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Biomedical subjects

K Satoh

Publications and source records attributed to K Satoh.

At least 397 records · Page 22Linked to original sources

Leaf-specifically expressed genes for polypeptides destined for chloroplasts with domains of sigma70 factors of bacterial RNA polymerases in Arabidopsis thaliana.

Genes for sigma-like factors of bacterial-type RNA polymerase have not been characterized from any multicellular eukaryotes, although they probably play a crucial role in the expression of plastid photosynthesis genes. We have cloned three distinct cDNAs, designated SIG1, SIG2, and SIG3, for polypeptides possessing amino acid sequences for domains conserved in sigma70 factors of bacterial RNA polymerases from the higher plant Arabidopsis thaliana. Each gene is present as one copy per haploid genome without any additional sequences hybridized in the genome. Transient expression assays using green fluorescent protein demonstrated that N-terminal regions of the SIG2 and SIG3 ORFs could function as transit peptides for import into chloroplasts. Transcripts for all three SIG genes were detected in leaves but not in roots, and were induced in leaves of dark-adapted plants in rapid response to light illumination. Together with results of our previous analysis of tissue-specific regulation of transcription of plastid photosynthesis genes, these results indicate that expressed levels of the genes may influence transcription by regulating RNA polymerase activity in a green tissue-specific manner.

Amino Acid Sequence↗

Activity in the parietal area during visuomotor learning with optical rotation.

Regional cerebral blood flow (rCBF) was measured in six subjects to study changes of activity in the parietal cortex during learning of a visually guided pointing task with a discrepancy of visuomotor coordination and to determine whether reorganization affects the parietal activity after learning. During the early stage of learning, the right posterior parietal cortex showed a significant increase in rCBF. During the late stage, on the other hand, significant activation was noted in the postcentral gyrus of the right hemisphere. These results support a role for the posterior parietal cortex in remapping visuomotor coordinates and suggest the involvement of the human postcentral gyrus in retaining sensorimotor coordinates, considered to relate to the self image of the hand.

Adult↗

An evaluation of CA125 levels in 291 normal postmenopausal and 20 endometrial adenocarcinoma-bearing women before and after surgery.

Two hundred ninety-one normal postmenopausal women without hormone replacement therapy were studied for their blood levels of CA125. The levels ranged from 0.1 to 31.8 U/ml (mean+/-SEM 5.5+/-0.3 U/ml). Twenty patients with endometrial adenocarcinoma who had preoperative CA125 levels below 50 U/ml were also studied. The levels of CA125 in the latter group ranged from 2.1 to 43.0 U/ml (17.2+/-2.3 U/ml) and the difference of the mean value of the two groups was statistically significant (P < 0.001). The CA125 levels in normal postmenopausal women have a weak negative correlation with their age (CA125 = -0.025 x age + 6.9, P < 0.001), whereas in cancer patients, a positive correlation was seen (CA125 = 0.6 x age + 11.5, P < 0.05). Patients with endometrial cancer showed a decrease in their CA125 levels after a hysterectomy and salpingo-oophorectomy (6.5+/-1.2 U/ml, P < 0.0001). These results confirmed that the normal range of the CA125 of menopausal women is much lower than that of cycling women and each laboratory should establish its own normal range for the population. Also, it was suggested that CA125 levels which apparently fall within the normal range but are high, however, for the respective age, may indicate that an extensive search for an endometrial malignancy is necessary.

