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Biomedical subjects

M Fukuda

Publications and source records attributed to M Fukuda.

At least 217 records · Page 12Linked to original sources

Bone grafting technique to increase interdental alveolar bone height for placement of an implant.

We have developed a simple, one-step technique for chin bone onlay grafting combined with simultaneous implant placement to increase alveolar bone height without any support system. We have used it to place 14 implants in nine patients; eight recovered uneventfully but, in the other one, the wound broke down and the exposed chin bone necrosed. After a mean follow-up period of three years (range 1.5-4.7) the clinical and radiological outcome has remained good in those eight patients.

Alveolar Ridge Augmentation↗

The 5 alpha-reductase inhibitory components from heartwood of Artocarpus incisus: structure-activity investigations.

The methanol extract of heartwood of Artocarpus incisus showed potent 5 alpha-reductase inhibitory activity. We investigated the 5 alpha-reductase inhibitory effects of nine compounds isolated from A. incisus. Chlorophorin (IC50 = 37 microM) and artocarpin (IC50 = 85 microM) showed more potent inhibitory effects than did alpha-linolenic acid, which is known as a naturally occurring potent inhibitor. Structure-activity investigations suggested that the presence of an isoprene substituent (prenyl and geranyl) would enhance 5 alpha-reductase inhibitory effects.

5-alpha Reductase Inhibitors↗

Differences in reactivity to vitamin K administration of the vitamin K-dependent procoagulant factors, protein C and S, and osteocalcin.

Vitamin K is a trace nutrient necessary not only for the synthesis of four plasma clotting factors but also the production of two important anticlotting factors, protein C and protein S, and the synthesis of two bone proteins. If protein C and protein S are produced more quickly and/or in higher quantities than four plasma coagulation factors after vitamin K administration, then the result is unfavorable for stopping of hemorrhage. We therefore studied the difference of time dependence of prothrombin procoagulant factors, protein C and S and bone Gla protein after the administration of vitamin K in normal and vitamin K-deficient neonates. Results of our study showed that, on the whole, coagulation factors increased markedly more than anticlotting factors after vitamin K administration. Furthermore, the increase in bone Gla protein was also higher compared with protein C activity, although the detailed mechanism of the difference in reactivity of prothrombin procoagulant factors, protein C and S and bone Gla protein to vitamin K administration is not clear.

Female↗

Inhibition of cell growth and Epstein-Barr virus reactivation by CD40 stimulation in Epstein-Barr virus-transformed B cells.

The CD40 molecule plays important roles in B cell activation, proliferation, and immunoglobulin (Ig) class switching. In Epstein-Barr virus (EBV)-transformed lymphoblastoid cell lines (LCL), CD40 mediates growth inhibition and EBV reactivation via the CD40 signaling pathways. CD40 cross-linking with a monoclonal antibody arrests cell growth in G1 and induces expression of p27kip1 cyclin-dependent kinase inhibitor. CD40 cross-linking also induces EBV reactivation, as detected by the induction of EBV-specific early antigen, immediate early BZLF1 RNA, and its protein product ZEBRA. These results support hypotheses that the proliferation of EBV-infected B cells in vivo can be inhibited by interactions with the CD40 ligand on activated helper T cells, and latent EBV is reactivated via the signaling pathways controlled by CD40 interactions.

Apoptosis↗

Regulation of intracellular dynamics of Smad4 by its leucine-rich nuclear export signal.

Smad family proteins play a pivotal role in transmitting the transforming growth factor-beta (TGF-beta) superfamily signals from the cell surface to the nucleus. In response to ligand stimulation, Smad4 forms a complex with respective receptor-specific Smads, and the complex translocates into the nucleus and regulates gene expression. Thus, the nuclear entry of the Smad complex is one of the key steps in signal transduction. However, little is known about regulatory mechanisms for nucleocytoplasmic transport of Smads. Here we report identification of a functional, leucine-rich nuclear export signal (NES) in Smad4, which regulates subcellular distribution of Smad4. We then show evidence suggesting that the NES-dependent cytoplasmic localization of Smad4 is important for ensuring optimal TGF-beta responsivenesses in transcriptional activation. Moreover, we show that the NES of Smad4 is specifically inactivated by the stimulus-dependent hetero-oligomerization with receptor-specific Smads during the TGF-beta-induced nuclear translocation of Smad4. Taken together, these results suggest an important regulatory role of the NES of Smad4 in TGF-beta signaling.

