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Biomedical subjects

G Alonso

Publications and source records attributed to G Alonso.

At least 145 records · Page 8Linked to original sources

Light- and electron-microscope differentiation of axons containing vasopressin and oxytocin in the neurohypophyseal lobe of the rat.

In neural lobes of Sprague-Dawley rats fixed with glutaraldehyde but without osmication, toluidine blue staining of semi-thin sections revealed two clear axon types: type I, highly stained, and type II, slightly stained. After uranyl acetate and lead citrate impregnation of adjacent ultrathin sections, electron microscopy showed that type I axons contained electron-dense granules whereas type II axons mostly contained pale granules. When adjacent semi-thin sections were stained with toluidine blue or treated for immunocytochemistry, type I axons were found to react with vasopressin antisera, and type II axons with oxytocin antisera. In neural lobes of Brattleboro rats, only type II axons were observed and contained pale granules. Both in light and electron microscopy, glutaraldehyde fixation without osmication, therefore provided a simple and reliable approach to distinguish between neurohypophyseal axons containing vasopressin and oxytocin, respectively.

Animals↗

Effects of raphe lesions on circadian ACTH, corticosterone and motor activity rhythms in free-running blinded rats.

Blinded female rats underwent additional midbrain raphe lesions, in order to explore the role of the raphe in the organization of endogenous circadian rhythms for ACTH, corticosterone (B) and motor activity (MA). Amplitudes and mean levels of rhythms were depressed for ACTH and MA, with persistent free-running circadian periodicity for MA and, in several rats, for ACTH and B as well. Other rats exhibited split circadian and ultradian rhythmicity for ACTH and B, whereas other again displayed no detectable ACTH rhythmicity. These results are discussed in the light of the structure of circadian pacemaker systems.

Adrenocorticotropic Hormone↗

Radioautographic studies on the neurohypophysial projections of the supraoptic and paraventricular nuclei in the rat.

The distribution of labelled axonal pathways was studied after unilateral stereotaxic injection of 3H-leucine into either supraoptic (SON) or paraventricular nuclei (PVN). In addition to extrahypothalamic projections of both nuclei, the main efferents appeared to run towards the neurohypophysis, yet with a strikingly different pattern. At the neurohypophysial levels, the SO-neurohypophysial tract crossed the inner layers of the median eminence (ME) before scattering in the neural lobe. The PV-neurohypophysial pathway, by contrast, provided an exclusive innervation to the external layer of the whole neurohypophysial organ, including the median eminence, infundibular stalk and neural lobe. The functional correlates of the clear-cut anatomical distinctness between the two magnocellular neurosecretory systems are discussed.

Animals↗

Ultrastructural organization of actin filaments in neurosecretory axons of the rat.

The ultrastructural organization of actin filaments was studied in the neurohypophysial system of the rat after heavy meromyosin (HMM) labeling. This structural pattern is characterized by (1) a straight arrangement of the filaments parallel to the axonal axis in the proximal nondilated parts of axons, (2) a central location within axonal dilatations, and (3) a higher concentration within axonal endings where the filaments form a complex three-dimensional network. The relationships of the filaments to other axonal structures and organelles was further studied by use of electron microscopic stereoscopy. The actin filaments frequently appear anchored to the axolemma with either polar arrangements of the arrowhead decoration (i) at structurally undifferentiated sites, and (ii) more particularly within perivascular endings, at sites with electron-dense thickenings. In all axonal divisions actin filaments are also found to bind to filamentous material surrounding the microtubules and to various organelles. Within the terminal portions of the axons actin filaments exhibit close relationships to neurosecretory granules and to the numerous smooth microvesicles found in this region. Such preferential relationships are particularly observed both in axon ;terminals and in pituicytes, with coated vesicles frequently binding actin filaments. In water-deprived rats, the concentration of actin filaments is conspicuously increased along the axons and more clearly in the axonal swellings and endings, where they form a more complex and interconnected network. These data are discussed in the light of a possible involvement of contractile proteins in the mechanisms of axonal transport and terminal release of neurosecretory products.

Actins↗

[Effects of the destruction of the suprachiasmatic nuclei on the circadian rhythms of ACTH corticosterone and the general activity of female rats exposed to a aperiodic environment].

