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[Effect of captopril on urinary 6-keto-PGF1 alpha, thromboxane B2 in inbred SHR rats].

Urinary 6-keto-PGF1 alpha, TXB2, PRA, ATII, blood pressure, urine volume, urinary sodium and potassium were measured by RIA in SHR after administration of captopril and indomethacin. The results suggested that captopril would significantly decrease ATII, and showed marked effects of hypotension, diuresis and caused variation of PG system. Urinary 6-keto-PGF1 alpha and TXB2 were significantly increased in both rat groups, but changes of TXB2/PGI2 ratio were different. The studies yet suggested indomethacin could antagonize the hypotensive effects of captopril.

6-Ketoprostaglandin F1 alpha↗

Aortic calcium uptake and efflux in spontaneously hypertensive and inbred Dahl rats.

Calcium uptake and efflux were studied in aortic tissues of three inbred rat strains; spontaneously hypertensive rats (SHR), inbred Dahl salt-sensitive rats (S/JR) and inbred Dahl salt-resistant (R/JR) rats. Previously, we showed that a single genetic locus (Hyp-2 locus) controls vascular smooth muscle responses to ionic cobalt (Co2+) among these three strains. Spontaneously hypertensive rats carry an allele at the Hyp-2 locus mediating high blood pressure, but S/JR and R/JR both carry an allele at this locus for low blood pressure. In the present work, resting Ca2+ uptake in aortic tissue was found to be increased in SHR and S/JR relative to R/JR. It was concluded that resting aortic Ca2+ uptake and genotypes at the Hyp-2 locus are not concordant among strains and that the increased Ca2+ uptake of the hypertensive strains must, therefore, be mediated by a mechanism other than the Hyp-2 locus. Resting aortic Ca2+ uptake was shown also to be increased in hypertension-resistant R/JR rats by the extreme treatment of unilateral nephrectomy plus 8% NaCl diet which induces hypertension in R/JR rats. The high resting vascular smooth muscle calcium-uptake seen in the hypertensive strains is, therefore, not a unique primary genetic cause of hypertension since it can also be induced by environmental manipulation. High resting aortic Ca2+ uptake is either a consequence of hypertension or a final common physiological pathway by which genetic and environmental factors influence blood pressure.

Animals↗

Strain and sex differences in the expression of nociceptive behavior and stress-induced analgesia in rats.

Evidence indicates that genetic, gender, and emotional/attentional aspects modulate the pain sensation. The present study examined the effect of swim-stress on nociceptive responses in Lewis (LEW) and spontaneously hypertensive (SHR) inbred rats (contrasting for anxiety-related behaviors), as well as in Wistar (WIS) rats of both sexes. Furthermore, we explored possible neurochemical mechanisms involved. In addition, we investigated whether habituation in the hot-plate apparatus could modify the hypoalgesic phenotype of SHR. Male and female LEW, SHR, and WIS rats were tested immediately before and 2 min after a 3-min swim in 15 degrees C water. The swim-stress induced analgesia in LEW and WIS, but not in SHR male rats. The same stressor induced analgesia in females of all three strains. In WIS female rats, the stress-induced analgesia (SIA) seems to involve, at least partially, a nonopioid N-methyl-d-aspartate (NMDA) analgesic system. Moreover, five brief exposures (90 s; 10-min intertrial interval) to the unheated hot-plate apparatus completely abolished the differences in basal hot-plate latencies observed in SHR compared with LEW and WIS strains. The present results demonstrate genetic and gender differences in nociceptive sensitivity and in the activation of endogenous analgesic systems in rats and highlight the influence of emotional reactivity. The SHR's hypoalgesic phenotype seems to involve central cognitive processes. Therefore, the LEW and SHR inbred strains may provide an important tool for study of the molecular bases underlying nociception and its modulation and the relationship with emotional/attentional processes.

Analgesia↗

The control of circadian rhythms and the levels of vasoactive intestinal peptide mRNA in the suprachiasmatic nucleus are altered in spontaneously hypertensive rats.