Active Transport, Cell Nucleus↗

Right-sided ovulation favours pregnancy more than left-sided ovulation.

The aim of this study was to evaluate whether frequency of ovulation and fertility potential of oocytes from the two ovaries differed in regularly menstruating women (1057 cycles of 856 fertile women and 1033 cycles of 258 infertile women). For both fertile and infertile women ovulation from the right ovary occurred more often than from the left ovary (55 versus 45%; P: < 0.005). In infertile women follicular phase length was similar for right- and left-sided ovulation. However, infertile women treated with intrauterine insemination (IUI) or in-vitro fertilization (IVF) showed a pregnancy rate in connection with right-sided ovulation (13%) which was higher than that of left-sided (9%). The ratio of pregnancies deriving from the right ovary per total number of pregnancies was similar in infertile and fertile women (64.6%, 73/113 and 63.4%, 361/569 respectively). The ratio of pregnancies from right-sided ovulation (approximately 64%) per total number of pregnancies was higher than that of right-sided ovulation (approximately 55%) during non-pregnant cycles (P: < 0.0001). The implantation rate in right-sided ovulation seemed to be higher than in left-sided one, since IVF data showed a lower frequency (P: = 0.03) of pre-embryo formation from right-sided ovulation than left-sided. Mid-luteal serum oestradiol and testosterone were higher (P: < 0.05) in right-sided ovulation than left-sided. Taken together, in both fertile and infertile women the fertility potential of oocytes from the right ovary surpasses that of the left ovary.

Embryo Implantation↗

Phase I study of a weekly infusion of irinotecan hydrochloride (CPT-11) and a 14-day continuous infusion of etoposide in patients with lung cancer: JCOG trial 9408.

BACKGROUND: The aim was to determine the maximum tolerated dose (MTD) and recommended dose of irinotecan hydrochloride (CPT-11) in combination with a 14-day continuous infusion of etoposide in patients with refractory advanced lung cancer (LC), especially small cell lung cancer (SCLC). METHODS: Etoposide was administered continuously at 25 mg/m2/day for 14 days. The initial dose of CPT-11 was 40 mg/m2 given as a 90 min intravenous infusion on days 1, 8 and 15 and the dose escalation of CPT-11 was planned in increments of 20 mg/m2 until severe or life-threatening toxic effects were observed. RESULTS: Nine refractory or advanced LC patients (eight at level 1, one at level 2) were entered in this study, of whom two at level 1 were not assessable for toxicity because of patient's refusal and progressive disease. One treatment-related death due to pulmonary toxicity and one patient with hypotension who needed catecholamine for more than 48 h were observed at level 1, a CPT-11 dose of 40 mg/m2. The MTD of CPT-11 was 40 mg/m2. Therapeutic efficacy could be assessed in seven patients, of whom two achieved a partial response. CONCLUSIONS: This regimen was too toxic and the recommended dose was outside the levels in this study. One has to consider pulmonary toxicity when using CPT-11, especially for patients previously treated with cytotoxic agents for which pulmonary toxicity has been reported.

Adenocarcinoma↗

Calcium-dependent and -independent hetero-oligomerization in the synaptotagmin family.

