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Biomedical subjects

Aiko Yamauchi

Publications and source records attributed to Aiko Yamauchi.

14 recordsLinked to original sources

Soybean oil fat emulsion to prevent TPN-induced liver damage: possible molecular mechanisms and clinical implications.

Long-term total parenteral nutrition (TPN) is known to be associated with cholestasis and hepatic steatosis, which can be lethal in infants who cannot be fed orally. The present review focuses on the metabolic complications in the liver that may occur due to the excessive administration of fat-free TPN. We have recently developed an infant rat model of hepatic dysfunction and steatosis induced by overdose of fat-free TPN. In this model, plasma levels of liver enzymes in the fat-free TPN group were found to be significantly higher than in the other groups (i.e., the oral diet and fat-containing TPN groups). Pathological examination showed hepatomegaly and severe fatty changes without cholestasis in the liver of infant rats that received fat-free TPN. We clearly demonstrated that the addition of soybean oil emulsion to the TPN regimen prevented hepatic dysfunction and fatty changes. In the present review, we discuss the molecular mechanism of the hepatic dysfunction induced by fat-free TPN and the role of soybean oil fat emulsion in the TPN regimen. We also discuss the clinical implications of soybean oil-containing TPN solutions and point out the importance of including fat in the TPN regimen in order to prevent the hepatic abnormalities associated with the excessive administration of fat-free TPN.

Animals↗

Determination of lipophilicity by reversed-phase high-performance liquid chromatography. Influence of 1-octanol in the mobile phase.

Lipophilicity was evaluated using a novel RP-HPLC stationary phase (Discovery-RP-Amide-C16) with and without 1-octanol added to the mobile phase. A set of 46 drugs and flavonoids characterized by a broad structural diversity and a wide log Poct range (-0.69 to 5.70) was selected for this study. This set consists of neutral solutes and solutes with acidic or ampholytic functionalities which were maintained neutral at pH 2.5 or 4. In our conditions, the addition of 1-octanol in the mobile phase proved a key factor to derive a lipophilicity index log k(w) highly correlated with log Poct for all investigated solutes. 1-Octanol improved the correlation between log Poct and log k(w) mainly by influencing the retention behavior of the solutes with log Poct values below +3. This study brings additional evidence that under proper experimental conditions of stationary and mobile phases, RP-HPLC is a very useful method to obtain log Poct values.

1-Octanol↗

Soybean oil in total parenteral nutrition maintains albumin and antioxidant enzyme mRNA levels.

Changes in albumin and antioxidant enzyme mRNA expression in infant rat liver following administration of total parenteral nutrition (TPN) with/without soybean oil emulsion were studied. Infant rats were divided into three groups: group 1=oral diet, group 2=TPN without fat, and group 3=TPN with 20% of calories from soybean oil emulsion. The period of TPN administration was 4 d. Serum aspartate aminotransferase and alanine aminotransferase levels were higher in group 2 than in the other groups, with similar levels seen in the other groups. Albumin, Cu, Zn-superoxide dismutase, and glutaredoxin 1 mRNA expression levels were lower in group 2 than in the other groups, with similar levels seen in the other groups. Catalase mRNA expression was higher in group 1 than in the other groups, with the lowest level seen in group 2. Soybean oil emulsion should be included in TPN regimens to prevent down-regulation of albumin and antioxidant enzyme mRNA expression.

Albumins↗

Soybean oil fat emulsion prevents cytochrome P450 mRNA down-regulation induced by fat-free overdose total parenteral nutrition in infant rats.

Changes in the mRNA expression of hepatic cytochrome P450 (CYP) isoenzymes associated with overdose of fat-free or fat-containing total parenteral nutrition (TPN) were investigated in infant rats. Three-week-old male Sprague-Dawley rats were divided into three groups: group 1 received an oral diet, group 2 received TPN without fat, and group 3 received TPN with 20% of calories from fat (soybean oil emulsion). After TPN administration for 4 d, serum aspartate aminotransferase (AST) levels in group 2 were significantly increased (p<0.01) compared with the other groups. The mRNA expression of hepatic CYP isoenzymes in group 2 decreased to 0.76 to 31% of that in group 1 (p<0.01), but that in group 3 was maintained at 32 to 84% of that in group 1. These results indicate the importance of including fat in TPN regimens to prevent not only hepatic dysfunction but also mRNA down-regulation of liver CYP isoenzymes.