Adenocarcinoma↗

Glycoprotein Ib-von Willebrand factor interactions activate tyrosine kinases in human platelets.

von Willebrand factor (vWF ) in the presence of botrocetin induces p72(syk) activation, assessed as its autophosphorylated level and in vitro kinase assays, the transient association of p72(syk) with p60(c-src), and the translocation of p60(c-src) and p54/58(lyn) to cytoskeletal fractions. Jararaca glycoprotein Ib-binding protein (GPIb-BP), which specifically binds to GPIb, abolished these phenomena, suggesting that they are mediated by the vWF-GPIb interaction. These tyrosine kinase-related events were not inhibited by GRGDS peptide (plus EGTA), indicating that GPIIb/IIIa is not involved in the observed responses. Shc, an adaptor protein, was also tyrosine phosphorylated by the botrocetin-vWF activation. When GPIb was immunoprecipitated with nonfunctional monoclonal antibodies (MoAbs) directed against GPIb, a kinase activity was found to associate with GPIb upon botrocetin-vWF activation. On the other hand, anti-GPIb MoAbs that inhibit the vWF-GPIb interaction did not coprecipitate a kinase activity. Because the recovery of GPIb did not differ significantly, it is suggested that the excessive presence of inhibitory anti-GPIb MoAb dissociated a kinase activity from GPIb. Phosphoamino acid analysis showed that the kinase activity was that of a tyrosine kinase. The identity of the tyrosine kinase and the mode of interaction with the cytoplasmic region of GPIb await to be determined. Our findings suggest that the tyrosine kinase associated with GPIb serves at a most proximal step in the signal transduction pathway involved in the vWF-GPIb-induced platelet activation, which leads to other tyrosine kinase-related intracellular signals.

Blood Platelets↗

Characterization of S-hexylglutathione-binding proteins of human hepatocellular carcinoma: separation of enoyl-CoA isomerase from an Alpha class glutathione transferase form.

Recent studies have revealed binding of mitochondrial enoyl-CoA isomerase (ECI) to S-hexylglutathione-Sepharose, an affinity matrix used for purification of glutathione transferases (GSTs), and the enzyme has been suggested to be identical with the Alpha class form of GST with a subunit molecular mass of about 30 kDa. In the present study, S-hexylglutathione-binding proteins of human hepatocellular carcinomas were characterized to examine their identity. Supernatant fractions of carcinoma and surrounding tissues were applied to an affinity column, and bound fractions were resolved into three proteins with subunit molecular masses/pI values of 33 kDa/7.0, 30 kDa/5.8 and 29 kDa/5.8 in addition to the well-characterized four GST subunits, A1, A2, M1 and P1, by two-dimensional gel electrophoresis. The proteins were further purified by chromatofocusing at pH 7.4-4.0. The 30 and 29 kDa proteins were eluted at pH 4.9 and by 1 M NaCl respectively, and could be clearly separated from each other. The 29 kDa protein exhibited a low but significant activity towards 1-chloro-2,4-dinitrobenzene (4.25 micromol/min per mg of protein) and reacted with anti-(GST A1-2) antibody, suggesting that it is a member of the GST Alpha class. The 30 kDa protein did not react with anti-GST antibodies and was identified as ECI by immunoblotting and N-terminal-amino-acid-sequencing analyses. The results thus indicated that the Alpha class GST form composed of the 29 kDa subunits and ECI are two different proteins. The 33 kDa protein was eluted from the chromatofocusing column at pH 7.0 and did not react with either anti-GST antibodies or antibodies against mitochondrial enzymes involved in the beta-oxidation of fatty acids. However, it exhibited a carbonyl reductase activity with menadione and ubiquinone, and amino acid sequences of its peptides cleaved by Staphylococcus aureus V8 proteinase were consistent with those reported for the enzyme. Thus this protein binding to S-hexylglutathione-Sepharose was identified as carbonyl reductase.

Aged↗

Neurabin: a novel neural tissue-specific actin filament-binding protein involved in neurite formation.