Synaptotagmins constitute a family of membrane proteins that are characterized by one transmembrane region and two C2 domains. Recent genetic and biochemical studies have indicated that oligomerization of synaptotagmin (Syt) I is important for expression of function during exocytosis of synaptic vesicles. However, little is known about hetero-oligomerization in the synaptotagmin family. In this study, we showed that the synaptotagmin family is a type I membrane protein (N(lumen)/C(cytoplasm)) by introducing an artificial N-glycosylation site at the N-terminal domain, and systematically examined all the possible combinations of hetero-oligomerization among synaptotagmin family proteins (Syts I-XI). We classified the synaptotagmin family into four distinct groups based on differences in Ca(2+)-dependent and -independent oligomerization activity. Group A Syts (III, V, VI, and X) form strong homo- and hetero-oligomers by disulfide bonds at an N-terminal cysteine motif irrespective of the presence of Ca(2+) [Fukuda, M., Kanno, E., and Mikoshiba, K. (1999) J. Biol. Chem. 274, 31421-31427]. Group B Syts (I, II, VIII, and XI) show moderate homo-oligomerization irrespective of the presence of Ca(2+). Group C synaptotagmins are characterized by weak Ca(2+)-dependent (Syts IX) or no homo-oligomerization activity (Syt IV). Syt VII (Group D) has unique Ca(2+)-dependent homo-oligomerization properties with EC(50) values of about 150 microM Ca(2+) [Fukuda, M., and Mikoshiba, K. (2000) J. Biol. Chem. 275, 28180-28185]. Syts IV, VIII, and XI did not show any apparent hetero-oligomerization activity, but some sets of synaptotagmin isoforms can hetero-oligomerize in a Ca(2+)-dependent and/or -independent manner. Our data suggest that Ca(2+)-dependent and -independent hetero-oligomerization of synaptotagmins may create a variety of Ca(2+)-sensors.

Animals↗

Cytokinin-binding proteins from tobacco callus share homology with osmotin-like protein and an endochitinase.

To study the signal transduction of cytokinins, we characterized cytokinin-binding proteins (CBPs) isolated from tobacco callus Nicotiana tabacum. Two high-affinity CBPs, CBP1 and CBP2, were isolated from the soluble fraction of tobacco callus BY-2 cells by anion exchange chromatography on a DEAE-cellulose column and affinity chromatography on a benzyladenine (BA)-linked Sepharose 4B column. Cytokinin-binding activity was determined by the equilibrium dialysis method. The degree of purification of CBP1 and CBP2 was 270 and 600-fold, respectively. These proteins had molecular masses of 34 kDa and 26 kDa, and to bind benzyladenine (BA) with dissociation constants (Kd) of 8.9 x 10(-6) M and 1.1 x 10(-6) M, respectively. Binding of BA to CBP2 was inhibited by zeatin and kinetin but not by adenine, adenosine, ATP or IAA. The optimum pH for binding of BA to CBP1 and CBP2 was approximately pH 6.5 and 7.5, respectively. CBP1 showed significant homology (90%) with endochitinase and CBP2 with osmotin-like protein (OLP). These findings and the results of immunoblotting analysis and cytokinin-binding assay of recombinant OLP indicated that CBP2 is OLP, a stress protein.

Amino Acid Sequence↗

Changes in tubulin protein expression in guard cells of Vicia faba L. accompanied with dynamic organization of microtubules during the diurnal cycle.

We previously reported that the organization of microtubules (MTs) in guard cells of Vicia faba L. shows dynamic diurnal changes [Fukuda et al. (1998) Plant Cell Physiol. 39: 80]. Here, we report a method to directly extract total proteins from guard cells to investigate the biochemical changes in guard cells of Vicia faba L. during the diurnal cycle. Electrophoretic profiles of total proteins of guard cells showed distinct patterns with the time of extraction. Immunoblot analysis also demonstrated changes in alpha-tubulin and beta-tubulin contents with the diurnal cycle. Both tubulins were abundant at 6:00 h and 12:00 h but were almost undetectable at 24:00 h. Although treatment with either actinomycin D or cycloheximide at 18:00 h inhibited neither radial organization of cortical MTs nor stomatal opening, that at 6:00 h inhibited both. These results suggest that the dynamic diurnal changes in the organization of MTs in guard cells and stomatal movement of Vicia faba L. may be, at least partly, regulated by de novo synthesis and decomposition of tubulin molecules in guard cells.

