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D Turini

Publications and source records attributed to D Turini.

At least 19 recordsLinked to original sources

Gastropyeloplasty: an alternative procedure in reconstruction of the renal pelvis.

We report our first experience with the use of a small gastric patch for reconstruction of the renal pelvis. We performed left gastropyeloplasty based on the right gastroepiploic artery in 1 patient suffering from recurrent urinary tract infections and renal stones, and moderate renal failure. The use of a gastric patch for reconstruction of the renal pelvis prevented the recurrence of calculi and bacterial infections, and produced an improvement in renal function. We confirm the feasibility of the use of a small gastric patch in reconstruction of the renal pelvis and we argue that there are several possible ways to use stomach in upper urinary tract reconstruction.

Female

Vesical-renal reflex: diuresis and natriuresis activated by intravesical capsaicin.

In the last years the role of capsaicin sensitive innervation, in the activation of the micturition reflex, has been reported in many papers. In our experience, upon the intravesical administration of capsaicin in humans, we noticed an increase of diuresis. No interaction is known about the sensory innervation of the bladder and renal function, so we studied the possibility of the existence of a vesical-renal reflex arc. Twenty-one patients (9 men and 12 women) were randomised to receive intravesical infusion of saline solution containing 10 microM capsaicin. Urine output, glomerular renal filtrate (GRF) and effective plasma renal flow (EPRF), measured by Technetium-99m diethylenetetramine-penta-acetic acid (DTPA) renal scintigraphy, were recorded over twenty minutes before and after the intravesical administration of capsaicin. Urine density, [Na+] and [K+] concentration, and prostaglandin E2 excretion were also determined before and after intravesical administration of capsaicin or vehicle. Installation of saline solution containing 10 microM capsaicin produced a significant increase of mean urine output, an increase of GRF, of EPRF and of [Na+] and [K+] urine concentration. An increase, not statistically significant, was observed of PgE2 excretion. None of the patients treated with vehicle showed any modification of parameters examined. The present findings demonstrate a hitherto unrecognized effect: increased diuresis following selective chemical stimulation of bladder efferents with capsaicin. The renal diuretic response to intravesical capsaicin represents a working hypothesis about the possible involvement of a vesical-renal reflex arc organized at spinal or supraspinal level.

Administration, Intravesical

Vesical dysfunction in systemic sclerosis (scleroderma)

There have been only a few reports on the involvement of the urinary tract in patients with systemic sclerosis, a disease of the connective tissue characterized by thickening and fibrosis of the skin, abnormality of the small arteries, and involvement of the gastrointestinal tract, heart, lung and kidney. We report the urodynamic assessment and histological examination of 9 women with scleroderma. Three patients voided less than 100 ml. with a significant residual volume and 4 presented with detrusor areflexia during a filling cystometrogram. Histopathological examination in all patients with detrusor areflexia demonstrated the presence of arterial lesions and derangement of the capillary bed of the detrusor musculature. Our data provide evidence for the functional and histological involvement of the bladder in patients with systemic sclerosis.

Female

The behavioral response induced by intravesical instillation of capsaicin rats is mediated by pudendal urethral sensory fibers.

The behavioral response induced by the intravesical instillation of capsaicin has been investigated in catheter-implanted, freely moving, conscious male and female rats. Intravesical instillation of capsaicin (25 nmol/rat in 0.5 ml) evoked an intense licking directed toward the lower abdominal and perineal skin which lasted for 15 min. Capsaicin-induced licking was reduced by systemic capsaicin pretreatment at a dose of 150 mg/kg but not at 50 mg/kg, administered 4 days before the intravesical instillation. Both doses of capsaicin effectively abolished the eye-wiping response to local capsaicin application. The capsaicin-induced licking was preserved (and prolonged) in both male and female animals subjected to bilateral ablation of the pelvic ganglia, 48 h before the intravesical instillation of the irritant. The capsaicin-induced licking was almost abolished by placing a ligature around the proximal urethra (24 h before), in order to avoid the contact of the irritant with the urethra or by previous section of the pudendal nerves (48 h before). One hour intravesical infusion with tetrodotoxin (1 and 10 microM) reduced the amplitude of micturition contractions but did not prevent the licking response evoked by capsaicin. On the contrary, the intravesical infusion of lidocaine (100 mM) abolished both micturition contractions and the capsaicin-induced licking. We conclude that the behavioral response induced by the intravesical instillation of capsaicin is mainly due to the stimulation of urethral afferents travelling within pudendal nerves.

