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A molecular map of G protein alpha chains in microdissected rat nephron segments.

Membrane-associated guanine nucleotide binding proteins regulate many receptor-mediated signals. Heterogeneity of biochemical and functional properties in nephron segments could be due to differences in G protein expression. To ascertain whether such heterogeneity of G proteins is present in various nephron segments, this study examines the distribution and relative abundance of G protein alpha chains in microdissected medullary thick ascending limb, cortical collecting tubules, outer medullary collecting tubules, proximal inner medullary tubules, and distal inner medullary tubules. Reverse transcription and polymerase chain reactions were employed using oligonucleotides encoding highly conserved regions of all known alpha chains. The cDNA was sequenced for alpha chain identification. The alpha i2 versus alpha s distribution was different in the outer medullary collecting tubules, when compared with the medullary thick ascending limb (P < 0.001) or the cortical collecting tubule, the proximal inner medullary tubules, and the distal inner medullary tubules (P < 0.05). These latter four segments did not significantly differ from each other. A similar analysis was applied to the frequently used line of kidney cells, LLC-PK1, whose exact cellular origin remains unclear. Interestingly, we detected both alpha i2 and alpha i3, while only alpha i2 was detected in the rat distal nephron. No alpha o or alpha z reverse transcription PCR products were detected. In contrast alpha 11 and alpha 14 members of the more recently described alpha q family were detected in the outer medullary collecting tubules and the proximal inner medullary tubules, respectively. We conclude that the majority of nephron segments have a relatively constant distribution of G protein alpha chains.

Animals↗

Quantification of Aquaporin-CHIP water channel protein in microdissected renal tubules by fluorescence-based ELISA.

Several transporters have been localized along the nephron by physiological methods or immunocytochemistry. However, the actual abundance of these molecules has not been established. To accomplish this goal, we have developed a fluorescence-based ELISA method and have used it to quantitate Aquaporin-CHIP (AQP-CHIP) water channel protein in rat kidney tubules. Microdissected tubules (2 mm/sample, permeabilized with 0.5% Triton X-100) or purified AQP-CHIP standards (0-200 fmol) were utilized in a fluorescence ELISA protocol after covalent immobilization on epoxy-activated Sepharose beads. The lower limit of detection was 2.4 fmol of AQP-CHIP. Preabsorption with excess purified AQP-CHIP or use of nonimmune serum eliminated the signal. In proximal segments, the measured AQP-CHIP was linearly related to tubule length (1-10 mm). The measured AQP-CHIP was (mean +/- SE, fmol/mm): S-1 proximal, 10.8 +/- 2.1; S-2, 10.0 +/- 2.3; S-3, 21.3 +/- 3.1; type 1 thin descending limb (DTL), 12.9 +/- 4.6; type 2 DTL, 86.5 +/- 19.5; type 3 DTL, 43.0 +/- 11.2. In thin ascending limbs, thick ascending limbs, distal convoluted tubules, connecting tubules, and collecting ducts, the AQP-CHIP signal was indistinguishable from zero. Based on the unit water conductance of single CHIP molecules, our calculations show that the content of AQP-CHIP is sufficient to explain water permeability measured in isolated proximal tubules and DTL segments.

Animals↗

Cochlear and vestibular lesions in capsular otosclerosis as seen in microdissection.