The effects of bilateral destruction of suprachiasmatic nuclei (SCN) on the temporal patterns of plasma concentrations in ACTH and corticosterone (sequential blood samples from an aortic cannula, at 4 h intervals over 48 h) and of general activity (stabilimeter recordings) were studied in female rats under constant illumination (LL : 10 lx). Under this arrhythmic environment, the SCN lesions induced a syndrome similar to that previously described in a photoperiodic environment (12 L-12 D). This SCN syndrome included : 1) blockade of the ACTH rhythm at baseline levels ; 2) maintained fluctuations of corticosterone, with either circadian or ultradian profiles ; 3) persistent rhythmicity of general activity, with a circadian periodicity in addition to ultradian periods. The persistence of a circadian rhythmicity in the SCN syndrome under arrhythmic environmental conditions, clearly argues in favour of the occurrence of endogenous components of the circadian pacemaker outside the SCN.

Adrenocorticotropic Hormone↗

Neural control of circadian rhythms in plasma ACTH, plasma corticosterone and motor activity.

The circadian rhythms for plasma ACTH and corticosterone (B), as well as motor activity, were explored in female rats after ocular enucleation (O-X), stereotaxic lesion of the suprachiasmatic nuclei (SCN-X) or of midbrain raphe nuclei (R-X), or both O-X and R-X, pharmacological blockade of the serotoninergic (5HT) system by pCPA, sometimes bypassed by 5-HTP, or 5-HT denervation of the SCN by local injection of 5,7-DHT. The three circadian rhythms explored responded quite differently to the treatments. In particular, the ACTH and B rhythms lost their usual close correlations. The amplitude and mean level of ACTH fluctuations were depressed after all treatments, but remained normal or were enhanced for B rhythm. ACTH rhythmicity actually was undetectable after SCN-X, pCPA and, in several rats, combined O-X and R-X, whereas persisting circadian and/or ultradian B and locomotor activity rhythms were always measured. The participation of the suprachiasmatic nuclei, the midbrain raphe nuclei and other possible 5-HT components in a complex circadian pacemaker system is discussed.

Adrenocorticotropic Hormone↗

Alkylating nucleosides. 4. Synthesis and cytostatic activity of chloro- and iodomethylpyrazole nucleosides.

The synthesis and cytostatic activity of several chloromethyl- and iodomethylpyrazole nucleosides are described. Glycosylation of ethyl 3(5)-(chloromethyl)pyrazole-5(3)-carboxylate (3) and 3(5)-(chloromethyl)pyrazole-5(3)-carboxamide (4) with poly(O-acetylated) sugars via an acid-catalyzed fusion method gave the corresponding 3-(chloromethyl)-5-carboxylate and 3-(chloromethyl)-5-carboxamide substituted nucleosides 7 and 9, respectively. From the reaction of 4 with tetra-O-acetyl-beta-D-ribofuranose, the 5-(chloromethyl)-3-carboxamide-substituted derivative 11 was also obtained. Reaction of 7, 9, and 11 with sodium iodide in acetone provided the related iodomethylpyrazole nucleosides 8, 10, and 12. In general, chloromethyl-substituted nucleotides showed moderate activities against HeLa cells, while all the corresponding iodomethyl derivatives exhibited high activities. Some of these latter compounds increased the life span of mice bearing ECA tumor.

Alkylating Agents↗

Serotoninergic system and circadian rhythms of ACTH and corticosterone in rats.

The circadian rhythms of plasma ACTH and corticosterone and of locomotor activity were explored in chronically cannulated female rats, after elimination of serotoninergic (5HT) innervation of the SCN (suprachiasmatic nuclei) either by stereotaxic lesion of the median and dorsal midbrain raphe nuclei (RX) or by local injection of SCN with the neurotoxin 5,7-dihydroxytryptamine (5,7DHT). Completeness of 5HT denervation was checked on serial sections of the hypothalamus either by the Falk-Hillarp technique or by radioautography. Neither lesion eliminated the intrahypothalamic 5HT system, which, however does not take part in the 5HT innervation of the SCN. In both experimental series, the circadian rhythms of the three parameters investigated were maintained in unchanged phase relationships compared to the sham-lesioned controls, and with respect to the photoperiod (12 light-12 dark). However, the estimated amplitudes of the ACTH rhythms dropped by 43% (RX) to 47% (5,7DHT) and their mean levels by 44% (RX) to 60% (5,7DHT), whereas the corticosterone rhythm displayed normal amplitude and its mean level rose by 24% (RX) or 38% (5,7DHT). In regard to locomotor activity rhythm, the most noticeable alteration was a 25-55% increase in the light-phase activity of both experimental groups with a correlative increase in the L/D activity ratio. The essential role of 5HT innervation of the SCN therefore seems to be to facilitate circadian control of the ACTH rhythm.