Animals

Intraurethrally infused capsaicin induces penile erection in humans.

Capsaicin-sensitive primary afferents widely innervate the genitourinary tract and play an important role in the integration of various mechanisms which activate reflexes leading to penile erection. We investigated the effect of intraurethral capsaicin infusion in psychogenically impotent men. The 20 patients were prospectively randomized to four groups, each of five men. Group A received intraurethral infusion of saline solution, group B intraurethral capsaicin (10(-5) M), group C intracavernosal papaverine hydrochloride (8 mg) plus intraurethral saline infusion, and group D intracavernosal papaverine hydrochloride (8 mg) plus intraurethral capsaicin (10(-5) M). The penile response was recorded real-time. Intraurethral capsaicin induced penile erection, as did the papaverine injection, while saline infusion was without effect. The erectile response to intraurethral infusion of capsaicin is suggested to involve activation of a urethra-corpora cavernosa reflex arc. Further studies are necessary to clarify if this arc is integrated at central nervous system level or is locally triggered, and if it may have pathophysiologic implications.

Capsaicin

MEN 10,573 and MEN 10,612, novel cyclic pseudopeptides which are potent tachykinin NK-2 receptor antagonists.

The activity and selectivity of MEN 10,573 and MEN 10,612, novel cyclic pseudopeptides which are selective tachykinin NK-2 receptor antagonists is described, as compared to that of previously characterized linear and cyclic compounds. For the NK-2 receptor, the activity of test compounds was investigated in the hamster isolated trachea (HT) and the endothelium-deprived rabbit isolated pulmonary artery (RPA), two preparations which are endowed with pharmacologically distinct forms of the NK-2 receptor. The novel cyclic pseudopeptides, MEN 10,573 and MEN 10,612 displayed very high affinity for the NK-2 receptor in the HT (pA2 8.66 and 9.06, respectively) which is higher than that observed in the RPA (pA2 7.31 and 7.41 for MEN 10,573 and MEN 10,612, respectively). The antagonism exerted by MEN 10,573 and MEN 10,612 was of competitive nature in both preparations. MEN 10,573 and MEN 10,612 also displayed competitive antagonism for NK-2 receptor-mediated responses in the rabbit bronchus (RB), rat vas deferens (RVD), circular muscle of the human colon (HUC) and ileum (HUI). In the RB, HUC and HUI, the potency of the novel cyclic pseudopeptides was comparable to that of MDL 29,913 and about 10-fold greater than that of L659,877. In the RVD however, the potency of MEN 10,573 MEN 10,612 or MDL 29,913 was similar to that of L659,877. In anaesthetized rats, i.v. injection of MEN 10,612 produced a selective and long-lasting blockade of the urinary bladder contraction produced by the i.v. injection of the NK-2 receptor selective agonist [beta Ala8]neurokinin A(4-10), without affecting the response to the NK-1 receptor selective agonist [Sar9]substance P sulfone.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Relief of pain following intravesical capsaicin in patients with hypersensitive disorders of the lower urinary tract.

We have extended our earlier observations on pain relief produced by intravesical instillation of capsaicin (10 microM in saline) in patients with hypersensitive disorders of the lower urinary tract. Patients in group A (n = 15) received intravesical capsaicin on days 0, 14 and 28: on each occasion the drug produced a warm or burning sensation, reduction in bladder capacity and a delayed, transient improvement or disappearance of symptoms. Patients in group B (n = 5) received intravesical capsaicin (10 microM at cystometry) 3 times on day 0. The initial sensation of warmth was experienced on each occasion, indicating that no significant desensitisation has been produced by the first instillation. Clinical improvement similar to that found in group A was observed. Three patients (group C) received warm saline (42 degrees C) at cystometry. This produced a pricking sensation, no change at cystometry and no subjective clinical improvement. Apart from the initial sensation of warmth, no patient in group A or B experienced side effects, either local or systemic. These findings confirm that intravesical instillation of capsaicin has a beneficial effect on patients with hypersensitive bladder disorders. Counter-irritation rather than desensitisation of primary afferents could be a possible mechanism of action. Further studies are needed to establish whether the intravesical administration of capsaicin or capsaicin-like agents represents a new form of treatment for relief of bladder pain.