In 24 temporal bones from patients with otosclerosis prepared by the method of microdissection and surface preparations, otosclerotic foci could be clearly seen during removal of the otic capsule. The state of activity of each focus was estimated on the basis of its consistency and vascularity. Small anterior foci constituted the most common form of involvement of the otic capsule. All were judged to be inactive, and none of them appeared to have caused obvious sensorineural degeneration. No cases of "pure cochlear otosclerosis" were seen. Sensorineural degeneration was associated with large anterior foci which reached the upper basal turn. One specimen displayed a circumscribed sensorineural degeneration in the upper basal turn, with an almost exact correspondence between the location and extent of the cochlear lesion and the site of invasion by the otosclerotic process in the bone and endosteum bordering on scala media and scala tympani. It is postulated that a toxic factor had diffused from the focus and acted directly on the organ of Corti. When multiple foci were present they were usually poorly defined. The otosclerotic process involved the round window, with new lamellar bone formation in the scala tympant of the lower half of the basal turn. The most extensive sensorineural degeneration in the entire material was seen in this group. One specimen also had severe cochlear hydrops. In three specimens large shunts were observed to connect the otosclerotic foci with the cochlear vasculature, which was severely dilated. Where otosclerosis involved the endosteum of the scala tympani, loss of vessels was observed. One specimum with extensive active capsular otosclerosis had severe sensorineural degeneration of the vestibular system. Vestibular pathology in fenestrated ears is also described. In a specimen from a patient with no caloric reaction, numerous hair cells were present in the macular organs.

Aged↗

In situ localization of follicular lymphoma: description and analysis by laser capture microdissection.

From 1992 to 2000, we identified 23 lymph node biopsies with focal germinal centers (GCs) containing centrocytes staining strongly for bcl-2 protein, whereas most of the remaining lymph node showed bcl-2-negative follicular hyperplasia. We propose the designation in situ localization of follicular lymphoma (FL) for this phenomenon. In 2 additional cases, bcl-2(+) follicles with features of in situ FL were identified in association with other low-grade B-cell lymphomas. To investigate the clonality of the bcl-2(+) follicles, we performed laser capture microdissection of bcl-2(+) and bcl-2 follicles from the same lymph node in 5 cases, and analyzed them in parallel by polymerase chain reaction (PCR) amplification of immunoglobulin heavy chain (IgH) genes. In 4 of 5 cases the bcl-2(+) follicles contained monoclonal IgH gene rearrangements, whereas the bcl-2(-) GCs exhibited a polyclonal ladder. A BCL2/JH gene rearrangement was detected in 6 of 14 (43%) evaluable cases. There were 5 patients with synchronous evidence of FL at another site. There were 13 patients who, without a prior diagnosis of FL, had clinical follow-up; one developed FL in an adjacent lymph node within one year, and 2 manifested FL at 13 and 72 months, respectively. There are 10 patients who have not yet shown other evidence of FL. These results suggest that at least close to half of these cases (8/18; 44%) represent homing to and early colonization of reactive GCs by FL. Other cases might represent FL at the earliest stage of development, or a preneoplastic event, requiring a second hit for neoplastic transformation. These findings provide insight into the pathophysiology of early FL, and illustrate the utility of immunohistochemistry for early diagnosis.

Adult↗

High frequency oscillatory ventilation suppresses inflammatory response in lung tissue and microdissected alveolar macrophages in surfactant depleted piglets.

The impact of high frequency oscillatory ventilation (HFOV) compared with intermittent mandatory ventilation (IMV) on oxygenation and pulmonary inflammatory response was studied in a surfactant depleted piglet model. After establishment of lung injury by bronchoalveolar lavage, piglets either received HFOV (n =5) or IMV (control; n = 5) for eight hours. PaO(2) was higher and mean pulmonary arterial pressure (MPAP) was lower with HFOV (HFOV versus control, mean +/- SEM; endpoint PaO(2): 252 +/- 73 versus 68 +/- 8.4 mm Hg; p < 0.001; MPAP: 22 +/- 2.3 versus 34 +/- 2.5 mm Hg; p < 0.01). mRNA expression of interleukin (IL)-1 beta, IL-6, IL-8, IL-10, TGF-beta 1, Endothelin-1, and adhesion molecules (E-selectin, P-selectin, ICAM-1) in lung tissue was quantified by real time PCR normalized to beta-actin and hypoxanthine-guanine-phosphoribosyl-transferase (HPRT). mRNA expression of all cytokines and adhesion molecules/HPRT was higher in controls (e.g.: HFOV versus control, mean +/- SEM; IL-1 beta/HPRT: 1.6 +/- 0.3 versus 23.1 +/- 8.6 relative units (RU), p < 0.001; IL-8/HPRT: 8.5 +/- 2.0 versus 63.5 +/- 15.2 RU, p < 0.001). IL-8/HPRT gene expression was quantified in microdissected single cells. With HFOV, IL-8 gene expression was highly reduced in alveolar macrophages: 10 +/- 3.4 copies IL-8 mRNA/copy HPRT mRNA versus 356 +/- 142; p < 0.05 (bronchiolar epithelial cells: 33 +/- 16 versus 208 +/- 108; alveolar septum: 2.1 +/- 1.3 versus 26 +/- 11; bronchiolar smooth muscle cells: 1.3 +/- 0.3 versus 2.8 +/- 1.0; vascular smooth muscle cells: 0.7 +/- 0.3 versus 1.1 +/- 0.4). In conclusion, HFOV improved oxygenation, reduced pulmonary arterial pressure and attenuated pulmonary inflammatory response.