We purified from rat brain a novel actin filament (F-actin)-binding protein of approximately 180 kD (p180), which was specifically expressed in neural tissue. We named p180 neurabin (neural tissue-specific F-actin- binding protein). We moreover cloned the cDNA of neurabin from a rat brain cDNA library and characterized native and recombinant proteins. Neurabin was a protein of 1,095 amino acids with a calculated molecular mass of 122,729. Neurabin had one F-actin-binding domain at the NH2-terminal region, one PSD-95, DlgA, ZO-1-like domain at the middle region, a domain known to interact with transmembrane proteins, and domains predicted to form coiled-coil structures at the COOH-terminal region. Neurabin bound along the sides of F-actin and showed F-actin-cross-linking activity. Immunofluorescence microscopic analysis revealed that neurabin was highly concentrated in the synapse of the developed neurons. Neurabin was also concentrated in the lamellipodia of the growth cone during the development of neurons. Moreover, a study on suppression of endogenous neurabin in primary cultured rat hippocampal neurons by treatment with an antisense oligonucleotide showed that neurabin was involved in the neurite formation. Neurabin is a candidate for key molecules in the synapse formation and function.

Actins↗

An Nrf2/small Maf heterodimer mediates the induction of phase II detoxifying enzyme genes through antioxidant response elements.

The induction of phase II detoxifying enzymes is an important defense mechanism against intake of xenobiotics. While this group of enzymes is believed to be under the transcriptional control of antioxidant response elements (AREs), this contention is experimentally unconfirmed. Since the ARE resembles the binding sequence of erythroid transcription factor NF-E2, we investigated the possibility that the phase II enzyme genes might be regulated by transcription factors that also bind to the NF-E2 sequence. The expression profiles of a number of transcription factors suggest that an Nrf2/small Maf heterodimer is the most likely candidate to fulfill this role in vivo. To directly test these questions, we disrupted the murine nrf2 gene in vivo. While the expression of phase II enzymes (e.g., glutathione S-transferase and NAD(P)H: quinone oxidoreductase) was markedly induced by a phenolic antioxidant in vivo in both wild type and heterozygous mutant mice, the induction was largely eliminated in the liver and intestine of homozygous nrf2-mutant mice. Nrf2 was found to bind to the ARE with high affinity only as a heterodimer with a small Maf protein, suggesting that Nrf2/small Maf activates gene expression directly through the ARE. These results demonstrate that Nrf2 is essential for the transcriptional induction of phase II enzymes and the presence of a coordinate transcriptional regulatory mechanism for phase II enzyme genes. The nrf2-deficient mice may prove to be a very useful model for the in vivo analysis of chemical carcinogenesis and resistance to anti-cancer drugs.

Animals↗

c-fos expression in the trigeminal sensory complex and pontine parabrachial areas following experimental tooth movement.

Ortodontic tooth movement causes continuous pain. However, it does not appear immediately, usually appearing after the application of orthodontic force to the teeth. Mechanically induced inflammatory responses in the periodontal membrane are assumed to be related to the mechanism of the later pain sensation. In the present study, we investigated Fos-like immunoreactivity in the trigeminal sensory complex and pontine parabrachial areas 24 h after the commencement of experimental tooth movement. An orthodontic elastic module was unilaterally inserted between upper molars. Following experimental tooth movement, Fos-like immunoreactive neurons appeared ipsilaterally in the trigeminal subnucleus caudalis and bilaterally in the lateral parabrachial nucleus. These results indicate that experimental tooth movement evokes delayed and continuous nociception after application of orthodontic force to the teeth and that the nociceptive information would be conveyed to the ipsilateral trigeminal subnucleus caudalis and further processed, at least in part, to the lateral parabrachial nucleus.

Animals↗

Kinetic evaluation of beta-neoendorphin hydrolysis by the somatic and testicular isozymes of human angiotensin-converting enzyme.