Vasoactive intestinal peptide (VIP) has been localized within the suprachiasmatic nucleus of the hypothalamus (SCN) and appears to play an important role in the entrainment of circadian rhythms with the light-dark (LD) cycle. The spontaneously hypertensive rat (SHR), an inbred strain used extensively in research on primary hypertension, has significantly more VIP mRNA in its brain than normotensive Wistar-Kyoto control (WKY) rats. Because VIP levels are abnormally high in SHR rats the present study examined whether the mechanisms controlling circadian rhythms are also altered in SHR rats. When entrained to a 24 h LD cycle, SHR rats began their wheel-running rhythm approximately 1.5 h earlier than WKY controls. SHR rats re-entrained to a phase delay in the LD cycle more slowly than did WKY rats, but tended to re-entrain to a phase advance more rapidly. The free-running period of SHR rats in both constant light and constant dark was significantly shorter than that of WKY rats. In SHR rats, phase delays produced by 1-h pulses of light were less than one-half the magnitude of the delays seen in WKY rats; however, the phase advances were nearly twice that of WKY rats. Using in situ hybridization, the SCN levels of mRNA encoding VIP were found to be significantly greater in SHR rats, but the mRNA levels of another peptide important for entrainment, gastrin releasing peptide, did not differ between SHR and WKY rats. These data indicate that the mechanisms controlling circadian rhythms in SHR rats differ significantly from those controlling rhythms in WKY rats and that VIP mRNA is significantly elevated within the SCN of SHR rats. The role of VIP in the entrainment of circadian rhythms is discussed.

Animals↗

Interstrain aggression in hypertensive and/or hyperactive rats: SHR, WKY, WKHA, WKHT.

Four inbred rat strains, all derived from Wistar-Kyoto (WKY) rats, express hypertension and hyperactivity in all combinations: SHRs have both traits, WKYs have neither, WKHAs are hyperactive/normotensive, and WKHTs are hypertensive/normoactive. Rats of the four strains were tested for aggression, at one time only, by pairing subjects of same sex, same age, but different strain, in a novel arena, i.e., on neutral ground, for three consecutive, 5-min observation periods. Total aggression scores were highest in females, highest in the first 5-min period, and lower at 7-9 months than at younger ages. Allogrooming was more frequently observed than other types of aggression, such as attacks, mounts, aggressive postures, and blocks. Allogrooming scores were significantly elevated in the hypertensive strains, especially WKHT, and very low in the hyperactive strains, especially WKHA. The other forms of aggression were significantly higher in females with hyperactivity. It was concluded that interstrain aggression, as seen in SHRs and WKYs, is differentially expressed by two new strains genetically derived from them. Furthermore, no one strain among these four expresses all components of the behavioral responses seen in this form of aggression.

Aggression↗

Intestinal metaplasia induced by X-irradiation in different strains of rats.

Attempts were made to examine strain differences in the susceptibility of rats to intestinal metaplasia induced by X-irradiation. The gastric regions of 4 inbred male rats (SHR, F344, WKY, and LEW strains) in 5-week-old and 2 random bred male rats (SD, and WIS strains) were irradiated with a total dose of 20 Gy X-ray given in two equal fractions separated by three days. Upon sacrifice at 6 months after the last irradiation, the number of intestinal metaplastic crypts with positive reaction to alkaline phosphatase (ALP) appeared highest in the SHR and lowest in the WIS rats. Morphologically, the number of crypts with intestinal metaplasia in whole glandular stomachs of SHR, WIS, F344, and SD rats were higher than those in WKY and LEW rats. In the pyloric gland, it was highest in WIS rats, while in the fundic gland it was highest in SHR rats. The results show that the appearance and location of intestinal metaplasia by X-irradiation are greatly influenced by the strain of the rat.

Alkaline Phosphatase↗

Locus coeruleus electrophysiological activity and responsivity to corticotropin-releasing factor in inbred hypertensive and normotensive rats.

The spontaneously hypertensive rat (SHR) and its normotensive progenitor, the Wistar-Kyoto rat (WKY), have been shown to be differentially responsive to the behavioral and endocrine effects of both stress and corticotropin-releasing factor (CRF), both of which increase locus coeruleus (LC) electrophysiological activity. However, the effect of central administration of CRF in these rat strains has yet to be examined. In the present studies, LC electrophysiological responsivity to intracerebroventricular infusions of CRF was assessed in SHR, an inbred strain of WKY rats (the WKY[LJ] rat), and an outbred normotensive rat strain, Sprague-Dawley (SD) rats. Spontaneous LC discharge rate, mean arterial blood pressure and heart rate were also examined. LC activity was increased to the same extent in the three rat strains in response to a 3 microg dose of CRF. However, WKY(LJ) rats showed an exaggerated LC in response to a 1 microg dose of CRF in comparison to the other rat strains tested at this dose. Spontaneous discharge rates of individual LC neurons were lower in both SHR and WKY[LJ] rats than in SD rats. Further, the variability of the discharge rates of LC neurons was greater in WKY[LJ] rats than in the other two strains. These results indicate that the WKY[LJ] rat may provide a useful model for assessing the role of sensitivity to CRF in stress responsiveness.