Administration, Intravesical

Characterization of the tachykinin neurokinin-2 receptor in the human urinary bladder by means of selective receptor antagonists and peptidase inhibitors.

The tachykinin (NK2) receptor-mediating contraction of the human isolated bladder to NKA was investigated by studying the affinities of eight structurally different receptor-selective antagonists (linear peptides, cyclic peptides and pseudopeptides, nonpeptide NK2 receptor antagonists). The affinities of the antagonists were compared to those measured for the same ligands at the NK2 receptors previously characterized in the rabbit pulmonary artery and hamster trachea. In the presence of a cocktail of peptidase inhibitors (bestatin captopril and thiorphan, 1 microM each) no significant correlation was found between pA2 values measured in the human bladder vs. those measured in the other two NK2 receptor-bearing preparation. In the presence of the aminopeptidase inhibitor amastatin, however, pA2 values of linear antagonists bearing an N-terminal Asp residue MEN 10,207 and MEN 10,376 were significantly enhanced and these pA2 values were used for analysis; a significant correlation was found between pA2 values measured in the human urinary bladder and rabbit pulmonary artery. The pseudopeptide analog of NKA (4-10), MDL 28,564 which also bears a N-terminal Asp residue behaved as an agonist and its action was enhanced by amastatin. We conclude that the NK2 receptor-mediating contraction of the human urinary bladder smooth muscle is similar to that previously characterized in the rabbit pulmonary artery (NK2A receptor category); in the human bladder smooth muscle an amastatin-sensitive peptidase (possibly aminopeptidase A) limits biological activity of linear peptide derivatives of NKA bearing a N-terminal Asp residue.

Adult

Tachykinin antagonists inhibit nerve-mediated contractions in the circular muscle of the human ileum. Involvement of neurokinin-2 receptors.

The effects of some newly developed tachykinin antagonists that are selective for the neurokinin (NK)-1 (L 668,169) or the NK-2 (MEN 10,207, L 659,877 and R 396) tachykinin receptor on the cholinergic and noncholinergic contraction and on the nonadrenergic noncholinergic relaxation produced by electrical field stimulation (50 Hz) were investigated in mucosa-free circular strips of the human ileum. The strips were contracted by substance P and neurokinin A as well as by selective NK-2-receptor ligands, [beta Ala8]neurokinin A(4-10), and MDL 28,564, the latter peptide being capable of discriminating between NK-2-receptor subtypes. The selectivity of the antagonists for NK-1 or NK-2 receptors was confirmed in pharmacological experiments using substance P, neurokinin A, and [beta Ala8]neurokinin A(4-10) as stimulants. Among the NK-2-selective antagonists, MEN 10,207 displayed the highest affinity, followed by L 659,877 and R 396. The antagonists MEN 10,207 and L 659,877 inhibited the noncholinergic contraction to electrical stimulation in a concentration-dependent manner; L 668,169 and R 396 were poorly effective. Thus the potency of antagonists toward the noncholinergic response closely paralleled their rank order of potency at NK-2 receptors. The cholinergic contraction and nonadrenergic noncholinergic relaxation were not inhibited by the antagonists. Both substance P- and neurokinin A-like immunoreactivities were detected in extracts of the human ileum, and the identity of the corresponding peptides was confirmed by reverse-phase high-performance liquid chromatography. It was concluded that in addition to NK-1 receptors, the circular muscle of the human ileum also contains NK-2 receptors. Activation of the latter is chiefly responsible for the noncholinergic contraction to nerve stimulation.

Aged

NK2 tachykinin receptors and contraction of circular muscle of the human colon: characterization of the NK2 receptor subtype.

