Os usos C, D e P apresentaram maiores valores de condutividade elétrica do extrato saturado em comparação com os usos F e V, indicando o início de um processo de salinização do solo, tornando suas utilizações agrícolas menos sustentáveis.