Animals↗

Two new inbred rat strains derived from SHR: WKHA, hyperactive, and WKHT, hypertensive, rats.

Two new strains of inbred rats have been developed. One, WKHA, exhibits hyperactivity, and the other, WKHT, exhibits hypertension. Both of these traits are expressed in the SHR. By crossing spontaneously hypertensive rats (SHRs) with Wistar-Kyoto (WKY) controls, followed by recombinant selected inbreeding, we succeeded in genetically separating the hyperactivity from the hypertension in two new strains. Longitudinal studies indicate a persistence of hypertension without hyperactivity in WKHTs, and hyperactivity without hypertension in WKHAs, over at least 1 year. Ventricular enlargement, another characteristic of SHRs, was observed in adult WKHTs after the onset of hypertension; however, ventricles were already enlarged in normotensive WKHAs at 6 wk. The emergent behavioral profile of WKHAs indicates that they retain the hyperactivity trait and hyperreactivity to stress, and not some of the other behaviors of SHRs, such as poor habituation. Studies in WKHTs suggest that they are an improvement over SHRs as a model of genetic hypertension as they lack some prominent behavioral abnormalities. Nevertheless, the four genetically related strains (WKHA, WKHT, SHR, and WKY), used together, are considered most appropriate for seeking correlations of biological differences with either hypertension or hyperactivity.

Activity Cycles↗

Creation of a strain of genetically obese-hypertensive rats.

A strain of genetically obese-hypertensive rats (SHR-fa/fa) was created by transferring the fatty/fa gene of hyperlipaemic obese non-inbred rats into the genome of an SHR inbred strain by five successive crossings of SHR-fa+ brother-sister matings. SHR-fa/fa rats were heavier than their SHR littermates. They showed a severe hypertension, their systolic arterial blood pressure being higher than that previously found in genetically hypertensive rats. Their blood glucose content was not significantly different from that of their SHR littermates but their plasma triglycerides were increased by more than 500 per cent. While obesity and hypertension occurred from the 5th week following the rat's birth, the increase in blood triglycerides was manifest earlier.

Animals↗

Influence of hypertension on MAC of halothane in rats.

This study was designed to assess the relationship between MAC and hypertension. To this purpose, MAC of halothane was determined in fully inbred spontaneously hypertensive rats (SHR) and Wistar Kyoto rats (WKY). Because MAC determination was performed in animals whose lungs were mechanically ventilated, the adequacy of the ventilation was initially established in 20 rats equally divided into SHR and WKY, and instrumented with catheters in the abdominal aorta. Subsequently, MAC of halothane was determined in 40 rats equally divided into SHR and WKY, including those instrumented. There were no differences in MAC of halothane between SHR (n = 20) and WKY (n = 20) (1.08 +/- 0.02% vs. 1.11 +/- 0.02%). Subgroup analysis indicated that MAC of halothane was not affected by the presence of an arterial catheter in the abdominal aorta (SHR 1.09 +/- 0.06% vs. 1.08 +/- 0.02%; WKY 1.15 +/- 0.04% vs. 1.08 +/- 0.02%). The authors' data provide experimental evidence that MAC is not affected by either chronic hypertension or limited instrumentation.

Anesthesia, Inhalation↗

[Characterization of inbred strains of rats by microsatellite analysis].

Microsatellite analysis was applied to identify the inbred rat strains LEW, SHR and WKY. Of a set of seven commercially available primer pairs three pairs were used individually and two times two in duplex polymerase chain reactions (PCR). The products were analyzed in ethidium bromide stained agarose gels. The resulting banding patterns clearly demonstrated the homogeneity within strains and the differences between strains.

Animals↗

Effect of perindopril on the immune arterial wall remodeling in the rat model of arterial graft rejection.