Animals↗

Major role of soybean oil in preventing decrease in CYP4A1 mRNA content relative to PPARalpha mRNA down-regulation in infant rats.

Changes in the levels of CYP4A1, PPARalpha, and RXRalpha mRNA expression in the liver following overdose of fat-free or fat-containing total parenteral nutrition (TPN) were studied in 3-week-old male Sprague-Dawley rats. The rats were divided into three groups: group 1, oral diet; group 2, fat-free TPN; and group 3, TPN with 20% of calories from soybean oil emulsion. Levels of CYP4A1, PPARalpha, and RXRalpha mRNA in the fat-free TPN group were significantly lower than those in the other groups. Levels of CYP4A1 and PPARalpha mRNA were strongly correlated (r=0.849), and levels of CYP4A1 and RXRalpha mRNA were weakly correlated (r=0.618). This is the first report of a strong correlation between the levels of CYP4A1 and PPARalpha mRNA following overdose of fat-free or fat-containing TPN in infant rats. Our results also indicate that it is important to include fat in TPN regimens in order to prevent CYP4A1 mRNA down-regulation, which may be related to changes in PPARalpha mRNA levels in the liver.

Animals↗

Expression of multidrug resistance proteins and accumulation of cisplatin in human non-small cell lung cancer cells.

In order to understand and overcome multidrug resistance (MDR) of human non-small cell lung cancer (NSCLC), mRNA and protein expression levels of P-glycoprotein (MDR1), multidrug resistance-associated protein 1 (MRP1), and lung resistance-related protein (LRP) were investigated and compared with the chemosensitivity and the intracellular/intranuclear cisplatin accumulation of three NSCLC cell lines (Ma-10, Ma-31, and Ma-46). Ma-31 was more resistant than Ma-10 and Ma-46 to cisplatin, carboplatin, etoposide, and paclitaxel. The mRNA level of MDR1 was extremely low, and MDR1 protein was not detected in all cell lines. MRP1 mRNA expression was highest in Ma-31 and lowest in Ma-10, but there was no notable difference between the MRP1 protein expression in three cell lines. LRP mRNA/protein was equally expressed in Ma-10 and Ma-31, but was nominal in Ma-46. The intracellular/intranuclear cisplatin accumulation of the cells was determined to be Ma-31>Ma-46>Ma-10. Thus, MDR1, MRP1, and LRP mRNA and protein expression levels were not correlated with the chemosensitivity or the intracellular/intranuclear cisplatin accumulation of each cell line. The present results indicate that MDR proteins (MDR1, MRP1, and LRP) may not play an important role in the chemoresistance and drug efflux of NSCLC cells.

Antineoplastic Agents↗

Role of soybean oil fat emulsion in the prevention of hepatic xenobiotic transporter mRNA up- and down-regulation induced by overdose of fat-free total parenteral nutrition in infant rats.

Total parenteral nutrition (TPN) is associated with cholestasis and hepatic steatosis in human infants. The present study focused on the changes in hepatic xenobiotic transporters associated with overdose of fat-free or fat-containing TPN in infant rats. Three-week-old male Sprague-Dawley rats were divided into three groups: group 1 received an oral diet, group 2 received TPN without fat, and group 3 received TPN with 20% of its calories from fat (soybean oil emulsion). After TPN administration for 4 days, both serum aspartate aminotransferase (AST) and alanine aminotransferase (ALT) levels, which are indicators of hepatic dysfunction, in group 2 were significantly higher (p<0.001) than those in the other groups, whereas there were no differences between groups 1 and 3 in either serum AST or ALT levels. The serum bilirubin concentration in group 2 was also markedly higher than that in the other groups. Mdr2, Bsep, Mrp2, Mrp6, Oct1, and Oat2 mRNA levels were decreased in group 2 (fat-free TPN) compared with those in group 1 (oral diet), whereas Mdr1b, Mrp1, and Mrp5 mRNA levels were increased. Specifically, the level of Mdr1b mRNA in group 2 was 16 times higher (p<0.001) than that in group 1. On the other hand, the changes in these mRNA expression levels in group 3 (fat-containing TPN) were smaller than those in group 2, and specifically, the expression levels of Mdr1b, Mrp1, Mrp5, Mrp6, and Oat2 mRNA in group 3 were not significantly different from those in group 1. The results of the present study indicate that including fat in the TPN regimen is very important in preventing the mRNA up- and down-regulation of xenobiotic transporters, which is considered to be the main factor responsible for the abnormal hepatic changes such as cholestasis associated with the excessive administration of fat-free TPN.

