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Biomedical subjects

Takashi Fujiwara

Publications and source records attributed to Takashi Fujiwara.

At least 19 recordsLinked to original sources

Pancreaticopleural fistula visualized by computed tomography scan combined with pancreatography.

CONTEXT: We report a case of a pancreaticopleural fistula which was clearly demonstrated by computed tomography (CT) scan following pancreatography and which was successfully treated with endoscopic nasopancreatic drainage combined with octreotide. CASE REPORT: A 52-year-old male was admitted to our hospital for additionally evaluation of bilateral pleural effusion. The pleural fluid amylase level was markedly elevated. Endoscopic retrograde pancreatography showed a cyst in the body of the pancreas and extravasation of contrast medium extending cranially from the cyst. The disease was treated successfully with endoscopic nasopancreatic drainage combined with the administration of octreotide. A pancreaticopleural fistulous route was clearly demonstrated by CT scan following pancreatography through the nasopancreatic drainage tube. CONCLUSIONS: A CT scan following pancreatography was useful in demonstrating a pancreaticopleural fistulous route.

Drainage↗

Mapping a nucleolar targeting sequence of an RNA binding nucleolar protein, Nop25.

Nop25 is a putative RNA binding nucleolar protein associated with rRNA transcription. The present study was undertaken to determine the mechanism of Nop25 localization in the nucleolus. Deletion experiments of Nop25 amino acid sequence showed Nop25 to contain a nuclear targeting sequence in the N-terminal and a nucleolar targeting sequence in the C-terminal. By expressing derivative peptides from the C-terminal as GFP-fusion proteins in the cells, a lysine and arginine residue-enriched peptide (KRKHPRRAQDSTKKPPSATRTSKTQRRRR) allowed a GFP-fusion protein to be transported and fully retained in the nucleolus. When the peptide was fused with cMyc epitope and expressed in the cells, a cMyc epitope was then detected in the nucleolus. Nop25 did not localize in the nucleolus by deletion of the peptide from Nop25. Furthermore, deletion of a subdomain (KRKHPRRAQ) in the peptide or amino acid substitution of lysine and arginine residues in the subdomain resulted in the loss of Nop25 nucleolar localization. These results suggest that the lysine and arginine residue-enriched peptide is the most prominent nucleolar targeting sequence of Nop25 and that the long stretch of basic residues might play an important role in the nucleolar localization of Nop25. Although Nop25 contained putative SUMOylation, phosphorylation and glycosylation sites, the amino acid substitution in these sites had no effect on the nucleolar localization, thus suggesting that these post-translational modifications did not contribute to the localization of Nop25 in the nucleolus. The treatment of the cells, which expressed a GFP-fusion protein with a nucleolar targeting sequence of Nop25, with RNase A resulted in a complete dislocation of the protein from the nucleolus. These data suggested that the nucleolar targeting sequence might therefore play an important role in the binding of Nop25 to RNA molecules and that the RNA binding of Nop25 might be essential for the nucleolar localization of Nop25.

Amino Acid Sequence↗

Molecular cloning and characterization of Nop25, a novel nucleolar RNA binding protein, highly conserved in vertebrate species.

We report here the identification and characterization of a novel nucleolar RNA binding protein, referred to as Nop25 as based on its predicted molecular size and subcellular location. Nop25 homologues were widely discovered in diverse vertebrate species as hypothetical proteins, but not found in yeasts, plants and prokaryotic organisms. Nop25 was ubiquitously expressed in adult mouse organs and constitutively during mouse embryogenesis. Indirect immunofluorescence analysis with an anti-Nop25 antibody, as well as an experiment using a GFP-fused protein, demonstrated that Nop25 was localized in the nucleolus. Treatment of the cells with a low doses of actinomycin D caused Nop25 to translocate to the periphery of the nucleolus, suggesting that nucleolar localization of Nop25 is associated with rRNA transcription. Treatment of COS7 cells with RNase A resulted in a complete dissociation of Nop25 from the nucleolus, while in vitro binding assay demonstrated that Nop25 could bind directly to single-stranded nucleic acids. Further characterization of associated RNA molecules with Nop25 using immunoprecipitation experiment showed that Nop25 might bind to 28S rRNA. Studies on this novel nucleolar RNA binding protein may provide new information on the intricate nucleolar machinery as related to the transcription and processing of rRNA molecules and/or the subsequent assembly and maturation of ribosomes.

