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P Smits

Publications and source records attributed to P Smits.

At least 55 records · Page 3Linked to original sources

Recombinant human extracellular matrix protein 1 inhibits alkaline phosphatase activity and mineralization of mouse embryonic metatarsals in vitro.

Two mRNAs are transcribed from the extracellular matrix protein 1 gene (Ecm1): Ecm1a and an alternatively spliced Ecm1b. We studied Ecm1 mRNA expression and localization during endochondral bone formation and investigated the effect of recombinant human (rh) Ecm1a protein on organ cultures of embryonic mouse metatarsals. Of the two transcripts, Ecm1a mRNA was predominantly expressed in fetal metacarpals from day 16 to 19 after gestation. Ecm1 expression was not found in 16- and 17-day-old metatarsals of which the perichondrium was removed. In situ hybridization and immunohistochemistry demonstrated Ecm1 expression in the connective tissues surrounding the developing bones, but not in the cartilage. Biological effects of rhEcm1a protein on fetal metatarsal cultures were biphasic: at low concentrations, Ecm1a stimulated alkaline phosphatase activity and had no effect on mineralization, whereas at higher concentrations, Ecm1a dose dependently inhibited alkaline phosphatase activity and mineralization. These results suggest that Ecm1a acts as a novel negative regulator of endochondral bone formation.

Alkaline Phosphatase↗

In vivo evidence for K(Ca) channel opening properties of acetazolamide in the human vasculature.

1. The selective carbonic anhydrase inhibitor acetazolamide is known to increase blood flow in several organs. Acetazolamide directly dilates isolated resistance arteries associated with activation of calcium-activated potassium (K(Ca)) channels. We examined both the presence and mechanism of the direct vascular action of acetazolamide in vivo in humans. 2. Forearm vasodilator responses of 30 healthy volunteers to infusion of placebo and increasing doses of acetazolamide (1-3-10 mg min(-1) dl(-1)) into the brachial artery were recorded by venous occlusion plethysmography, before and after local administration of L-NMMA (0.2 mg min(-1) dl(-1), an inhibitor of NO-synthase, n=6), indomethacin (5.0 microg min(-1) dl(-1), an inhibitor of prostaglandin synthesis, n=6), glibenclamide (10 microg min(-1) dl(-1), an inhibitor of K(ATP) channels, n=6), tetraethylammonium (0.1 mg min(-1) dl(-1), an inhibitor of K(Ca) channels, n=6) or placebo (NaCl 0.9%, n=6). Lower dosages of acetazolamide did not affect vascular tone (n=6). 3. Acetazolamide infusions increased forearm blood flow from 2.41+/-0.17 to 2.99+/-0.18, 4.09+/-0.26 and 6.77+/-0.49 ml min(-1) dl(-1) in the infused forearm (P:<0.001), with no significant changes in the non-infused forearm, blood pressure or heart rate. Acetazolamide-induced vasodilation was not inhibited by L-NMMA, indomethacin, or glibenclamide but was significantly attenuated by TEA (vasodilation: 23+/-6, 82+/-19, 241+/-38% versus 27+/-8, 44+/-22, 42+/-35%). 4. We conclude that acetazolamide exerts a direct vasodilator effect in vivo in humans mediated by vascular K(Ca) channel activation. This makes acetazolamide the first drug known that specifically modulates this channel.

Acetazolamide↗

Extracellular matrix protein 1 (ECM1) has angiogenic properties and is expressed by breast tumor cells.

Tumor growth and metastasis are critically dependent on the formation of new blood vessels. The present study found that extracellular matrix protein 1 (ECM1), a newly described secretory glycoprotein, promotes angiogenesis. This was initially suggested by in situ hybridization studies of mouse embryos indicating that the ECM1 message was associated with blood vessels and its expression pattern was similar to that of flk-1, a recognized marker for endothelium. More direct evidence for the role of ECM1 in angiogenesis was provided by the fact that highly purified recombinant ECM1 stimulated the proliferation of cultured endothelial cells and promoted blood vessel formation in the chorioallantoic membrane of chicken embryos. Immunohistochemical staining with specific antibodies indicated that ECM1 was expressed by the human breast cancer cell lines MDA-435 and LCC15, both of which are highly tumorigenic. In addition, staining of tissue sections from patients with breast cancer revealed that ECM1 was present in a significant proportion of primary and secondary tumors. Collectively, the results of this study suggest that ECM1 possesses angiogenic properties that may promote tumor progression.