ATP-Binding Cassette Transporters↗

Overexpression of constitutive signal transducer and activator of transcription 3 mRNA in cisplatin-resistant human non-small cell lung cancer cells.

Non-small cell lung cancer (NSCLC) often shows intrinsic multidrug resistance, which is one of the most serious problems in cisplatin-based adjuvant chemotherapy. Recently, the constitutive activation of signal transducer and activator of transcription (STAT) factors has been found in a variety of human cancers. In the present study, the mRNA expression of STATs in various human NSCLC cell lines was investigated by quantitative real-time reverse transcription-polymerase chain reaction (RT-PCR) to determine whether STATs can be implicated in cisplatin resistance and apoptosis inducibility. Cisplatin triggered apoptosis in Ma-46 based on biochemical and morphological findings, but not in Ma-31. The mRNA expression of STAT3 was highest in cisplatin-resistant Ma-31 and lowest in cisplatin-sensitive Ma-46. A 6-hour exposure of cancer cells to cisplatin failed to stimulate STAT3 mRNA expression. Therefore, an increased transcriptional level of constitutive STAT3 may be related to the suppressive regulation of the apoptotic pathway in intrinsically chemo-resistant NSCLC cells.

Antineoplastic Agents↗

Defects in apoptotic signal transduction in cisplatin-resistant non-small cell lung cancer cells.

Non-small cell lung cancer (NSCLC) often shows intrinsic multidrug resistance, which is one of the most serious problems in cisplatin-based adjuvant chemotherapy. Anticancer drugs exert at least part of their cytotoxic effect by triggering apoptosis. In order to understand the molecular alterations leading to heterogeneous cisplatin sensitivity and apoptosis inducibility in NSCLC cells, we analyzed various apoptotic pathways, including the activation of caspase-8, -9 and -3, the release of cytochrome c from mitochondria and the expression levels of pro- and anti-apoptotic proteins such as Bax, Bad, Bcl-2, Bcl-xL, Fas and p53 using heterogeneously apoptosis-sensitive cells (Ma-10, Ma-31 and Ma-46). Cisplatin treatment induced the activation of caspase-8, -9 and -3 and the release of cytochrome c in apoptosis-sensitive Ma-46. The expression of Bcl-xL was the highest and p53 was not expressed in apoptosis-resistant Ma-31, and Fas was not expressed in Ma-46. These expression levels were not correlated with the apoptosis inducibility of the three cell lines. These results suggest that blockage of the apoptotic signal from mitochondria is responsible for apoptosis resistance in NSCLC cell lines. Our findings also indicate that anti-apoptotic Bcl-xL and pro-apoptotic p53 are necessary but not sufficient for resistance to cisplatin-induced apoptosis in NSCLC cells.

Antineoplastic Agents↗

Antioxidant effects of stereoisomers of N-acetylcysteine (NAC), L-NAC and D-NAC, on angiotensin II-stimulated MAP kinase activation and vascular smooth muscle cell proliferation.

We examined the effects of the stereoisomers of N-acetylcysteine (NAC), L-NAC and D-NAC, on cellular glutathione (GSH) concentration and whether NAC-regulated cellular GSH levels are directly associated with angiotensin II (Ang II)-induced intracellular signaling events in vascular smooth muscle cells (VSMC). Both L-NAC and D-NAC similarly increased intracellular GSH concentration. We found that L-NAC and D-NAC both inhibited Ang II-induced c-Jun N-terminal kinase and p38 mitogen-activated protein kinase activation and [(3)H]-thymidine incorporation in VSMC. Our present study indicates the comparable effects of NAC stereoisomers in regulating intracellular GSH and the redox-dependent intracellular signaling mechanisms in VSMC.

