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Inhibition of lordosis behavior in the female rat by intraventricular infusion of prolactin and by chronic hyperprolactinemia.

The role of prolactin (PRL) in the control of the lordosis reflex of female rats was investigated. In the initial series of experiments, the normal high level of sexual receptivity observed in the ovariectomized, estrogen-progesterone (E-P) primed female rat was suppressed by intraventricular infusion of 100 ng PRL. Mating behavior remained suppressed 2, 3, and 5 hours following a single infusion of PRL into the third ventricle. In contrast, infusions of either an equal volume of the solvent vehicle (saline) or 100 ng of adrenocorticotropic hormone (ACTH) were ineffective in modulating the level of mating behavior in hormone-primed female rats. In a second series of experiments, chronic hyperprolactinemia was induced by pituitary transplants under the renal capsule in intact, normal cycle diestrus rats (N=12). A significant decrement in E-P induced mating behavior was observed at 12 and 14 weeks posttransplantation but not at 4 weeks. Sham-operated animals (N=12) displayed the characteristic pattern of behavior normally observed under exogenous E-P therapy. In summary, transient exposure as well as chronic exposure to high levels of PRL can suppress mating behavior, thus suggesting a possible role for PRL in the mediation of reproductive behavior in the female rat.

Adrenocorticotropic Hormone↗

Intraventricular infusion of TrkB-Fc fusion protein promotes ischemia-induced neurogenesis in adult rat dentate gyrus.

BACKGROUND AND PURPOSE: We have previously shown that delivery of brain-derived neurotrophic factor (BDNF) through direct intrahippocampal gene transduction with a viral vector suppresses the formation of new dentate granule cells triggered by global forebrain ischemia. Here, we investigated whether inhibition of endogenous BDNF alters ischemia-induced neurogenesis in the dentate gyrus. METHODS: Rats were subjected to 30 minutes of global forebrain ischemia and then received intraventricular infusion of either the BDNF scavenger, TrkB-Fc fusion protein, or control Hu-Fc for 2 weeks. In parallel, all animals were injected intraperitoneally with the mitosis marker 5-bromo-2'-deoxyuridine-5'-monophosphate (BrdU). Animals were killed at 2 or 6 weeks after the ischemic insult, and neurogenesis was then assessed immunocytochemically with epifluorescence or confocal microscopy. RESULTS: Infusion of TrkB-Fc fusion protein gave rise to elevated numbers of ischemia-generated new neurons, double-labeled with BrdU and the early neuronal marker Hu or the mature neuronal marker NeuN, in the dentate subgranular zone and granule cell layer at 2 and 6 weeks after the insult. CONCLUSIONS: Our findings provide evidence that endogenous BDNF counteracts neuronal differentiation, but not cell proliferation or survival, in ischemia-induced dentate gyrus neurogenesis.

Animals↗

Continuous intraventricular infusion of neuropeptide Y evokes episodic food intake in satiated female rats: effects of adrenalectomy and cholecystokinin.

In these studies the pattern of feeding behavior during continuous intraventricular (IVT) infusion of NPY for 4 hr in the satiated female rat was monitored. Whereas saline infusion was ineffective, each of the three doses of NPY (117, 470 or 1175 pmol/hr) increased feeding during the entire 4 hr infusion and 2 hr postinfusion period. The cumulative food intake at the end of 4 hr of NPY infusion was enhanced in a dose-related fashion between 0, 117 and 470 pmol/hr; at 1175 pmol/hr food intake plateaued. In addition, the latency to initiate feeding response decreased in a dose-related fashion and feeding occurred in discrete (35-45) episodes during the 4 hr infusion period. Further, the total time feeding and local eating rate (g/min) increased significantly in response to the higher rates of NPY infusion. Concurrent infusion of cholecystokinin (CCK) at either equimolar or 2.5 x NPY dose, affected neither the NPY-induced cumulative food intake nor any other parameter of feeding behavior. On the other hand, cumulative food intake was significantly decreased in adrenalectomized rats in response to NPY infusion (470 pmol/hr); a response due primarily to a marked suppression in some, and almost complete cessation of food consumption in other rats during the second 2 hr period of NPY infusion. These studies show that continuous central infusion of NPY can produce sustained, intermittent feeding behavior and adrenalectomy significantly curtailed the duration of NPY effectiveness.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenalectomy↗

Effects of intraventricular infusion of vascular endothelial growth factor on cerebral blood flow, edema, and infarct volume.