Animals↗

Variable effects of testosterone on dopamine activity in several microdissected regions in the preoptic area and medial basal hypothalamus.

We have observed previously that systemic treatments or local implants of testosterone (T) suppress dopamine (DA) turnover in the preoptic area-anterior hypothalamus of male rats. In the present study, we sought to identify discrete regions innervated by the incertohypothalamic DA system and the tuberoinfundibular DA system which respond to T replacement. Adult male rats were orchidectomized and immediately treated with either empty (controls) or T-containing Silastic implants. After 14 days, animals from each group were treated with alpha-methylparatyrosine and killed 0, 45, and 90 min later for analysis of DA turnover in eight microdissected brain regions. The T implants produced an increase in serum T and 5 alpha-dihydrotestosterone and reduced serum LH to concentrations observed in intact male rats without affecting serum PRL levels. Serum levels of T within the physiological range caused a profound decrease in the DA turnover rate in the medical preoptic nuclei and anterior hypothalamic nuclei without influencing DA activity in the periventricular nuclei, the site of perikarya for these DA projections. In contrast, DA turnover in the median eminence was increased 3-fold by T treatment, while DA activity in the arcuate nuclei, the locus of cell bodies of the tuberoinfundibular DA system, was not affected. These studies reveal disparate effects of T on the terminal fields of the two DA systems. While augmentation in the median eminence DA activity may participate in the negative feedback effects of T on gonadotropin secretion, the T-induced suppression of DA turnover in the medial preoptic nuclei and anterior hypothalamic nuclei may well be involved in androgen-dependent aggression and copulatory behavior.

Animals↗

Neuropeptide Y levels in microdissected regions of the hypothalamus and in vitro release in response to KCl and prostaglandin E2: effects of castration.

Intracerebroventricular administration of neuropeptide Y (NPY) has been shown to modify LH secretion, with the direction of the response dependent on the steroid background. To study further the role of gonadal steroids in the regulation of NPY secretion, the basal and KCl-evoked release of NPY from the medial basal hypothalamus (MBH) of intact and castrated male rats was assessed twice with the use of an in vitro incubation system. In each experiment, the amounts of NPY released in response to a 15-min pulse of KCl (45 mM) were significantly smaller from the MBH of castrated rats than of intact rats (P less than 0.05). Next, to assess the possible effects of prostaglandin E2 (PGE2), the MBH were exposed in a similar manner to two 15-min pulses, 30 min apart, of 0.568 and 56.8 mumol PGE2. Unlike KCl, PGE2 failed to stimulate NPY release from the MBH of either intact or castrated rats. However, a similar 56.8 mumol concentration of PGE2 was effective in stimulating the release of LHRH. We next examined the effects of castration on NPY levels in several microdissected regions of the hypothalamus. Whereas NPY concentrations were unchanged in the medial preoptic area, paraventricular nucleus and dorsomedial nucleus, NPY levels were significantly decreased in the median eminence, arcuate nucleus, and ventromedial nucleus 2 weeks after castration. These studies show that KCl can stimulate NPY release from the MBH in vitro, like that of LHRH, the KCl-induced NPY response is significantly smaller from the MBH of castrated than intact males, castration can significantly reduce the levels of NPY in the median eminence, arcuate nucleus, and ventromedial nucleus, thereby suggesting that testicular secretions may modulate NPY levels and release from the MBH, and because PGE2 stimulated the release of LHRH but not of NPY, separate regulatory neural events may underlie the secretion of these two neuropeptides.