The contractile effect of substance P, neurokinin A, receptor selective agonists for tachykinin receptors and NK2 tachykinin receptor antagonists was investigated in mucosa-free circular strips of the human isolated colon. Neurokinin A and substance P produced concentration-dependent contractions which approached 80-90% of the maximal response to carbachol. Neurokinin A was about 370 times more potent than substance P. The action of neurokinin A and substance P was not modified by peptidase inhibitors (bestatin, captopril and thiorphan, 1 microM each). The NK2 receptor selective agonist, [beta-Ala8]neurokinin A-(4-10) closely mimicked the response to neurokinin A while NK1 and NK3 receptor selective agonists were active only at microM concentrations. The pseudopeptide, MDL 28,564, which is one of the most selective NK2 ligands available, behaved as a full agonist. Responses to [beta-Ala8]neurokinin A were antagonized by NK2 receptor selective antagonists, with the rank order of potency MEN 10,376 greater than L 659,877 much greater than R 396. These data indicate that NK2 tachykinin receptors play a dominant role in determining the contraction of the circular muscle of the human colon to peptides of this family. The NK2 receptor subtype responsible for this effect belongs to the same subtype (NK2A) previously identified in the rabbit pulmonary artery and guinea-pig bronchi.

Aged

Ruthenium red as a selective capsaicin antagonist of the motor response to capsaicin in the human isolated ileum.

We have investigated the effect of ruthenium red, omega-conotoxin fraction GVIA (CTX) and tetrodotoxin (TTX) on the relaxation produced in the circular muscle of the human isolated ileum by capsaicin, electrical field stimulation (EFS) or vasoactive intestinal polypeptide (VIP). Ruthenium red (10 microM) selectively blocked the capsaicin-evoked relaxation while leaving the response to EFS or VIP unaffected. CTX had no significant effect on the various stimuli. TTX blocked the relaxation due to EFS but not that due to capsaicin or VIP. It is concluded that capsaicin excitation of primary afferents in the human ileum, leading to VIP release and muscle relaxation, occurs with mechanisms similar to those operating in animal tissues and that ruthenium red acts as a selective capsaicin antagonist in the human ileum.

Aged

Effect of NG-monomethyl L-arginine (L-NMMA) and NG-nitro L-arginine (L-NOARG) on non-adrenergic non-cholinergic relaxation in the circular muscle of the human ileum.

1. We have investigated the effect of the NO synthesis inhibitors, NG-monomethyl L-arginine (L-NMMA) and NG-nitro L-arginine (L-NOARG) on the non-adrenergic non-cholinergic (NANC) relaxation produced by electrical field stimulation in the circular muscle of the human ileum. 2. In the presence of atropine and guanethidine (1 and 3 microM, respectively), electrical field stimulation produced tetrodotoxin-sensitive relaxation of the strips. L-NMMA, starting from 100 microM, produced a concentration-dependent inhibition of the evoked relaxations (2Hz); maximal inhibition at 1 mM averaged about 35%. 3. The inhibitory effect of L-NMMA was unchanged by previous incubation with D-arginine while it was prevented by L-arginine (L-Arg). L-NMMA did not affect isoprenaline-induced relaxation. 4. L-NOARG (1-30 microM) concentration-dependently inhibited the evoked relaxations at 2 Hz, up to a maximum of 65% inhibition, although in some strips complete inhibition of the response was observed. The effect of L-NOARG was reversed by L-Arg. L-NOARG did not affect isoprenaline-induced relaxation. 5. These results suggest that NO may be involved in inhibitory NANC transmission in the circular muscle of the human ileum.

Arginine

Direct evidence for the involvement of vasoactive intestinal polypeptide in the motor response of the human isolated ileum to capsaicin.