Angiotensin-converting enzyme (ACE) has both somatic and testicular isozymes, the former possessing two catalytically active domains, amino-terminal and carboxyl-terminal, while the latter has only the carboxyl-terminal one. We compared hydrolysis processes of the nonapeptide beta-neoendorphin by the two isozymes of human ACE. Both isozymes hydrolyzed the peptide to Tyr1-Gly2-Gly3 by the sequential removal of carboxyl-terminal dipeptides in three consecutive steps. The rate constant values for the second step, conversion of beta-neoendorphin1-7 to Leu-enkephalin, by the somatic isozyme in the presence of 10 or 200 mM NaCl were 4-fold higher than those for the first step, conversion of beta-neoendorphin1-9 to beta-neoendorphin1-7. The k(cat) values of the somatic isozyme for beta-neoendorphin1-7 were 2-fold higher than those for beta-neoendorphin1-9, indicating that beta-neoendorphin1-7 is more rapidly hydrolyzed than beta-neoendorphin1-9. The rate constant value for the second step at 10 mM NaCl was 5-fold higher than that for the testicular isozyme. Similar extent of difference was also observed in k(cat) values for beta-neoendorphin1-7 between the two isozymes. These results suggest that the amino-terminal domain of the somatic isozyme mainly contributes to the conversion of beta-neoendorphin1-7 to Leu-enkephalin at a low NaCl concentration. Optimal chloride concentrations for the individual steps of beta-neoendorphin1-9 hydrolysis differed between the two isozymes.

Humans↗

Hemorheologic profiles of plasma fibrinogen and blood viscosity from silent to acute and chronic cerebral infarctions.

Hemorheologic changes from silent to acute and chronic cerebral infarction have seldom been reported. We evaluated hemorheologic profiles of the whole blood viscosity, plasma viscosity and fibrinogen level in stroke at-risk patients with silent cerebral infarction, patients with acute or chronic cerebral lacunar infarction, and subjects at low risk for stroke. Hemorheologic profiles were measured in 88 subjects: (1) 36 patients with silent cerebral infarction (mean 64.7 years), who provided no clinical history of having had definitive stroke but showing > 5 mm lesions of cerebral infarction or periventricular hyperintensity (PVH) observed in magnetic resonance imaging (MRI) T2-weighted images; (2) 12 patients with acute cerebral lacunar infarction (mean 69.1 years), measured within 3 days and repeated 1 month after onset; (3) 25 patients with chronic cerebral lacunar infarction (mean 66.2 years), measured 12.5 months after onset; and (4) 15 subjects at low risk for stroke (mean 65.8 years) without cardiovascular risk factors or lesions on MRI. Patients with silent cerebral infarction were subdivided into two groups of less advanced and more advanced grades, based on the number of infarctions or the grade of PVH. Whole blood viscosity (shear rates: 22.5-225.0 s-1), corrected blood viscosity for 45% standard hematocrit (Hct), plasma viscosity, fibrinogen, serum total protein, albumin, and Hct were measured. Plasma fibrinogen levels were lower in silent cerebral infarctions than in chronic cerebral infarctions (P < 0.01), and patients with more advanced grades of silent cerebral infarction showed higher levels of plasma fibrinogen than those with less advanced grades (P < 0.01 and P < 0.05). Whole blood viscosity, corrected blood viscosity (Hct 45%), plasma viscosity and fibrinogen levels in acute cerebral infarction within 3 days after onset were higher significantly than those in subjects at low risk for stroke. Plasma fibrinogen level persisted to be elevated up to 1 month after onset, which continued as well in patients with chronic cerebral infarction. Advanced grades of silent cerebral infarction in stroke at-risk patients are accompanied by elevations of plasma fibrinogen level, which increases further after onset of cerebral infarction; such abnormalities persist up to the chronic stage. Elevated plasma fibrinogen level might reflect progression of atherogenesis in patients with advanced grades of silent cerebral infarction, resulted in an increased probability as to be a risk factor for cerebral infarction.

Acute Disease↗

Tyrosine phosphorylation and p72syk activation by an anti-glycoprotein Ib monoclonal antibody.