Circadian Rhythm↗

Dry eye and closed eye tears.

PURPOSE: To establish accurate measurement of tear production in the diagnosis and monitoring of dry eye. METHODS: Reexamination of the Schirmer test indicated that the rate of tear secretion decreases with advancing age. We measured the noninvasive tear film break-up time (NIBUT) in normal and dry eye patients with our original apparatus. The NIBUT showed a reasonable level of accuracy with a cut-off value of 5 seconds. The lactoferrin concentration in tear fluids subsequently was found to have a cut-off value of 1.1 mg/mL with an optimal level of accuracy. RESULTS: The present findings suggest that a combination of clinical tests is needed for the diagnosis of dry eye syndrome. The closed eye condition induces subclinical inflammation on the ocular surface. Fibronectin, a high-molecular weight glycoprotein, plays an important role in corneal wound healing, although its concentration in various types of tear has not been investigated. Fibronectin concentration in open eye tears (19 +/- 24 ng/mL) was significantly different (p = 0.004) from that in closed eye tears (4127 +/- 3222 ng/mL). During reflex tearing with nasal stimulus, the concentration increased significantly (p = 0.028) after 100 mL of reflex tears (220 +/- 126 ng/mL). Albumin concentration in the same samples showed a pattern similar to that for fibronectin. Administration of a topical vasoconstrictor eliminated the increase in fibronectin concentration during reflex tearing. CONCLUSION: These findings suggest that fibronectin in the tear fluid was derived from plasma and that the increase in concentration in closed eye and reflex tear fluid was caused by leakage from dilated conjunctival blood vessels.

Adolescent↗

Ultrastructural and immunohistochemical findings in five patients with vitreomacular traction syndrome.

OBJECTIVE: To evaluate pathologic features of vitreomacular traction syndrome (VMT). METHODS: Preretinal membranes removed from five patients during vitreous surgery for VMT syndrome were evaluated by electron microscopy (n = 4) and immunohistochemistry (n = 1). RESULTS: Electron microscopic examination revealed large segments of internal limiting lamina (ILL) in three of the four cases. Other extracellular features included two types of abnormal collagen fibrils, determined to be type I and fibrous long-spacing collagen. The myofibrocyte was the predominant cell type in all cases. Collagen types I, II, and III, as well as glial fibrillary acidic protein and vimentin, were identified by immunohistochemistry. CONCLUSIONS: Epiretinal membranes in eyes with VMT syndrome adhered tightly to the ILL with abnormal collagen and contractile elements that included myofibrocytes.

Aged↗

Combination effect of photodynamic and sonodynamic therapy on experimental skin squamous cell carcinoma in C3H/HeN mice.

We studied a combination of photodynamic therapy (PDT) and sonodynamic therapy (SDT) for improving tumoricidal effects in a transplantable mouse squamous cell carcinoma (SCC) model. Two sensitizers were utilized: the pheophorbide-a derivative PH-1126, which is a newly developed photosensitizer, and the gallium porphyrin analogue ATX-70, a commonly used sonosensitizer. Mice were injected with either PH-1126 or ATX-70 i.p. at doses of 5 or 10 mg/kg.bw. At 24 (ATX-70) or 36 hr (PH-1126) (time of optimum drug concentration in the tumor) after injection, SCCs underwent laser light irradiation (88 J/cm2 of 575 nm for ATX-70; 44J/cm2 of 650 nm for PH-1126) (PDT), ultrasound irradiation (0.51 W/cm2 at 1.0 MHz for 10 minutes) (SDT), or a combination of the two treatments. The combination of PDT and SDT using either PH-1126 or ATX-70 as a sensitizer resulted in significantly improved inhibition of tumor growth (92-98%) (additive effect) as compared to either single treatment (27-77%). The combination using PH-1126 resulted in 25% of the treated mice being tumor free at 20 days after treatment. Moreover, the median survival period (from irradiation to death) of PDT + SDT-treated mice (> 120 days) was significantly greater than that in single treatment groups (77-95 days). Histological changes revealed that combination therapy could induce tumor necrosis 2-3 times as deep as in either of the single modalities. The combination of PDT and SDT could be very useful for treatment of non-superficial or nodular tumors.