Animals↗

Effects of estradiol on the diurnal rhythm of serotonin activity in microdissected brain areas of ovariectomized rats.

The purpose of these studies was to determine whether diurnal rhythms in serotonin (5HT) activity are detectable in individual hypothalamic nuclei of ovariectomized rats and whether estradiol induces specific rhythms of 5HT which may be necessary to cyclic release of LH and/or PRL. Young (3- to 4-month old) rats were bilaterally ovariectomized and 7 days later half the animals received Silastic estradiol capsules. Two days later groups were again divided: half the animals in each group were killed at 0800, 1200, 1800, and 2400 h. The remaining animals received pargyline (75 mg/kg body weight, ip) at these times and were killed 10 min later. The median eminence (ME), suprachiasmatic nucleus (SCN), medial preoptic area (MPN), arcuate nucleus (AN), and globus pallidus (GP) were microdissected and assayed for 5HT by HPLC using electrochemical detection. A diurnal rhythm in 5HT turnover was found in the SCN, MPN, and AN of ovariectomized rats. 5HT turnover in these areas was significantly higher during the light hours (0800, 1200, and 1800 h) compared to the dark phase (2400 h). The ME and GP of ovariectomized rats did not exhibit a diurnal rhythm in 5HT activity. Exposure to estrogen altered the pattern of 5HT activity in all hypothalamic areas examined. In the ME, treatment with estradiol increased 5HT turnover at 1200 h, just before the predicted LH and PRL surge, and suppressed activity at all other times. In the SCN, estradiol reversed the 5HT rhythm: turnover was low during the light hours and high during the dark. In the AN and MPN, estradiol treatment increased 5HT activity and abolished the diurnal rhythm. 5HT activity in the GP was not altered by exposure to estrogen. We conclude from these data that specific brain nuclei exhibit diurnal rhythms in 5HT turnover and that the patterns of 5HT activity in specific hypothalamic nuclei exhibit individual and unique responses to the presence of estrogen. These data suggest that the estradiol-induced diurnal pattern of 5HT activity may be necessary for the induction of cyclic release of LH and/or PRL.

Animals↗

Age-related changes in the diurnal rhythm of serotonin turnover in microdissected brain areas of estradiol-treated ovariectomized rats.

The purpose of this study was to determine whether 1) a diurnal rhythm in serotonin turnover is present in specific hypothalamic nuclei of middle-aged ovariectomized rats and 2) in middle-aged animals exposure to estrogen can induce the pattern of serotonin dynamics which appears necessary for the occurrence of an LH surge in young rats. Young (3-4 month old) and middle-aged (8-10 month old) rats which demonstrated estrous cyclicity were bilaterally ovariectomized. Seven days later half of the young and middle-aged animals received Silastic estradiol capsules. On day 9 post ovariectomy the groups were again divided; half of the rats in each group were killed at 0800, 1200, 1800, and 2400 h. Remaining animals were treated with pargyline (75 mg/kg BW, ip) at these times and were killed 10 min later, and the following brain areas were microdissected and analyzed for serotonin (5HT) and 5-hydroxyindole acetic acid: median eminence (ME), suprachiasmatic nucleus (SCN), medial preoptic nucleus (MPN), arcuate nucleus (AN), and globus pallidus. In young ovariectomized rats the SCN, MPN, and AN exhibited a diurnal rhythm in 5HT activity which was high during the light hours and low during the dark. The diurnal rhythm could not be detected in any hypothalamic nuclei of ovariectomized middle-aged animals. The loss in the circadian component of 5HT activity is not due to a loss in serotonergic function, since overall turnover rates were not reduced compared to young animals. Estrogen treatment modified the diurnal pattern of 5HT activity in the SCN, MPN, and AN in young rats but had no effect in the middle-aged rats. In young rats, estrogen induced a transitory rise in ME-5HT turnover at 1200 h, just before the expected onset of the LH surge. In middle-aged animals the increase in ME-5HT turnover did not occur until 1800 h and correlates with a delay in the initiation of the estradiol-induced LH surge. We conclude that: 1) there is a loss in the rhythm of 5HT activity in middle-aged rats and 2) the diurnal rhythmicity of 5HT turnover may be necessary for the maintenance of normal cyclic release of LH.