NNKY5-5, an IgG monoclonal antibody directed against the von Willebrand factor-binding domain of glycoprotein (GP) Ib alpha, induced weak but irreversible aggregation (or association) of platelets in citrate-anticoagulated platelet-rich plasma. This phenomenon was defined as small aggregate formation (SAF). Platelets in hirudin-anticoagulated plasma or washed platelets showed little response to NNKY5-5 alone, but the antibody potentiated aggregation induced by low concentrations of adenosine diphosphate or platelet-activating factor. NNKY5-5 did not induce granule release or intracellular Ca2+ mobilization. However, NNKY5-5 caused tyrosine phosphorylation of a 64-kD protein and activation of a tyrosine kinase, p72syk. An anti-Fc gamma II receptor antibody had no effect on SAF, suggesting that NNKY5-5 activated platelets by interacting with glycoprotein Ib. Fab' fragments of NNKY5-5 did not induce SAF, but potentiated aggregation induced by other agonists. The Fab' fragment of NNKY5-5 induced the activation of p72syk, suggesting that such activation was independent of the Fc gamma II receptor. Cross-linking of the receptor-bound Fab' fragment of NNKY5-5 with a secondary antibody induced SAF. GRGDS peptide, chelation of extracellular Ca2+, and an anti-GPIIb/IIIa antibody inhibited NNKY5-5-induced SAF, but had no effect on 64-kD protein tyrosine phosphorylation or p72syk activations. Various inhibitors, including aspirin and protein kinase C, had no effect on SAF, protein tyrosine phosphorylation, or p72syk activation. In contrast, tyrphostin 47, a potent tyrosine kinase inhibitor, inhibited NNKY5-5-induced SAF as well as tyrosine phosphorylation and p72syk activation. Our findings suggest that binding of NNKY5-5 to GPIb potentiates platelet aggregation by facilitating the interaction between fibrinogen and GPIIb/IIIa through a mechanism associated with p72syk activation and tyrosine phosphorylation of a 64-kD protein.

Antibodies, Monoclonal↗

A clinical study of elderly patients with acute cholecystitis.

UNLABELLED: In recent years, an increase in average life expectancy has led to a rapid rise in the number of elderly patients undergoing surgery for acute cholecystitis. We studied the clinical characteristics of elderly patients (aged 75 years of more) undergoing surgery for acute cholecystitis, as compared with those of non-elderly patients (aged less than 75 years) undergoing similar procedures. Twenty-four of the patients were elderly, and 44 were non-elderly. RESULTS: Echography and abdominal computed tomography (CT) revealed no characteristic findings specific to elderly patients, but a smaller proportion of elderly patients showed a three-layered structure of the gallbladder wall. The leukocyte count on admission was significantly lower in elderly patients than in non-elderly patients. As for therapy, a significantly higher proportion of elderly patients underwent percutaneous transhepatic gallbladder drainage (PTGBD) + cholecystectomy + choledochotomy/choledocholithotomy, as compared with non-elderly patients. In contrast, cholecystectomy alone was performed more frequently in non-elderly patients than in elderly patients. The main postoperative complications were psychic symptoms and respiratory tract infections. The postoperative hospital stay was significantly longer for elderly patients, in part because they requested to remain in the hospital until they were able to perform activities of daily living.

Acute Disease↗

N,N-dimethylsphingosine phosphorylation in human platelets.

Metabolism of sphingosine (Sph) derivatives in human platelets was examined. [3H]Sph was rapidly and heavily phosphorylated into sphingosine 1-phosphate, similarly in resting and stimulated platelets. [14C]N,N-dimethylsphingosine was stable in resting platelets, while it was converted into N,N-dimethylsphingosine 1-phosphate (DMS-1-P), although weakly, in platelets stimulated with thrombin or 12-O-tetradecanoylphorbol 13-acetate. This DMS-1-P formation was inhibited by staurosporine, a potent protein kinase inhibitor. [3H]C2-ceramide was unchanged both in resting and stimulated platelets. Our report is the first to describe production of DMS-1-P in a biological system.

Blood Platelets↗

Inhibition of Na+,K(+)-ATPase by 1,2,3,4,6-penta-O-galloyl-beta-D-glucose, a major constituent of both moutan cortex and Paeoniae radix.