BACKGROUND: Therapeutic cerebral angiogenesis, utilizing angiogenic factors to enhance collateral vessel formation within the central nervous system, is a potential method for cerebral revascularization. A prior dose-response study determined that intracerebroventricular infusion of vascular endothelial growth factor (VEGF) increases vascular density with minimal associated brain edema at a concentration of 5 microg/ml. The purpose of this study was to assess effects of intracerebroventricular infusion of VEGF (5 microg/ml) on cerebral blood flow, infarct volume, and brain edema after ischemia. METHODS: Recombinant human VEGF(165) was infused into the right lateral ventricle of rats with an osmotic minipump at a rate of 1 microl/hr for 7 days. Control animals received vehicle only. Ischemia was produced by transient (2 hours) middle cerebral artery occlusion (MCAO). After MCAO, cerebral blood flow was determined with the indicator fractionation technique: infarct volume was assessed with 2,3,5-triphenlytetrazolium chloride staining, and brain edema was determined by measuring brain water content. FINDINGS: Cerebral blood flow was not significantly different in animals treated with VEGF compared to controls. There was a significant reduction in total infarct volume after temporary MCAO in VEGF-treated animals compared to controls (163+/-37 mm(3) vs. 309+/-54 mm(3), P<0.05). Brain water content after transient MCAO was also significantly reduced in VEGF-treated animals compared to controls (80.9+/-0.7% vs. 83.3+/-0.6%, P<0.05). INTERPRETATION: Intracerebroventricular infusion of VEGF(165) (5 microg/ml) decreases infarct volume and brain edema after temporary MCAO without a significant increase in cerebral blood flow. These results indicate that VEGF may have a direct neuroprotective effect in cerebral ischemia.

Animals↗

Determinants of non-spatial working memory deficits in rats given intraventricular infusions of the NMDA antagonist AP5.

Two series of experiments using rats assessed the effects of intraventricular administration of the NMDA antagonist AP5 on performance of non-spatial working memory tasks. The first series used a continuous delayed non-matching to sample (DNMS) design; the second series used a discrete trial delayed matching to sample (DMS) design. Performance was assessed at retention intervals ranging from approximately 5 to 90 sec. The subjects had acquired the behavioural tasks before drug testing commenced. In the DNMS series, minipumps containing vehicle, 5, 10 or 15 nM D-AP5 were implanted. Every 10 days, each rat's minipump was removed and replaced with a fresh pump containing a new drug dose in a counterbalanced design, so that all rats were tested under all four conditions. There were no drug effects on performance at any retention interval. In the DMS series, there were three different basic task variants. Minipumps filled either with 15 mM D-AP5 or vehicle solution were implanted. Vehicle rats performed at approximately pre-operative levels; AP5 rats were impaired only on task variants using repeated stimulus presentations within session. There was no interaction between retention interval and drug treatment. This pattern of results closely resembles that seen following hippocampectomy or fornicotomy, as would be expected if this drug, administered intraventricularly, selectively affected hippocampal function.

2-Amino-5-phosphonovalerate↗

[Hypothalamic LH-RH neuronal modifications after prolactine intraventricular infusion in the guinea pig (author's transl)].