Aging↗

Sex differences in androgen receptors and aromatase activity in microdissected regions of the rat brain.

Males are generally more responsive than females to the behavioral and neuroendocrine actions of androgens. The present experiments were performed to determine whether these differences may result from sex differences in the number of androgen receptors (AR) in specific brain areas. For this reason, AR binding was compared in both cytosol (ARc) and cell nuclear KCl extracts (ARn) from microdissected brain regions of gonadectomized male and female rats treated with doses of testosterone (T) that produced equivalent physiological circulating androgen levels. In addition, microsomal aromatase activity was measured as a biochemical index of tissue responsiveness to T, since estrogen formation in certain brain areas is regulated by androgen. One week after exogenous T administration, males exhibited significantly higher levels of ARn than females in the bed nucleus of the stria terminalis, periventricular preoptic area, and ventromedial nucleus. Males also had significantly higher aromatase levels in these same areas plus the medial preoptic nucleus and anterior hypothalamus. There were no significant differences in ARn concentrations in eight other nuclei that were examined for significant sex differences in ARc levels observed under these experimental conditions. When ARc levels were compared in untreated gonadectomized male and female rats, males had greater levels of ARc in the bed nucleus of the stria terminalis only, indicating that new receptor synthesis may be responsible for the sex differences observed in T-treated rats. These results suggest that sex differences in neural responsiveness to androgens may be due in part to sex differences in ARn occupation in specific brain regions.

Animals↗

Oxytocin content of microdissected areas of rat hypothalamus.

Oxytocin content has been measured by radioimmunoassay in microdissected hypothalamic nuclei. Equal concentrations of oxytocin were found in the supraoptic and the paraventricular nuclei, indicating that both are major sources of the hormone. The concentration of oxytocin in the median eminence was more than three times that in either the supraoptic or the paraventricular nuclei, and significant amounts of oxytocin were also found in the arcuate nucleus and in tow anterior hypothalamic nuclei.

Animals↗

Analysis of homogeneous populations of anterior pituitary folliculostellate cells by laser capture microdissection and reverse transcription-polymerase chain reaction.

Pituitary folliculostellate (FS) cells are usually located between the secretory cells in the anterior pituitary, and they produce many peptides that exert a paracrine effect on hormone-producing pituitary cells. Previous approaches have been unsuccessful in obtaining homogeneous populations of FS cells. We used a combination of immunostaining with S100 protein followed by laser capture microdissection (Immuno-LCM) to obtain purified populations of rat FS cells. These cells were analyzed along with a mouse FS cell line (TtT/GF) by RT-PCR for gene expression. RT-PCR analyses showed that both FS cell populations expressed the mRNAs for glial fibrillary acidic protein, S100 protein, transforming growth factor-beta1 (TGFbeta1), TGFbeta receptor, interleukin-6, leptin, leptin receptor, pituitary adenylate cyclase-activating polypeptide (PACAP), and PACAP receptors. Both FS cell populations were negative for PRL, GH, and POMC, supporting the homogeneity of the rat FS cell population. TGFbeta1, but not PACAP-38, treatment stimulated cell proliferation in both FS cell populations. TGFbeta1 increased leptin, but not interleukin-6, mRNA expression in rat FS cells. However, TGFbeta1 inhibited leptin RNA expression in the TtT/GF cell line, as shown by RT-PCR and Northern blot analysis. These results indicate that 1) homogeneous populations of FS cells can be prepared by Immuno-LCM; 2) TGFbeta1 stimulates the proliferation of normal rat FS cells and the TtT/GF cell line; and 3) the effects of TGFbeta1 to stimulate leptin mRNA expression in rat FS cells but inhibit leptin mRNA expression in TtT/GF cells probably reflect alterations in signal transduction in the TtT/GF cell line.