Angiogenesis Inducing Agents↗

Vascular effects of metabolic inhibition by 2-deoxy-D-glucose in humans.

2-Deoxy-D-glucose (2DG) is a structural analogue of glucose that inhibits the glycolytic pathway. In vitro 2DG induced vasodilation, which was inhibited by glibenclamide (blocker of ATP-dependent potassium channels). The vasodilation induced by 2DG may be an interesting model for metabolic vasodilation. In this study, we investigated whether 2DG induces vasodilation in the human skeletal muscle vascular bed and whether this vasodilation was inhibited by glibenclamide. We measured forearm blood flow (FBF, venous occlusion plethysmography) in response to intra-arterial 2DG (0.4 and 0.8 mg/min x dl of forearm volume, each dose for 30 min), either alone or with co-infusion of insulin to increase the cellular 2DG uptake, and compared the results with insulin infusion alone. Glibenclamide infusion (1.0 microg/min x dl) was added in a subgroup. 2DG alone did not change FBF ratio (experimental/control arm, 11 +/- 9%, p = 0.34), but 2DG with insulin significantly increased FBF ratio (32 +/- 17%, p = 0.04). The increase in FBF by 2DG and insulin was significantly more pronounced than the vasodilation induced by insulin alone (p = 0.03). Co-infusion of glibenclamide had no effect on the vasodilation induced by 2DG and insulin (percentage increase in FBF ratio 11 +/- 18% without and 17 +/- 12% with glibenclamide, p = 0.85). In conclusion, 2DG induces manifest vasodilation in humans when infused in combination with insulin. This vasodilation is not mediated by ATP-dependent potassium channels.

Adolescent↗

C-type natriuretic peptide-induced vasodilation is dependent on hyperpolarization in human forearm resistance vessels.

Animal studies have demonstrated that CNP causes endothelium-independent vasodilation, which is limited by neutral endopeptidase (NEP) activity. However, the vasodilating mechanism of CNP in humans is still unknown. Therefore, we investigated the vasodilator actions of CNP in human forearm resistance vessels before and after inhibition of nitric oxide (NO) and then prostacyclin production and after inhibition of Ca(2+)-dependent potassium channel activation and NEP activity. Three separate studies were performed. In each study, forearm blood flow was recorded by venous occlusion plethysmography in 8 healthy nonsmoking subjects. Brachial artery infusion of CNP (70, 140, 280, and 560 ng per 100 mL forearm volume per minute) caused significant forearm vasodilation in all studies (forearm blood flow from 3.94 to 8.50 mL per 100 mL forearm volume per minute). Inhibition of the endogenous generation of NO by L-N(G)-monomethyl arginine (by use of the NO-clamp technique) did not block the maximal vasodilating effects of CNP (forearm blood flow from 3.69 to 6.93). In addition, when the cyclooxygenase system was inhibited by 600 mg of acetylsalicylic acid (aspirin) administered orally 30 minutes before start of measurements, the rise in forearm blood flow remained intact (forearm blood flow from 3.31 to 8.27 mL per 100 mL forearm volume per minute). However, inhibition of Ca(2+)-dependent potassium channels with tetraethylammonium chloride (0.1 mg per 100 mL forearm volume per minute) significantly attenuated vasodilation caused by CNP (forearm blood flow from 2.28 to 3.06 mL per 100 mL forearm volume per minute), which suggests that CNP opens vascular potassium channels. Vasodilation to all doses of CNP was significantly increased when activity of NEP was blocked with thiorphan (30 nmol/min), which suggests that NEP activity limits vasodilation of CNP. CNP is a dilator of human resistance vessels that mediates its effects through hyperpolarization of the vessel wall independent of the NO and prostaglandin system. Inhibition of local NEP activity increases CNP bioavailability. This may be of relevance to cardiovascular disease, given that vascular tone is well balanced between NO and an endothelium-derived hyperpolarizing factor, which suggests that in pathological situations, impaired NO activity can be compensated for by enhanced endothelium-derived hyperpolarizing factor release to maintain vascular homeostasis.

Adolescent↗

Reproducibility of skin microcirculatory measurements in humans, with special emphasis on capillaroscopy.