Capsaicin (1 microM) produced complex motor responses in longitudinal and circular muscle strips from the human isolated small intestine (jejunum and ileum). In the longitudinal muscle, inhibition of the nerve-mediated contractions (electrical field stimulation) was the dominant response, while capsaicin had a weak and inconsistent effect on tone and spontaneous activity. In contrast, relaxation and decreased spontaneous activity were the responses of the circular muscle to capsaicin. These effects of capsaicin were not reproduced by a second application of capsaicin, indicating desensitization, a feature of the specific action of this drug on sensory nerves. All the effects of capsaicin in the longitudinal and circular muscle were closely mimicked by exogenous vasoactive intestinal polypeptide (VIP). Further, the inhibitory motor effect of capsaicin in both muscle layers was blocked by an anti VIP serum. In the longitudinal muscle, VIP, like capsaicin, inhibited the electrically evoked nerve-mediated contractions but not the tetrodotoxin-resistant myogenic contractions, suggesting a prejunctional site of action. The inhibitory effect of both capsaicin and VIP in the circular muscle was tetrodotoxin-resistant suggesting direct inhibition of muscle cells. Capsaicin (1 microM) evoked a tetrodotoxin-resistant release of VIP-like immunoreactivity from the human small intestine. On high pressure liquid chromatography, a major peak of the immunoreactive material released by capsaicin co-eluted with authentic VIP and a minor, unidentified peak eluted shortly afterward. We conclude that authentic VIP is involved in the local motor response to capsaicin in the human small intestine. These findings raise the possibility that VIP might be present in sensory nerves of the human gut from which it is released by capsaicin.

Aged

Human isolated ileum: motor responses of the circular muscle to electrical field stimulation and exogenous neuropeptides.

(1) Circularly-oriented muscle strips from the human ileum responded to electrical field stimulation (1-50 Hz) with frequency-related primary relaxation at low frequency and primary contractions at high frequencies of stimulation. Both responses were abolished or markedly reduced by tetrodotoxin (1 microM). (2) Atropine (3 microM) or omega conotoxin (0.1 microM) reduced but dit not abolish contraction to electrical field stimulation and enhanced the relaxation. Omega conotoxin (0.1 microM) did not affect carbachol-induced contraction nor isoprenaline-induced relaxation. (3) Neurokinin A and substance P (1 nM-1 microM) produced a concentration-dependent contraction. The NK-1 receptor selective agonist, [Pro9]SP sulfone and the NK-2 receptor selective agonist [beta Ala8]NKA(4-10) produced a contraction superimposable to that of substance P and neurokinin A, respectively. On the other hand, [MePhe7]-neurokinin B, an NK-3 receptor selective agonist was ineffective up to 1 microM. The response to substance P or neurokinin A was unaffected by atropine (3 microM). (4) Galanin, up to 0.1 microM, produced a weak and inconsistent contraction. (5) Vasoactive intestinal polypeptide (10 nM-1 microM) produced a concentration-dependent relaxation while human alpha calcitonin gene-related peptide exerted a weak and inconsistent relaxant effect. (6) These findings indicate that both cholinergic excitatory and non-cholinergic inhibitory nerves affect the motility of the circular muscle of the human small intestine. Transmitter release from excitatory nerves seems largely mediated by activation of omega conotoxin-sensitive (N-type) calcium channels. Tachykinins exert a potent contractile effect, independently of cholinergic nerves, via NK-1 and NK-2 receptors.

Aged

Contractile responses of the human urinary bladder, renal pelvis and renal artery to endothelins and sarafotoxin S6b.

1. Endothelin-1 (ET-1), endothelin-3 (ET-3) and sarafotoxin S6b (SRFTX) produced a concentration-dependent tonic contraction of the human isolated urinary bladder, renal pelvis and renal artery with threshold at nM concentration. 2. In the bladder, the following order of potency was found: ET-1 greater than SRFTX greater than ET-3. In the renal pelvis, all peptides displayed similar affinity but, at high concentrations the maximal response was highest for SRFTX followed by ET-1 and ET-3. In the renal artery ET-1 and SRFTX were about equipotent and equieffective while ET-3 produced only a slight and inconsistent (2 out of 5 cases) vasoconstrictor response. 3. As shown previously for the human bladder muscle, the response to ET-1 in the renal pelvis was nifedipine (1 microM)-resistant while a consistent fraction of the response was blocked by nifedipine in the human renal artery. 4. These findings indicate that peptides of the endothelin family exert a potent contractile effect on various human smooth muscles. Participation of dihydropyridine- and voltage-sensitive calcium channels in the contractile response produced by these peptides may vary from one organ to another.

Endothelins