Adrenocorticotropic Hormone↗

Disposition of cefoxitin in the elderly.

The pharmacokinetics off cefoxitin were studied after a single i.v. and i. m. dose of 15 mg/kg of cefoxitin to 15 younger people (15-55 years) and to 16 geriatric patients (66-94 years). The kinetics of the antibiotic follow an open two-compartment model for both administration routes. After i.m. administration of the antibiotic, there are modifications in the distribution with respect to i.v. administration, and there is a decrease in beta K21 and as a consequence, an increase in Vp. In geriatric patients, pharmacokinetic modifications take place with respect to those recorded in the younger people in both administration routes, there being a decrease in the following pharmacokinetic parameters: alpha, beta, K12, K21, K13 and Clp, together with an increase in the apparent distribution volume Vdss. A linear relationship has been established between the constant beta and the age of the patient. In spite of the pharmacokinetic modifications observed as a function of age, given the wide safety margin of the antibiotic, it is not necessary to modify the dosage regimen of cefoxitin in geriatric patients.

Adolescent↗

The smooth endoplasmic reticulum in neurohypophysial axons of the rat: possible involvement in transport, storage and release of neurosecretory material.

The intra-axonal organization of the smooth endoplasmic reticulum was studied in the neurohypophysis of rats during and after water deprivation. Parallel to conventional electron microscopy, the material was treated with a double impregnation staining technique specifically designed to contrast the intracellular membranous system. In conventionally stained ultrathin sections from severely dehydrated rats most axons appeared to be free of membranous organelles, whereas corresponding axons treated with the double-impregnation technique generally exhibited a highly developed system of smooth endoplasmic reticulum. In axonal endings, both techniques revealed a profusion of microvesicles in intimate relationship with tubular elements of the smooth endoplasmic reticulum. In short-term (12h) rehydrated rats, a similarly developed system of smooth endoplasmic reticulum was stilll observed at all axonal levels with both procedures. After 24 to 48 h or rehydration the tubules of the smooth endoplasmic reticulum exhibited, in double impregnated material, numerous dilatations which resembled the adjacent neurosecretory granules. In conventionally stained ultrathin sections, an accumulation of electron dense material occurred within tubules of the smooth endoplasmic reticulum in the more proximal axonal segments, while in the more terminal segments, which contained numerous elongated granules, membrane continuity was frequently observed between newly formed granules and the smooth endoplasmic reticulum. After 7 days of rehydration the general pattern of the axonal smooth endoplasmic reticulum was comparable to that in untreated rats. These results are discussed in the light of a suggested involvement of the axonal smooth endoplasmic reticulum in the non-granlular transport of neurosecretory material in connection with (1) storage in distally formed granules, and (2) release via microvesicles.

Animals↗

Three-dimensional organization of the endoplasmic reticulum in supraoptic neurons of the rat. A structural functional correlation.

Double impregnation staining of tissue was used to study on thick sections the three-dimensional configuration of the peripheral endoplasmic reticulum in neurosecretory neurons of the supraoptic nucleus in control and water-deprived rats. According to the spatial organization of the endoplasmic reticulum, two types of neurons are described in this report: Type I neurons which predominated in control rats (70%) exhibited characteristically large lamellar structures connected to loosely anastomosed tubules. In type II neurons, which prevailed in water-deprived rats (85%) the endoplasmic reticulum had the appearance of a highly-developed network of interconnected tubules, with no lamellar structures. Double impregnation staining combined with high resolution radioautography after [3H]leucine administration showed that the tubular configuration of the endoplasmic reticulum was the main active site of protein synthesis by contrast with the lamellar components, whose activity seemed poor. In terms of protein synthesis, the three-dimensional configuration of the peripheral endoplasmic reticulum of the supraoptic neurons appeared therefore to be closely connected with their functional state.