A model of arterial graft arteriosclerosis is described in which arterial wall immune injury was induced by grafting segments of abdominal aorta between two histologically incompatible strains of rats. The effect of hypertension and its treatment with the angiotensin-converting enzyme (ACE) inhibitor perindopril was tested using inbred spontaneously hypertensive rats (SHR) and their normotensive controls (Wistar-Kyoto [WKY]). Each of the grafted hypertensive and normotensive rats was randomly allocated to placebo treatment (10 SHR, 10 WKY) and perindopril treatment (2 mg/kg/day) (10 SHR, 10 WKY). The immune injury and the arterial wall response were quantified morphometrically 2 months after the grafting using specific stains for collagen, elastin, and nuclei. Hypertension was associated with a significant increase in intimal thickness. Treatment with perindopril greatly reduced intimal proliferation, decreasing the intimal thickness and the collagen content within the intimal layer. In contrast, hypertension and ACE inhibition had little effect on the arterial wall injury. We conclude that hypertension and its treatment with perindopril significantly affect graft arteriosclerosis. These effects seem to be independent of their effects on arterial wall injury, but not independent of blood pressure.

Analysis of Variance↗

Behavioral reactivity in spontaneously hypertensive rats.

Spontaneously hypertensive rats of the Okamoto strain (SHR) were compared with inbred normotensive rats of the Wistar-Kyoto strain (WKY) and with normally bred Wistar rats (NT) in tests on the audiogenic immobility reaction (freezing), open-field behavior in a dark and an enlightened arena respectively, auditory startle response and male sexual behavior. Compared to the WKYs the SHRs showed increased locomotion and rearing in the open-field situations, reduced startle response and shortened immobility reaction. The SHRs differed in the same way from the NT rats with the exception for motor activity in the dark arena, where no differences were observed. The WKY rats showed less motor activity than the NT animals. Both SH and WKY rats showed shorter latency time for ejaculation than the NT rats. The characteristics of the behavior patterns displayed by the SH rats were interpreted as indicating a reduced propensity for fear reactions in this strain of rats compared to the WKY and NT strains used in the present study.

Acoustic Stimulation↗

Enhanced vascular neuropeptide Y-immunoreactive innervation in two hypertensive rat strains.

Considerable evidence indicates an enhanced sympathetic innervation of resistance arterial smooth muscle in the spontaneously hypertensive rat (SHR) compared with its normotensive Wistar-Kyoto (WKY) control. In addition to sympathetic hyperinnervation, an increased vascular innervation by neuropeptide Y-containing fibers, which are known to exert a vasoconstrictive and trophic action in vascular smooth muscle, has also been described. In addition to genetic hypertension, the SHR expresses hyperactive behavior and hyperreactivity to stress. To determine whether the enhanced neuropeptide Y-immunoreactive vascular innervation is specifically associated with hypertension and/or these behavioral abnormalities, four genetically related, inbred rat strains were used: SHR, which are hypertensive and hyperactive; WKY rats, which are neither hypertensive nor hyperactive; WKHA, which are hyperactive but normotensive; and WKHT, which are hypertensive but not hyperactive. The present study demonstrated that whereas the hypertensive strains (SHR and WKHT) exhibited smooth muscle hypertrophy in both superior mesenteric and caudal arteries in adulthood (10 months) but not at a prehypertensive age (1 month), both arteries exhibited significantly increased neuropeptide Y-immunoreactive innervation at both ages. It was further observed that the mesenteric artery in WKHA, a normotensive strain, had significant smooth muscle hypertrophy at 10 months; however, neuropeptide Y innervation in this artery was no different from that of WKY controls. The findings indicate that there is a cosegregation of neuropeptide Y hyperinnervation of the vasculature with the hypertensive phenotype, evident as early as 1 month of life in the hypertensive strains, and this should be considered further as a contributory factor in genetic hypertension.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Renal dopamine-1 receptors in hypertensive inbred rat strains with and without hyperactivity.