The reproducibility of capillaroscopic measurements of capillary blood cell velocity (CBV) in human nailfolds was investigated by use of the computerized system CapiFlow. Therefore, CBV measurements of two capillaries of each of three fingers together with laser Doppler fluxmetry (LDF) and skin temperature measurements were performed three times in five healthy volunteers. Short-term (1.5 h) intra-individual coefficient of variation (CV) of CBV was 18.4%. Long-term (7 days) CV amounted to 55.8%. Inter-individual CV was 55.9%. Short- and long-term intra-individual CVs of LDF were 25.4% and 37.3%. Inter-individual variation was 36.0%. Skin temperature showed short- and long-term CVs of 3.7% and 5.5% and inter-individual CV of 5.8%. In conclusion, measurement of CBV using CapiFlow is a suitable method to assess acute effects, but has limited value in investigating long-term effects. Because of the wide interindividual variability in both CBV and LDF, power calculations will reveal large numbers to investigate. Skin temperature has a relatively small intra- and inter-individual variation and is more suitable for long-term studies.

Adult↗

Short-term glucosamine infusion does not affect insulin sensitivity in humans.

Overactivity of the hexosamine biosynthetic pathway may underlie hyperglycemia-associated insulin resistance, but to date human studies are lacking. Hexosamine pathway activation can be mimicked by glucosamine (GlcN). In the present placebo-controlled study we determined whether GlcN infusion affects insulin resistance in vivo. In 18 healthy subjects, we applied the double forearm balance technique (infused arm vs. control arm) combined with the euglycemic hyperinsulinemic clamp (60 mU/m(2).min insulin) for at least 300 min. During the clamp, subjects received infusions in the brachial artery of 4 micromol/dL.min GlcN from 90-240 min (n = 6) or from 0-300 min (n = 6) or saline (placebo; n = 6). We studied the effects of GlcN on forearm glucose uptake (FGU; infused arm vs. control arm, and vs. placebo experiments) and on whole body glucose uptake. GlcN infusion raised the plasma GlcN concentration in the infusion arms to 0.42 +/- 0.14 and 0.81 +/- 0.46 mmol/L; plasma GlcN remained very low (< 0.07 mmol/L) in the control arms and in the placebo group. GlcN infusion did not change forearm blood flow. During insulin, FGU increased more than 10-fold. At all time points, FGU was similar in the GlcN-infused arm compared with the control arm and was not different from FGU in the placebo experiments. Similar results were obtained for forearm arteriovenous glucose differences or extraction and for whole body glucose uptake. Thus, despite relevant GlcN concentrations for 5 h in the infused forearm, GlcN had no effect on insulin-induced glucose uptake. These results do not support involvement of the hexosamine pathway in the regulation of insulin sensitivity in humans, at least not in the short-term setting.

Adult↗

[Lavage almost never indicated after an autointoxication].

In many Dutch hospitals gastric lavage leaving charcoal and a laxative is the treatment of choice after autointoxication. Gastric lavage is not without risks. No difference has been demonstrated in efficacy and safety of gastric lavage combined with administration of activated charcoal on the one hand and just administration of activated charcoal on the other. In theory, gastric lavage might be useful in patients presenting shortly after the selfpoisoning (up to 2 hours) and in the case of delayed gastric emptying up to 4 hours. Gastric lavage is indicated without doubt in patients presenting shortly after ingestion of toxic substances which are poorly adsorbed by charcoal (for instance lithium). In case of a mild intoxication (for example with benzodiazepines), the risks of drug toxicity do not outweigh those of lavage, regardless of the time elapsed after ingestion. If gastric lavage is applied, it should be performed properly, i.e. with warm water (38 degrees C), with a 36-40 Fr. tube, using aliquots of 200-300 ml. In a minority of the intoxications whole bowel lavage should be employed.

Charcoal↗

Hydroquinine pharmacokinetics after oral administration in adult patients with muscle cramps.