The inhibition of Na+,K(+)-ATPase activity by various constituents of Moutan Cortex and Paeoniae Radix was studied. 1,2,3,4,6-Penta-O-galloyl-beta-D-glucose (PGG), a major component of both crude drugs, strongly inhibited Na+,K(+)-ATPase activity (IC50 = 2.5 x 10(-6) M), whereas galloylpaeoniflorin, benzoic acid, and catechin were weakly inhibitory, and albiflorin, oxypaeoniflorin, paeoniflorin, paconol, and phenol were ineffective. The inhibition of Na+,K(+)-ATPase activity by PGG was decreased in the presence of BSA or phospholipids. The inhibition mode of PGG was noncompetitive with respect to ATP. The K0.5 value for Na+ was increased by the addition of PGG from 9.1 to 12.3 mM, whereas that for K+ was not altered. PGG also inhibited K(+)-dependent p-nitrophenyl phosphatase activity with an IC50 value of 5.3 x 10(-6) M, and the extent of the inhibition increased at higher concentrations of K+. The K0.5 value for K+ was decreased by the addition of PGG from 3.3 to 2.0 mM. These results suggested that the inhibition of Na+,K(+)-ATPase activity is caused by interaction of PGG with the enzyme in the E2 state. The inhibitory effect of Moutan Cortex or Paeoniae Radix is considered to be mainly attributable to PGG.

4-Nitrophenylphosphatase↗

Pulmonary metastatic lesion of endolymphatic stromal myosis expresses metastasis-related genes but not invasion-related matrix type metalloproteinase.

A case of endolymphatic stromal myosis (ELSM) with multiple metastasis to lungs was studied. A single biopsy specimen from the lung was analyzed for c-erbB-2, CD44E, and autocrine motility factor receptors (AMFR) mRNA expression, all putatively associated with metastasis. Estrogen and progestin receptors (ER, PR) expression were studied by reverse transcription polymerase chain reactions. Expression of an invasion-related gene, membrane type matrix metalloproteinase (MT-MMP) was also studied. The metastatic lesion showed positive expression of c-erbB-2, CD44E, AMFR, PR and ER expression, whereas no expression of MT-MMP was detected. These results correspond with the present clinical history that is early and multiple lung metastasis but essentially benign in nature and with excellent response to gestagen treatment.

Biopsy↗

Epitope mapping of a monoclonal antibody to human glutathione transferase P1-1 the binding of which is inhibited by glutathione.

Although the three-dimensional structure of human glutathione transferase (GST) P1-1 crystallized with a GSH analogue has been reported, its structure in the non-complexed form has not been determined. Four monoclonal antibodies to GST P1-1 were produced to facilitate structural analysis. Of these, one, clone d-1 of IgG2a isotype, dose-dependently inhibited the activity of GST P1-1 but did not affect the activities of either GST A1-1 or M1-1. On immunoblotting, the antibody reacted strongly with GST P1-1 and weakly with rat GST-P and mouse GST-II, indicating cross-reactivity with Pi-class forms but preferential reactivity with GST P1-1. When GST P1-1 and the antibody were incubated in the presence of 60 microM GSH, no inhibition of activity was found, whereas 1-chloro-2,4-dinitrobenzene had no effect at concentrations up to 10 microM. The binding of GST P1-1 to antibody adsorbed to Protein A-Sepharose was also prevented by both 0.1 mM GSH and N-ethylmaleimide treatment. Trypsin digests of GST P1-1 were resolved by HPLC and a peptide that reacted with the antibody was detected by absorption experiments. N-Terminal amino acid sequencing revealed the peptide to be in the C-terminal portion of the enzyme, stretching from amino acid residues 198 to 208. A synthetic peptide of this sequence also absorbed the antibody. These results suggest that both GSH bound to the active site and N-ethylmaleimide bound to the cysteine residue repress antibody binding to the C-terminal region. Thus this antibody may be useful for examining the steric configuration of the C-terminal and other regions of GST P1-1 in the absence of GSH.

Animals↗

Chemoprevention of 4-nitroquinoline 1-oxide-induced oral carcinogenesis in rats by flavonoids diosmin and hesperidin, each alone and in combination.