Animals↗

Interactions of ofloxacin and erythromycin with the multidrug resistance protein (MRP) in MRP-overexpressing human leukemia cells.

To investigate interactions between the multidrug resistance protein (MRP) and antimicrobial agents, we examined the effects of 12 agents on vincristine sensitivity and efflux of the calcein acetoxy-methyl ester (calcein-AM) of a MRP substrate in MRP-overexpressing cells. Only ofloxacin and erythromycin enhanced sensitivity with increased intracellular vincristine accumulation and inhibited the calcein-AM efflux. Our findings suggest that the two agents are possible MRP substrates and may competitively inhibit MRP function as a drug efflux pump.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Genetic and biochemical characterization of 4-carboxy-2-hydroxymuconate-6-semialdehyde dehydrogenase and its role in the protocatechuate 4,5-cleavage pathway in Sphingomonas paucimobilis SYK-6.

Protocatechuate (PCA) is the key intermediate metabolite in the lignin degradation pathway of Sphingomonas paucimobilis SYK-6 and is metabolized to pyruvate and oxaloacetate via the PCA 4,5-cleavage pathway. We characterized the 4-carboxy-2-hydroxymuconate-6-semialdehyde (CHMS) dehydrogenase gene (ligC). CHMS is the 4,5-cleavage product of PCA and is converted into 2-pyrone-4,6-dicarboxylate (PDC) by LigC. We found that ligC was located 295 bp downstream of ligB, which encodes the large subunit of the PCA 4,5-dioxygenase. The ligC gene consists of a 945-bp open reading frame encoding a polypeptide with a molecular mass of 34,590 Da. The deduced amino acid sequence of ligC showed 19 to 20% identity with 3-chlorobenzoate cis-dihydrodiol dehydrogenase of Alcaligenes sp. strain BR60 and phthalate cis-dihydrodiol dehydrogenases of Pseudomonas putida NMH102-2 and Burkholderia cepacia DBO1, which are unrelated to group I, II, and III microbial alcohol dehydrogenases (M. F. Reid and C. A. Fewson, Crit. Rev. Microbiol. 20:13-56, 1994). The ligC gene was expressed in Escherichia coli and LigC was purified to near homogeneity. Production of PDC from CHMS catalyzed by LigC was confirmed in the presence of NADP(+) by electrospray ionization-mass spectrometry and gas chromatography-mass spectrometry. LigC is a homodimer. The isoelectric point, optimum pH, and optimum temperature were estimated to be 5.3, 8.0, and 25 degrees C, respectively. The K(m) for NADP(+) was estimated to be 24.6 +/- 1.5 microM, which was approximately 10 times lower than that for NAD(+) (252 +/- 3.9 microM). The K(m)s for CHMS in the presence of NADP(+) and NAD(+) are 26.0 +/- 0.5 and 20.6 +/- 1.0 microM, respectively. Disruption of ligC in S. paucimobilis SYK-6 prevented growth with vanillate. Only PCA was accumulated during the incubation of vanillate with the whole cells of the ligC insertion mutant (DLC), indicating a lack of PCA 4,5-dioxygenase activity in DLC. However, the introduction of ligC into DLC restored its ability to grow on vanillate. PDC was suggested to be an inducer for ligAB gene expression.

Aldehyde Oxidoreductases↗

The 4-oxalomesaconate hydratase gene, involved in the protocatechuate 4,5-cleavage pathway, is essential to vanillate and syringate degradation in Sphingomonas paucimobilis SYK-6.