Ovine prolactine injected at doses of either 31,25 to 500 microgram by lateral intraventricular route in male guinea pigs, affects LH-RH hypothalamic neurons within 2 to 24 hours. After this treatment there is an increase of LH-RH immunoreactive material in eminential terminals and in numerous small granules of hypothalamic neuronal cell bodies. This accumulation of immunoactive LH-RH in pericaryon and in terminals can be interpreted as stimulation of LH-RH synthesis. Preliminary results of radioimmunoassayed plasmatic LH level, 2 h after PRL infusion, are in agreement with this hypothesis. The probability that short feed-back by PRL or PIF secretion would simultaneously be able to check LH-RH secretion is discussed.

Animals↗

Indicators of glial activation and brain oxidative stress after intraventricular infusion of endotoxin.

Glial activation and oxidative stress are both consequences of brain aging. To investigate whether glial activation causes oxidative stress or not, the immune activator, lipopolysaccharide (LPS), was intraventricularly injected into the rat brain. The expression of candidate genes were examined by in situ hybridization histochemistry (ISHH) combined with immunohistochemistry for glial markers over a period of time up to 24 h after the LPS injection. The mRNA for glial fibrillary acidic protein (GFAP) was elevated around the injection site by 2 h, and the volume of elevated expression spread to the entire brain after 6 h, with higher levels present in the injected hemisphere. The level of inducible isoform of nitric oxide synthase (i-NOS) mRNA increased in a punctate-like pattern in the region of the injection by 6 h and this response spread to the entire brain after 12 h. These results indicate that the glia are activated for at least 24 h after a single LPS injection. The mRNAs for a heat-shock protein (HSP70) and for the manganese-dependent superoxide dismutase (Mn-SOD) were elevated in the ipsilateral hemisphere as early as 2 h post-injection, but these responses subsided nearly to basal levels by 4 h. These levels of mRNAs for these genes increased again after 6 h of the LPS injection; thus, the earlier increases of the messages appeared to be associated with the survival surgery procedure. With microautoradiographic analysis, scattered OX-42 positive cells expressed i-NOS mRNA after 6 h post-injection, but elevation of Mn-SOD mRNA was not detected in either microglia or astrocytes at any time point examined. The level for Cu/Zn-SOD mRNA did not alter at any time point. The beta-amyloid precursor protein (betaAPP) mRNAs were elevated beginning at 6 h. These results indicate that chronic glial activation leads to a condition of oxidative stress in the brain. The data also suggest that LPS injection could be used to study the effects of chronic glial activation on the survival of neuronal populations that could be at risk from oxidative stress.

Animals↗

Dipsogenic and feeding influences of intraventricularly infused anionic choline solutions.

Chloride and bicarbonate solutions of choline were infused into the anteroventral part of the third ventricle of two different groups of rats through chronically implanted stainless steel cannulae. Dipsogenic and feeding responses elicited by these solutions were studied by observations taken at half hour intervals up to two h and then, after 24 h of infusions. Results were compared with the control response evoked by similar infusion of artificial cerebrospinal fluid (aCSF). Food and water intakes were recorded in different groups (n = 18 each) of rats. Dipsogenic response elicited by choline chloride solution in the observation taken 24 h after infusion, however, was higher only as compared to the control. Dipsogenic effect of bicarbonate solution was not significantly different from the control in the first two observations (30 and 60 min), but in the later observations (90, 120 min and 24 h), it was significantly higher. None of the choline solutions significantly alter feeding response within 2 h of infusions. However, in the observation taken 24 h after infusion, the response evoked by choline chloride was greater than that elicited by aCSF. The results support our earlier observation that chloride concentration of third ventricular CSF significantly influences water and food consumption. Intraventricularly administered choline also appears to have positive influence on these behaviors.

Animals↗

Potentiation of the pressor effect of angiotensin II by intraventricular infusion of hypertonic saline.