Acetylcysteine↗

Involvement of histone phosphorylation in apoptosis of human astrocytes after exposure to saline solution.

We have previously found using inhibitors of protein phosphatase that phosphorylation of histones may be involved in thymocyte apoptosis. In this study, we examined whether histone modification occurs in astrocyte apoptosis induced by a pathological condition in the absence of drug. Incubation of cultured human astrocytes with growth medium for 24 h after exposure to saline solution for 30 min induced an increase in terminal deoxynucleotidyl transferase-mediated dUTP nick end labeling (TUNEL)-positive cells and nuclear condensation, biochemical and morphological hallmarks of apoptotic cell death. Acetic acid-urea-Triton X-100 (AUT) gel electrophoresis of the nuclear histone fraction and N-terminal peptide analysis showed that the treatment with saline solution caused rapid changes in phosphorylation of H2A subfamilies, but not in histone acetylation. The phosphorylation of the two subtypes increased markedly, whereas the phosphorylation of one subtype decreased. In contrast, exposure to ACF-95, an artificial cerebrospinal fluid (CSF), was associated with little induction of apoptotic cell death and induced less changes in histone phosphorylation. These results support the previous idea that chemical modification of histones is involved in the DNA fragmentation in astrocytes undergoing apoptosis.

Amino Acid Sequence↗

Thymocyte apoptosis induced by phosphorylation of histones is associated with the change in chromatin structure to allow easy accessibility of DNase.

The inhibitors of protein phosphatase such as calyculin A and okadaic acid induce the apoptotic cell death in rat thymocytes. To clarify the molecular mechanism of these inhibitor-induced apoptosis, the effect of calyculin A on DNA fragmentation in the isolated nuclei were studied. A significant increase in DNA fragmentation was observed in the nuclei prepared from the cells treated with calyculin A that caused histone hyperphosphorylation. No changes of the activities of caspase-8 and -3 were observed in the extract from the cells treated with calyculin A. The circular dichroism analysis of soluble chromatin from calyculin A-treated thymocyte nuclei indicated that phosphorylation of histones decreased its alpha-helical content. Thus, the change in the chromatin structure may be due to the chemical modification of histones. Moreover, the structural change in chromatin preceded DNA fragmentation in the nuclei. Therefore, these results suggest that the change of chromatin structure allow easy accessibility of nuclear DNase to chromosomal DNA.

Animals↗

Tissue distribution of and species differences in deacetylation of N-acetyl-L-cysteine and immunohistochemical localization of acylase I in the primate kidney.

Species differences in the biotransformation of N-acetyl-L-cysteine (NAC) have been investigated to evaluate the usefulness of NAC as a constituent in parenteral nutrition solutions in place of cysteine. The activity of NAC-deacetylating enzyme (acylase) was measured in various tissues of different species (rat, rabbit, dog, monkey, and man). Acylase activity was highest in the kidney in all species studied. Enzyme activity in the liver was 10 %-22 % of that in the kidney in the rat, rabbit, monkey, and man, but almost no hepatic activity was seen in the dog. NAC-deacetylating activity was very low in other organs. The tissue distribution of acylase I was determined by Western blotting and an immunohistochemical method employing specific antibody against porcine acylase I (EC 3.5.1.14). The immunoblotting study showed a 46-kDa protein band corresponding to porcine acylase I in the kidney of all species. In liver cytosol, 46 kDa and/or 29 kDa bands were observed in the rat, rabbit, monkey, and man, but not in the dog. In the immunohistochemical study, positive staining with anti-acylase I antibody was observed clearly in the renal proximal tubules in the monkey and man. These results suggested that the kidney and liver were the main organs responsible for the biotransformation of NAC to cysteine in mammals other than the dog.

Acetylation↗

New entry of coupling reaction of phenacylamine derivatives with silylstannane.

The new coupling reaction of phenacylamines with silylstannane and lithium diisopropylamide (LDA) is reported. The treatment of a phenacylamine iodide 1 with (trimethylsilyl)tributylstannane (Me3SiSnBu3) and cesium fluoride (CsF) gave a dimerization product 2 having no iodine atom. Reaction of 1 with LDA afforded a dimerization product 3 with an iodine atom. The products 2 and 3 were separated to the meso and racemic isomers, respectively.

Acetophenones↗