Sphingomonas paucimobilis SYK-6 is able to grow on various dimeric lignin compounds, which are converted to vanillate and syringate by the actions of unique lignin degradation enzymes in this strain. Vanillate and syringate are degraded by the O-demethylase and converted into protocatechuate (PCA) and 3-O-methylgallate (3MGA), respectively. PCA is further degraded via the PCA 4,5-cleavage pathway, while the results suggested that 3MGA is degraded through another pathway in which PCA 4,5-dioxygenase is not involved. In a 10.5-kb EcoRI fragment carrying the genes for PCA 4,5-dioxygenase (ligAB), 2-pyrone-4,6-dicarboxylate hydrolase (ligI), and a portion of 4-carboxy-2-hydroxymuconate-6-semialdehyde dehydrogenase (ligC), we found the ligJ gene encoding 4-oxalomesaconate (OMA) hydratase, which catalyzes the conversion of OMA into 4-carboxy-4-hydroxy-2-oxoadipate. The ligJ gene is transcribed in the same direction as ligABC genes and consists of an 1,023-bp open reading frame encoding a polypeptide with a molecular mass of 38,008 Da, which is located 73-bp upstream from ligA. The ligJ gene product (LigJ), expressed in Escherichia coli, was purified to near homogeneity and was estimated to be a homodimer (69.5 kDa) by gel filtration chromatography. The isoelectric point was determined to be 4.9, and the optimal temperature is 30 degrees C. The K(m) for OMA and the V(max) were determined to be 138 microM and 440 U/mg, respectively. LigJ activity was inhibited by the addition of thiol reagents, suggesting that some cysteine residue is part of the catalytic site. The ligJ gene disruption in SYK-6 caused the growth defect on and the accumulation of common metabolites from both vanillate and syringate, indicating that the ligJ gene is essential to the degradation of these two compounds. These results indicated that syringate is converted into OMA via 3MGA, and it enters the PCA 4,5-cleavage pathway.

Amino Acid Sequence↗

Species-specific TT viruses and cross-species infection in nonhuman primates.

Viruses resembling human TT virus (TTV) were searched for in sera from nonhuman primates by PCR with primers deduced from well-conserved areas in the untranslated region. TTV DNA was detected in 102 (98%) of 104 chimpanzees, 9 (90%) of 10 Japanese macaques, 4 (100%) of 4 red-bellied tamarins, 5 (83%) of 6 cotton-top tamarins, and 5 (100%) of 5 douroucoulis tested. Analysis of the amplification products of 90 to 106 nucleotides revealed TTV DNA sequences specific for each species, with a decreasing similarity to human TTV in the order of chimpanzee, Japanese macaque, and tamarin/douroucouli TTVs. Full-length viral sequences were amplified by PCR with inverted nested primers deduced from the untranslated region of TTV DNA from each species. All animal TTVs were found to be circular with a genomic length at 3.5 to 3.8 kb, which was comparable to or slightly shorter than human TTV. Sequences closely similar to human TTV were determined by PCR with primers deduced from a coding region (N22 region) and were detected in 49 (47%) of the 104 chimpanzees; they were not found in any animals of the other species. Sequence analysis of the N22 region (222 to 225 nucleotides) of chimpanzee TTV DNAs disclosed four genetic groups that differed by 36.1 to 50.2% from one another; they were 35.0 to 52.8% divergent from any of the 16 genotypes of human TTV. Of the 104 chimpanzees, only 1 was viremic with human TTV of genotype 1a. It was among the 53 chimpanzees which had been used in transmission experiments with human hepatitis viruses. Antibody to TTV of genotype 1a was detected significantly more frequently in the chimpanzees that had been used in transmission experiments than in those that had not (8 of 28 [29%] and 3 of 35 [9%], respectively; P = 0.038). These results indicate that species-specific TTVs are prevalent in nonhuman primates and that human TTV can cross-infect chimpanzees.

Animals↗