The effect of selective NaCl loading to the brain on the blood pressure regulation was examined in male Wistar rats. Hypertonic NaCl (0.8M, 1 microL/h) was infused for 7 days into the lateral ventricle (ICV) along with intravenous (IV) infusion of angiotensin II (AII) at a dose of 5.4 pmol/kg per minute. Although neither ICV hypertonic NaCl or IV AII infusion alone had any substantial pressor effect, concomitant administration of these resulted in a consistent and significant increase in the blood pressure on day 7 over the baseline value, amounting to 29 +/- 5 mm Hg (n = 9; P less than 0.001). Inasmuch as the increase in the BP was totally prevented by intraperitoneal injection of guanethidine (40 mg/day), hyperactivity of the sympathetic nervous system appears, at least in part, responsible for the BP elevation caused by the combination of ICV hypertonic NaCl and IV subpressor AII infusion.

Angiotensin II↗

Effect of intraventricular infusion of catecholamines on luteinizing hormone release in ovariectomized and ovariectomized, steroid-primed rats.

This study examined alterations in episodic LH release in response to prolonged, slow infusions of dopamine (DA), norepinephrine (NE), or epinephrine (EPIN) into the thire ventricle in adult, ovariectomized (OVX) rats, and the influence of priming with ovarian steroids on the LH response to the catecholamines. Unanesthetized rats with right atrial cannulae were bled continuously at slow rates for 1--1 1/2 h prior to infusion, 1--1 1/2 h during infusion, and up to 1 h afterwards. The amines were protected from oxidation by ascorbic acid, and infused in an artificial cerebrospinal fluid (CSF) vehicle (pH 7.29--7.33) into the third ventricle at a rate of 25--27 microliter/h. Blood samples were analyzed for LH by radioimmunoassay. In unprimed, OVX rats, infusions of artificial CSF, as well as low doses of DA (2--4 micrograms/h) or NE (0.3--0.6 micrograms/h), had no effect on episodic LH release or mean blood LH levels. However, administration of 8.5 and 17 micrograms DA/h, and 5.5 and 11 micrograms NE/h, resulted in a decrease in blood LH levels and, in most animals, prolonged intervals between peak blood LH levels during infusion or inhibitions which began rapidly and lasted for nearly the entire infusion period or longer. In contrast, infusion of 5.7 and 11.5 micrograms EPIN/h had no effect on blood LH levels in uprimed rats. In OVX rats primed 3 days prior to infusion with 50 micrograms estradiol benzoate and 25 mg progesterone (OEP), administration of CSF or the same doses of DA that previously inhibited episodic LH release had no effect on LH secretion. However, these steroids completely reversed the LH response to 11 micrograms NE/h, with increases in LH relase occurring during infusion. EPIN, in doses ineffective in unprimed rats (5.7 and 11.5 micrograms/h), also caused elevations in blood LH levels in EOP rats. Finally, in rats primed with 5 micrograms estradiol benzoate/100 g b.w./day for the 2 days prior to infusion, none of the three neurotransmitters had any effect on LH release.

Animals↗

Changes in renal haemodynamis and electrolyte excretion after intraventricular infusion of carbachol in conscious sheep.

Infusion of carbachol at 10 nmol x min-1 for 30 min into one lateral cerebral ventricle of conscious sheep caused long-lasting increases in arterial blood pressure, heart rate and haematocrit. The increase in haematocrit resulted from release of red blood cells from the spleen. The systemic cardiovascular changes were accompanied by increased glomerular filtration rate (G.F.R.), renal plasma flow (R.P.F) and renal blood flow (R.B.F) which did not return to pre-carbachol levels within 180 min post-carbachol. Intracerebroventricular (ICV) infusion of carbachol increased the rates of sodium excretion and clearance, potassium excretion and clearance, osmolal clearance and solute-free water reabsorption and increased the concentration of vasopressin in arterial plasma. The increase in sodium excretion rate was caused by increased sodium filtration associated with a fall in the proportion of filtered sodium being reabsorbed. The increase in potassium excretion rate resulted mainly from increased potassium secretion possibly stimulated by increased distal sodium delivery and by increased vasopressin levels. The observed effects of ICV carbachol infusion resembled those previously reported for ICV infision of hyperosmotic sodium solutions.

Animals↗