Animals↗

Genome-wide screening of laser capture microdissected gastric signet-ring cell carcinomas.

Gastric signet-ring cell carcinoma comprises a distinct category of gastric cancers and has been reported to have poor prognosis. In an attempt to define genetic changes involved in the pathogenesis of this lesion in an in vivo state, we isolated signet-ring cell carcinoma cells from freshly fixed smears of tumor tissues of 7 primary gastric signet-ring cell carcinomas by laser capture microdissection and applied comparative genomic hybridization (CGH) to screen for DNA sequence copy number changes. Frequent chromosomal gains were detected on 2q, 5p, 7q, 14q and 20q, each in 6/7 cases, on 9q, 12q, 17q, and 19q, each in 5/7 cases, and on 18p in 4/7 cases. Frequent losses were observed on 6p and 17p, each in 5/7 cases, on 6q, and 21p, each in 4/7 cases, and on 3p, 8p and 8q, each in 3/7 cases. Losses on 6p have rarely been observed in conventional types of gastric carcinomas reported in the literature. These data provide the first evidence for the occurrence of specific genomic aberrations in gastric signet-ring cell carcinomas. Our observation of frequent losses on 6p chromosomal arm may provide novel abnormalities of potential significance in gastric signet-ring cell carcinomas, suggesting the involvement of genes residing in this region in the genesis of the disease.

Adenocarcinoma↗

Laser microdissection-based analysis of mRNA expression in human coronary arteries with intimal thickening.

Intimal thickening is an early phase of atherosclerosis characterized by differentiation of plaque smooth muscle cells (SMCs) from a contractile to a synthetic phenotype. We used laser microdissection (LMD) plus real-time RT-PCR to quantify mRNAs for calponin-1 and smoothelin, markers of the contractile phenotype, and for serum response factor (SRF), a regulator of SMC differentiation, in intimal and medial SMCs of human coronary arteries with intimal thickening. RNA expression was also analyzed by ISH and protein expression was detected by IHC. LMD plus RT-PCR found similar levels of SRF mRNA in intimal and medial SMCs, while medial mRNA levels for calponin-1 and smoothelin were higher. ISH confirmed that smoothelin mRNA levels in media exceeded those in intima, whereas SRF mRNA levels were similar at both sites. For calponin-1 and smoothelin, protein levels mirrored respective mRNA levels. By contrast, more medial than intimal SRF protein was present. Our results indicate that intimal SMCs exhibit a largely synthetic phenotype, perhaps reflecting lower intimal levels of SRF protein; ISH and LMD plus real-time RT-PCR provide comparable results; as a valuable alternative to ISH, LMD plus RT-PCR allows parallel measurement of several transcripts; and tissue gene expression studies must measure both protein and mRNA levels.

Biomarkers↗

Molecular analysis of complex tissues is facilitated by laser capture microdissection: critical role of upstream tissue processing.