OBJECTIVE: This study was conducted to determine the pharmacokinetic properties of hydroquinine after oral administration in adult patients with muscle cramps. The main reason for this study was the poor availability of pharmacokinetic data, hindering the design of studies to explore the possible relationship between hydroquinine concentrations and effects. METHODS: Sixteen adult patients with a clinical history of muscle cramps were given once-daily oral doses of 300 mg hydroquinine hydrobromide for 4 days. Serum and saliva samples were taken following a predefined schedule until 24 h after the last dose. Urine was collected during the study period. Hydroquinine concentrations were measured, and calculations were made of pharmacokinetic parameters using non-linear curve fitting. RESULTS: Pharmacokinetics of hydroquinine could be best described using a one-compartment open model. After oral administration, hydroquinine was rapidly absorbed (mean +/- SD: maximum concentration 2.43+/-0.68 mg/ 1; time to maximum concentration 1.4+/-1.2 h; lag time 0.54+/-0.50 h). With an elimination half-life of 10.9+/-6.1 h, steady-state was reached in several days. The distribution volume was 1.24+/-0.29 l/kg, total clearance was 6.7+/-3.2 l/h. The measured unbound hydroquinine fraction was 8.6+/-3.0%. No correlation was found between saliva and serum concentrations. Cumulative urinary excretion of unchanged hydroquinine 24 h after the first dose was 35.5+/-9.2 mg. CONCLUSION: Pharmacokinetic properties of hydroquinine are roughly similar to those of quinine. The unchanged fraction of hydroquinine excreted in urine is higher than that reported for quinine. Saliva hydroquinine concentrations could not be related to serum values. Steady-state trough or other fixed-time serum concentrations may prove useful for further optimisation of hydroquinine dosage.

Administration, Oral↗

Verapamil causes decreased diaphragm endurance but no decrease of nocturnal O(2) saturation in patients with chronic obstructive pulmonary disease.

OBJECTIVE: In animal studies, it has been shown that verapamil reduces strength and endurance of the diaphragm and inhibits the beneficial effects of theophylline. We examined whether the use of verapamil in patients with severe chronic obstructive pulmonary disease (COPD) who use theophylline leads to a deterioration of diaphragmatic function resulting in a decrease of nocturnal O(2) saturation. METHODS: A double-blind, placebo-controlled crossover study was designed in eight stabile severe COPD patients [forced expiratory volume in 1 s (FEV(1)) 0.9 +/- 0.1 l] taking theophylline. The doses of theophylline ranged from 600 mg daily to 1200 mg daily (7.0 mg/kg daily to 16.9 mg/kg daily). Nocturnal recordings, maximal respiratory muscle strength and endurance tests, lung function, blood pressure, electrocardiogram and arterial blood gas analysis were performed after 6 days of verapamil and after placebo. RESULTS: A significant decrease of the endurance time from 7.7 min to 6.4 min was found in the threshold loading test. However, the mean nocturnal saturation values did not change significantly: 89.8% and 89.6%, respectively. Results of pulmonary function tests, arterial blood gas analysis and routine blood samples also did not change. CONCLUSION: The decrease of the respiratory muscle endurance after the use of verapamil is in line with experiments in animal diaphragms. However, the nocturnal saturation did not change. This finding suggests that the effect found on diaphragm endurance is of no clinical significance and that verapamil can be given to COPD patients without risk of worsening nocturnal saturation. However, this must be confirmed by future larger scale studies.

Aged↗

Sulphonylurea drugs reduce hypoxic damage in the isolated perfused rat kidney.

Sulphonylurea drugs have been shown to protect against hypoxic damage in isolated proximal tubules of the kidney. In the present study we investigated whether these drugs can protect against hypoxic damage in a whole kidney preparation. Tolbutamide (200 microM) and glibenclamide (10 microM) were applied to the isolated perfused rat kidney prior to changing the gassing from oxygen to nitrogen for 30 min. Hypoxic perfusions resulted in an increased fractional excretion of glucose (FE % glucose 14.3+/-1.5 for hypoxic perfusions vs 4.9+/-1.6 for normoxic perfusions, mean +/- s.e. mean, P<0.05), which could be completely restored by 200 microM tolbutamide (5.7+/-0.4 for tolbutamide vs 14.3+/-1.5 for untreated hypoxic kidneys, P<0.01). Furthermore, tolbutamide reduced the total amount of LDH excreted in the urine (220+/-100 mU for tolbutamide vs. 1220+/-160 mU for untreated hypoxic kidneys, P<0.01). Comparable results were obtained with glibenclamide (10 microM). In agreement with the effect on functional parameters, ultrastructural analysis of proximal tubules showed increased brush border preservation in tolbutamide treated kidneys compared to untreated hypoxic kidneys. We conclude that glibenclamide and tolbutamide are both able to reduce hypoxic damage to proximal tubules in the isolated perfused rat kidney when applied in the appropriate concentrations.