Animals↗

[Identification of actin microfilaments in the neurosecretory axons of rat neural lobe].

Incubation of rat neural lobes with heavy meromyosin (HMM) after prolonged glycerination, induced characteristic arrowhead decoration of a number of microfilaments at different levels of the neurosecretory axons. In non terminal sections of axons the labelled microfilaments showed preferential relationships with microtubules in addition to occasional contacts with the axolemma and various axonal organelles. In axonal endings, they were mainly associated to microvesicles and appeared to be anchored on the axolemma facing the perivascular space at the level of membranous densifications.

Actins↗

Alkylating nucleosides 1. Synthesis and cytostatic activity of N-glycosyl(halomethyl)-1,2,3-triazoles. A new type of alkylating agent.

1,3-Dipolar cycloaddition of benzyl azide or peracetylated glucopyranosyl azides to propargyl halides or 1,4-dihalobutynes yielded 1-benzyl- or 1-glycosyl(halomethyl)-1,2,3-triazoles. Alkylating chloromethyl- bromomethyl- and iodomethyl-1,2,3-triazoles were also obtained from the corresponding hydroxymethyl derivatives by treatment with (C6H5)3P/CCl4, (C6H5O)3P/Br2, and (C6H5O)3P/I2, respectively. 1-Benzyl-4-(fluoromethyl)-1,2,3-triazole was obtained from 1-benzyl-4-(bromomethyl)-1,2,3-triazole by treatment with KF and 18-crown-6. Chloromethyl-, bromomethyl-, and iodomethyl-1,2,3-triazole derivatives inhibited the "in vitro" growth of HeLa cells. Some of these compounds increased the life span of mice bearing tumors.

Alkylating Agents↗

Alkylating nucleosides. 2. Synthesis and cytostatic activity of bromomethylpyrazole and pyrazole nitrogen mustard nucleosides.

Glycosylation of ethyl 3(5)-(bromomethyl)pyrazole-5(3)-carboxylate (3) and 3(5)-(bromomethyl)pyrazole-5(3)-carboxamide (4) with poly-O-acetylated sugars via an acid-catalyzed fusion method afforded the corresponding ethyl 3-(bromomethyl)pyrazole-5-carboxylate and 3-(bromomethyl)pyrazole-5-carboxamide substituted nucleosides 5 and 7, respectively. In some cases, the positional isomers 6 and 8 were also obtained. Treatment of 5 and 7 with methanolic ammonia gave the deprotected 3-(aminomethyl)pyrazole-5-carboxamide nucleosides 9. Reaction of 3--5 and 7 with bis(2-chloroethyl)amine led to the corresponding pyrazole nitrogen mustards 10--13. All the bromomethylpyrazole nucleosides described showed significant cytostatic activity against HeLa cell cultures.

Antineoplastic Agents↗

Electron microscopic study of the orthograde axonal transport of horseradish peroxidase in the supraoptico-neurohypophysial tract of the rat.

Horseradish peroxidase (HRP) has been used as a protein tracer in order to visualize the ultrastructural sites of the orthograde transport of protein macromolecules in the hypothalamo-neurohypophysial tract of the rat. After a local injection of HRP within the supraoptic nucleus, the reaction product was observed: (1) mainly in tubules of the smooth endoplasmic reticulum in the more proximal part of the axons, and (2) in granules and microvesicles of the axon terminals. Observations on thick sections clearly showed the existence of a relationship between the smooth endoplasmic reticulum containing HRP and the labeled granules or microvesicles. These data are in good agreement with previous findings showing the existence of direct continuity between tubules of the smooth endoplasmic reticulum and a fraction of the neurosecretory granules and microvesicles. This evidence further reinforces the hypothesis that the latter organelles may possibly originate locally in the axons from the tubules of the smooth endoplasmic reticulum which may therefore be proposed as a possible vehicle for a non-granular intra-axonal transport of neurosecretory material in neurosecretory neurons.

Animals↗