Every tissue contains heterogeneous cell populations. Laser capture microdissection (LCM) facilitates cell isolation from complex tissues followed by molecular analysis. LCM entails placing a transparent film over a tissue section or a cytological sample, visualizing the cells microscopically, and selectively adhering the cells of interest to the film with a focused pulse from an infrared laser. The film with the procured cells is then removed from the original sample and placed directly into DNA, RNA, or protein-extraction buffer for processing. LCM has revolutionized molecular analysis of complex tissues because it combines the topographic precision of microscopy with the power of molecular genetics, genomics, and proteomics. However, the success of molecular analysis still depends on the experimental design and requires the understanding of each technical step involved in specimen preparation. This review attempts to rationalize and demystify the choice of various technical options in upstream tissue processing supporting global analytical strategies.

Animals↗

Unchanged glycolytic capacity in rat kidney under conditions of stimulated gluconeogenesis. Determination of phosphofructokinase and pyruvate kinase in microdissected nephron segments of fasted and acidotic animals.

The glycolytic capacity in rat kidney was studied under conditions of stimulated gluconeogenesis like 48 h starvation and 48 h acidosis induced by force-feeding with a NH4Cl/glucose solution. Rats fed ad libitum and force-fed with a glucose solution served as controls. The specific activities of the key enzymes phosphofructokinase and pyruvate kinase were determined in single segments of the nephron. The determinations were performed by microdissection of lyophilized tissue sections followed by enzymatic analysis, including oil well technique, enzymatic amplification, and fluorometric measurement. In the distal portion of the nephron of both fed and force-fed animals a 10-fold higher specific activity of phosphofructokinase and pyruvate kinase was found compared with the proximal portion, known as the site of renal gluconeogenesis. Starvation and acidosis altered neither the distribution pattern nor the specific activities of these enzymes. From these results it is concluded that renal glycolysis does not undergo alterations at the level of enzymatic activities in favour of renal gluconeogenesis, probably because of the separate localization of both pathways within the nephron.

Acidosis↗

Distribution of pyruvate kinase type L and M2 in microdissected periportal and perivenous rat liver tissue with different dietary states.

Pyruvate kinase type L and M2 activities were measured in microdissected periportal and perivenous liver tissue from rats in different dietary states. A specific antibody against pyruvate kinase type L was used to distinguish the two isoenzymes. Using separated cells it was found that the L-isoenzyme was essentially restricted to the parenchymal and the M2-isoenzyme to the non-parenchymal cells. Pyruvate kinase type L activity in the perivenous zone was about twice as high as in the periportal zone in both male and female fed rats. Starvation for 48 h led to a decrease of the overall activity and to a lower perivenous-periportal gradient. After refeeding for 48 h the overall activity and the gradient were increased to above the normal level. Pyruvate kinase type M2 was homogenously distributed within the liver acinus. After 48 h starvation no change in the overall activity nor in the zonal distribution was observed. Refed rats exhibited a slightly reduced overall activity. Since the hepatocytes contain the total regulatory L- but no M2-pyruvate kinase the heterogeneous distribution of the L-isoenzyme under different dietary states supports the model of metabolic zonation of liver parenchyma with glycolysis predominantly in the perivenous zone.

Animals↗

Effects of acute insulin deficiency on catecholamine and indoleamine content and catecholamine turnover in microdissected hypothalamic nuclei in streptozotocin-diabetic rats.

The effects of streptozotocin-induced diabetes on catecholamine and indoleamine concentrations and catecholamine turnover rates in individual microdissected hypothalamic nuclei known, or believed, to be involved in the control of neuroendocrine function, were examined in control, insulin-treated diabetic and acutely insulin-withdrawn diabetic female rats. Streptozotocin-induced diabetes and acute insulin deficiency were demonstrated to result in increased concentrations of epinephrine in the suprachiasmatic nucleus, decreased turnover of epinephrine in the arcuate nucleus and decreased turnover of dopamine in the ventromedial nucleus was found to be increased in the insulin-treated diabetic animals. These data indicate that experimental diabetes and acute insulin deficiency result in the rapid onset of detectable alterations in epinephrine and dopamine activity in specific hypothalamic nuclei. These diabetes-induced changes may cause, or contribute to, the development of secondary neuroendocrine abnormalities known to occur in the diabetic condition.

Amines↗