ATP-Binding Cassette Transporters↗

Probenecid interferes with renal oxidative metabolism: a potential pitfall in its use as an inhibitor of drug transport.

The anionic drug probenecid has been traditionally used as an inhibitor of renal organic anion transport. More recently the drug was found to inhibit organic cation transport as well, and it is used to retain intracellularly loaded fluorophores. In these investigations it is implicitly assumed that probenecid performs its activity through competition for transport. Here we studied the possibility that probenecid provokes its effect through inhibition of cellular oxidative metabolism. Oxygen consumption was measured in isolated rat kidney cortex mitochondria. At concentrations of 1 mM or higher, probenecid increased the resting state (state 4) and decreased the ADP-stimulated respiration (state 3). A complete loss in respiratory control was observed at 10 mM probenecid. After incubating isolated rat kidney proximal tubular cells (PTC) for 30 min with probenecid a concentration-dependent reduction in ATP content was observed, which was significant at concentrations of 1 mM and higher. Using digital image fluorescence microscopy the membrane potential in PTC was measured with bisoxonol. The mitochondrial effects of probenecid were paralleled by a depolarization of the plasma membrane, immediately after drug addition. All events are likely to be a result of membrane disordering due to the lipophilic character of probenecid, and may explain, at least in part, the various inhibitory effects found for the drug. We recommend to be cautious with applying probenecid in cellular research.

Adenosine Triphosphate↗

Assessment of human muscle glycogen synthesis and total glucose content by in vivo 13C MRS.

BACKGROUND: Obesity is often accompanied by a decreased ability of insulin to stimulate glucose uptake and glycogenesis in skeletal muscle. The aim of this study was to investigate the rate of glycogen formation and of muscular glucose content in relation to insulin sensitivity under euglycemic conditions. MATERIALS AND METHODS: We applied a hyperinsulinemic (430 pmol m-2 min-1) euglycemic clamp with infusion of 20% glucose (30% enriched with 13C-1-glucose) to 8 subjects with a wide range of insulin sensitivities. Glycogen and glucose levels were monitored simultaneously by in vivo 13C MRS of the calf muscle on a clinical MR system at 1.5T field strength. RESULTS AND CONCLUSIONS: Glycogen synthesis rate showed a strong correlation with whole body glucose uptake during the clamp (r = 0.93, P < 0.01). With the use of 13C MRS, total muscular glucose content could be determined in vivo, and showed a positive, linear correlation with glycogen synthesis rate (r = 0.85, P < 0.01). 13C MRS provides important information regarding in vivo insulin action. Preliminary results indicate that the glycogen synthesis rate improves after treatment with troglitazone.

Adult↗

Differentiation-dependent alternative splicing and expression of the extracellular matrix protein 1 gene in human keratinocytes.

The human extracellular matrix protein 1 (Ecm1) gene is located at chromosome band 1q21 close to the epidermal differentiation complex and is transcribed in two discrete mRNAs: a full length Ecm1a and a shorter, alternatively spliced, Ecm1b transcript, the expression of which is restricted to tonsils and skin. The chromosomal localization and the Ecm1b expression in skin prompted us to investigate the role of Ecm1 in keratinocyte differentiation. In this study, we provide evidence for the existence of a relationship between keratinocyte differentiation and expression of the Ecm1b transcript. Cultures of subconfluent undifferentiated normal human keratinocytes express only Ecm1a. Upon reaching confluence, the cells start to differentiate, as measured by keratin K10 mRNA expression. Concomitantly Ecm1b mRNA expression is induced, although expression of Ecm1a mRNA remains unchanged. In addition, treatment of undifferentiated normal human keratinocyte cells with 12-O-tetradecanoyl-phorbol-13-acetate strongly induces the expression of Ecm1b mRNA. Expression of Ecm1b can also be induced by coculturing normal human keratinocytes with lethally irradiated feeder cells and by a diffusible factor secreted by stromal cells. In adult human skin, Ecm1a mRNA is expressed throughout the epidermis with the strongest expression in the basal and first suprabasal cell layers, whereas expression of Ecm1b mRNA is predominantly found in spinous and granular cell layers. Immunohistochemically, Ecm1a expression is almost completely restricted to the basal cell layer, whereas Ecm1b is detected in the suprabasal layers. These results are strongly suggestive of a role for Ecm1b in terminal keratinocyte differentiation, which is also supported by the localization of the Ecm1 gene at 1q21. Refinement of its genomic localization, however, placed Ecm1 centromeric of the epidermal differentiation complex.