Renal dopamine-1 (DA-1) receptors are involved in the regulation of sodium transport in several nephron segments, including the proximal convoluted tubule (PCT). DA-1 receptors in the PCT and cortical collecting duct of normotensive rats are linked to the stimulation of adenylyl cyclase (AC). We have reported a defect in the DA-1 receptor/AC coupling in the PCT of the spontaneously hypertensive rat (SHR) of the Okamoto-Aoki strain. Hyperactivity and hypertension are both expressed in the SHR. To determine if the DA-1 receptor coupling defect is associated with hyperactivity or hypertension, we studied the DA-1 receptor in the PCT of two new inbred rat strains derived from the SHR: the hyperactive WKHA and the hypertensive WKHT rat. Tail-cuff blood pressures taken at 4 weeks indicated that WKHT rats were not hypertensive (86 +/- 3 mm Hg, n = 6), whereas at 12 weeks systolic pressures in both SHR and WKHT rats exceeded 150 mm Hg. Hyperactivity, however, was noted in WKHA rats even at this early age. Basal AC activity was similar in WKHA and WKHT PCT in either age group. In the older rats, the DA-1 agonist fenoldopam (10(-7) mol/L) stimulated AC activity in WKHA (70.6 +/- 16.1 fmol per 3 mm PCT per 20 minutes, n = 3) but not in WKHT PCT (43.3 +/- 5.3 fmol per 3 mm PCT per 20 minutes, n = 4). Gpp(NH)p (10(-5) mol/L), a nonhydrolyzable GTP analogue, stimulated AC activity to a similar extent in WKHA and WKHT PCT.(ABSTRACT TRUNCATED AT 250 WORDS)

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Mutation of low affinity nerve growth factor receptor gene is associated with the hypertensive phenotype in spontaneously hypertensive inbred rat strains.

We previously reported a missense mutation in the low affinity nerve growth factor receptor (LNGFR) gene of spontaneously hypertensive rats (SHR), proposing this gene as a promising candidate in genetic hypertension. In this study we provide further support for implicating this gene in genetic hypertension using two new inbred strains, WKHT and WKHA rats. These strains originated from crossbreeding SHR rats with normotensive Wistar-Kyoto rats (WKY): WKHT rats are hypertensive but not hyperactive, and WKHA rats are hyperactive but not hypertensive. Nucleotide sequence analysis of the LNGFR gene revealed that WKHT has the same mutation as SHR, whereas WKHA has the normal sequence, as seen in WKY. These results support our original hypothesis that the mutated LNGFR gene is linked to hypertension, since the mutation had co-segregated with the hypertensive trait, and not hyperactivity trait of SHR.

Amino Acid Sequence↗

Circadian activity rhythms in SHR and WKY rats: strain differences and effects of clonidine.

The spontaneously hypertensive (SHR) and normotensive Wistar-Kyoto (WKY) inbred rat strains have been subjected to extensive behavioral and neurochemical characterization. The present study examined free-running circadian activity rhythms in these two strains. Because previous studies indicated that free-running rhythms are altered during chronic clonidine administration, and that SHRs and WKYs may respond differentially to clonidine, the effects of this agent on rhythmicity were compared in the two strains. SHRs were hyperactive and showed shorter free-running periods than did WKYs. Clonidine administration altered free-running rhythms similarly in the two strains, but reduced activity levels only in the relatively hyperactive SHRs. These results are consistent with the hypothesis that central noradrenergic systems influence circadian locomotor activity rhythms.

Animals↗

Modification of stroke susceptibility by genotype-dependent maternal influences.

The influence of the prenatal and postnatal maternal environment on stroke susceptibility was evaluated by reciprocally crossing the spontaneously hypertensive (SHR) and the Dahl salt-sensitive (SS/Jr) inbred rat strains to produce reciprocal F1 hybrids that were nurtured, respectively, during prenatal and postnatal life by SHR or SS/Jr mothers. Following placement on a high-salt diet containing 8% NaCl at 35 days of age, F1 rats reared by SHR mothers had shorter survival times and were more likely to die with cerebral hemorrhage than F1s reared by SS/Jrs. Across reciprocal F1 female groups, enhanced susceptibility to stroke was associated with greater elevations of systolic blood pressure, but this association was not seen across reciprocal F1 male groups. There was also an association between blood pressure and stroke within each F1/gender subgroup: Rats eventually suffering strokes developed higher blood pressure after placement on the high-salt diet than rats that did not suffer stroke. Lower day 35 body weights (before exposure to the high-salt diet) were associated with greater likelihood of stroke both across the reciprocal F1 groups, and within three of the four F1/gender subgroups. The differences in stroke susceptibility between the reciprocal F1 groupings may be due to systematic differences in the prenatal and/or postnatal environments of SHR and SS/Jr mothers and may be mediated by variations in the nutritive capacity of the two inbred mothers.

Animals↗