The modifying effects of the two flavonoids diosmin and hesperidin given during the initiation and postinitiation phases of oral carcinogenesis initiated with 4-nitroquinoline 1-oxide (4-NQO) were investigated in male F344 rats. The compounds were tested alone and in combination. At 6 weeks of age, animals were divided into experimental and control groups and fed diets containing 1000 ppm diosmin and 1000 ppm hesperidin and a diet containing both compounds (900 ppm diosmin and 100 ppm hesperidin). At 7 weeks of age, all animals except those treated with each test chemical alone and control groups were given 4-NQO (20 ppm) in the drinking water for 8 weeks to induce oral cancer. Starting 7 days before the 4-NQO exposure, groups of animals were fed the diets containing test chemicals for 10 weeks and then switched to the basal diet. Starting 1 week after the cessation of 4-NQO exposure, the groups given 4-NQO and a basal diet were switched to the diets containing diosmin, hesperidin, or diosmin combined with hesperidin and maintained on these diets for 22 weeks. The other groups consisted of rats given diosmin (1000 ppm), hesperidin (1000 ppm), and the combination regimen of these two compounds (900 ppm diosmin with 100 ppm hesperidin) alone, and untreated rats. All animals were necropsied at the termination of the study (week 32). The incidences of tongue lesions (neoplasms and preneoplasms), polyamine levels in the tongue tissue, and cell proliferation activity estimated by a 5-bromodeoxyuridine-labeling index and by morphometric analysis of silver-stained nucleolar organizer regions protein were compared among the groups. Feeding of both compounds singly or in combination during the initiation phase caused a significant reduction in the frequency of tongue carcinoma [diosmin, 68% reduction (P < 0.01); hesperidin, 75% reduction (P < 0.005); and the combination regimen, 69% (P < 0.05)]. When fed the test compounds singly or the combination regimen after 4-NQO exposure, the frequency of tongue cancer was also decreased [diosmin, 77% reduction (P < 0.005); hesperidin, 62% reduction (P < 0.05); and the combination regimen, 77% (P < 0.005)]. The incidences of oral preneoplasia (hyperplasia and dysplasia) in these groups were also decreased when compared with carcinogen controls (P < 0.05-P < 0.001). There were no pathological alterations in rats treated with test compounds or the combined regimen alone or those in an untreated control group. Dietary administration of these compounds significantly decreased the expression of cell proliferation biomarkers (5-bromodeoxyuridine-labeling index and silver-stained nucleolar organizer regions protein number) of the nonlesional tongue squamous epithelium (P < 0.05). Also, polyamine concentrations in the oral mucosa were lowered in rats given the carcinogen and test compounds, alone and in combination, compared with those of rats given 4-NQO alone (P < 0.05). These findings suggest that supplementation with the flavonoids diosmin and hesperidin, individually and in combination, is effective in inhibiting the development of oral neoplasms induced by 4-NQO, and such inhibition might be related to suppression of increased cell proliferation caused by 4-NQO in the oral mucosa.

4-Nitroquinoline-1-oxide↗

Comparative functional morphology of mandibular forward movement during mastication of two murid rodents, Apodemus speciosus (Murinae) and Clethrionomys rufocanus (Arvicolinae).

The anatomy of the masticatory apparatus, the direction in which masticatory muscles act during mastication, and jaw muscle forces as estimated by muscle dry weight are compared between two murid rodents, the Japanese field mouse (Apodemus speciosus, subfamily Murinae) and the gray red-backed vole (Clethrionomys rufocanus; subfamily Arvicolinae). The occlusal forces exerted by the deep masseter and the anterior temporalis are large in C. rufocanus. Furthermore, in this species, the angle between the sagittal plane and the occlusal plane of the cheek teeth is larger than in A. speciosus. Therefore, a relatively large occlusal force can be generated in C. rufocanus. The estimated line of action of the anterior temporalis differs markedly between these two species. The functional significance of this difference is discussed relative to the adaptive dental characteristics for food processing, the forces required to masticate different types of food, and the forces that control mandibular forward movement.

Animals↗