Adult↗

Value of different assays for detection of human cytomegalovirus (HCMV) in predicting the development of HCMV disease in human immunodeficiency virus-infected patients.

In the present prospective study, five blood tests for detection of human cytomegalovirus (HCMV), nucleic acid sequence-based amplification (NASBA) for detection of early (immediate-early antigen) and late (pp67) mRNA, PCR for detection of HCMV DNA (DNA PCR), culture, and pp65 antigenemia assay, and culture and DNA PCR of urine and throat swab specimens were compared for their abilities to predict the development of disease caused by HCMV (HCMV disease). Of 101 human immunodeficiency virus (HIV)-infected patients with </=100 CD4(+) lymphocytes per mm(3), 25 patients developed HCMV disease. The pp65 antigenemia assay (sensitivity, 50%; specificity, 89%) and DNA PCR of blood (sensitivity, 69%; specificity, 75%) were most accurate in predicting the development of HCMV disease within the next 12 months. Both blood culture and late pp67 mRNA NASBA had high specificities (91 and 90%, respectively) but low sensitivities (25 and 13%, respectively). The sensitivities of urine culture, DNA PCR, throat swab specimen culture, DNA PCR, and NASBA of blood for detection of the immediate-early antigen were 73, 87, 53, 67, and 63%, respectively, and the specificities were 58, 46, 76, 60, and 72%, respectively. The positive predictive values of all tests however, were low and did not exceed 50%. In conclusion, virological screening by these qualitative assays for detection of HCMV is of limited value for prediction of the development of HCMV disease in HIV-infected patients.

AIDS-Related Opportunistic Infections↗

Bradykinin-induced vasodilation of human forearm resistance vessels is primarily mediated by endothelium-dependent hyperpolarization.

Bradykinin (BK) stimulates endothelial cells to release a number of relaxing factors, such as NO, prostanoids (PGs), and an endothelium-derived hyperpolarizing factor (EDHF). However, the contributions of NO, PG, and EDHF in the vascular relaxation to BK vary with species and anatomic origin of blood vessels used. Therefore, the present study was designed to investigate the contributions of NO, PG, and EDHF in vasodilation caused by BK in human forearm resistance vessels. Forearm blood flow (FBF) was recorded with venous occlusion plethysmography in healthy nonsmoking subjects. At first, studies were performed to validate the NO clamp technique for its ability to inhibit endogenous NO generation. Brachial artery infusion of serotonin (0.6, 1.8, and 6 ng. 100 mL forearm volume [FAV](-1). min(-1)) caused significant forearm vasodilation (2.6 to 4.6 mL. 100 mL FAV(-1). min(-1)), which is known to be NO mediated. Indeed, during the NO clamp, cumulative doses of serotonin caused no vasodilation (2.4 to 2.6 mL. 100 mL FAV(-1). min(-1)), indicating that the generation of endogenous NO was completely blocked. Thereafter, the vasodilative actions of BK were investigated. Brachial artery infusion of BK (50, 100, and 200 ng. 100 mL FAV(-1). min(-1)) caused significant forearm vasodilation in all studies (from 3.1 to 20.4 mL. 100 mL FAV(-1). min(-1)). After the inhibition of cyclooxygenase and NO synthase activity through the use of aspirin and the NO-clamp technique, BK increased FBF in a similar manner (3.9 to 18.9 mL. 100 mL FAV(-1). min(-1)), indicating that the vasodilative actions of BK are independent of NO and PG generation. However, vasodilation caused by the 2 lower doses of BK were significantly attenuated after K(Ca) channel activity was blocked with tetraethylammonium chloride (0.1 mg. 100 mL FAV(-1). min(-1)), suggesting that in the lower dose range, BK mediates vasodilation through the opening of vascular potassium channels. In conclusion, BK is a potent vasodilator peptide in human forearm resistance vessels, causing vasodilation through hyperpolarization of the vascular wall independent of NO and PG production. In addition, the NO-clamp technique is a valid instrument to investigate the contribution of NO in the vasodilative response to different agents.

Adolescent↗