Amino Acid Sequence↗

Wide resection of the upper right hemithorax combined with amputation of the right arm for a recurrent desmoid tumor.

A 66-year-old woman had a recurrent desmoid tumor in the right thoracic apex. The tumor infiltrated the brachial plexus and eventually rendered the upper right extremity functionless. The tumor was removed by aggressive wide resection of the right upper hemithorax with simultaneous amputation of the functionless right arm. Reconstruction of the chest wall was accomplished, utilizing the soft tissues of the remnant arm as a pedicled flap to cover the full-thickness defect. Aggressive wide resection of the chest wall with limb amputation is technically challenging but unavoidable in some cases of recurrent desmoid tumor.

Aged↗

Modified split V-W plasty for entropion with an epicanthal fold in Asian eyelids.

BACKGROUND: The epicanthal fold, which is peculiar to East Asians, forms an arch across the medial canthus in parallel with the nose. It is often accompanied by entropion of the medial eyelid. Although many surgical procedures have been described for correction of the epicanthal fold, none has reported a procedure to treat the epicanthal fold and entropion at the same time. The authors have performed a modified split V-W plasty to simultaneously correct entropion and to modify the epicanthal fold. METHODS: From January of 1998 to December of 2002, we have performed a modified split V-W plasty in 20 cases. The preoperative and postoperative medial canthal distances and palpebral fissure width were measured, and the extent of postoperative scarring and improvement of the epicanthal fold and entropion were reviewed. RESULTS: This method provided good results, including an inconspicuous scar, release of the epicanthal fold, and improvement of entropion. CONCLUSION: The authors believe that the modified split V-W plasty is available to eliminate entropion with an epicanthal fold in Asian eyelids.

Adolescent↗

Phylogenetic investigation of Dogiel's pericellular nests and Cajal's initial glomeruli in the dorsal root ganglion.

Cajal's initial glomeruli (IG) and Dogiel's pericellular nests (PCNs) were first described from methylene blue preparations of healthy animal tissues around the beginning of the last century. Since that time, although many reports have been published concerning these structures, few have focused on their development and phylogeny in healthy animals. The aim of this study was to examine the phylogenetic development of the sensory neurons in Cajal's IG (also called axonal glomeruli) and Dogiel's PCNs in the dorsal root ganglion (DRG) of the healthy adult frog, chick, rat, and rabbit. The three-dimensional architecture of the neurons was observed in ganglia by scanning electron microscopy after removal of the connective tissue. The neurons in the DRG of fish are known to be bipolar, but DRG neurons in the species examined here were found to be pseudounipolar, with single stem processes. The proportion of neurons having IG or PCNs increased with increasing phylogenetic complexity in the species examined here. Cajal's initial glomeruli, the convolution of the stem process near the parent cell body: In frogs, the ganglia were small and the neuronal stem processes were very short and straight. In chicks, the stem processes were longer; sometimes very long, tortuous processes were observed. However, no neurons with typical IG were observed in either species. Typical IG were observed in rats and rabbits; their occurrence was much more frequent in rabbits. Pseudounipolarization, i.e., the transition from bipolar to pseudounipolar neurons, is thought to save space, limit the length of neuronal processes, and reduce conduction time. However, an explanation of the evolutionary advantage of the IG, which is formed by the excessive prolongation of the stem process, remains elusive. The cytological and electrophysiological importance of IG has been discussed. Dogiel's pericellular nests (PCNs), which resemble balls of yarn made of thin unmyelinated nerve fibers around DRG neurons, have been observed in the DRG of rats and rabbits, but not in frogs or chicks. This interesting structure shows not only ontogenetic development in healthy animals but also phylogenetic development among species. The nerve fibers in the PCNs were less than 1.2 mum in diameter and had some varicosities. An immunohistochemical study using anti-tyrosine hydroxylase (TH) antibody revealed that some PCNs contain TH-positive nerve fibers and varicosities. Such TH-positive PCNs disappear after sympathectomy. These results suggest that the PCNs are made up of autonomic nerve fibers.

Animals↗

Leg dysfunctions in a hatched chick model of spina bifida aperta.

We created chicks with spina bifida aperta (SBA) by incising the roof plate of the neural tube of embryos at Hamburger and Hamilton stage 18 or 19. Incision over the length of three somites caused spina bifida occulta (SBO)-like malformation in 47% of the hatchlings. Incision over the length of five and seven somites caused SBA-like malformation in 100% of the hatchlings. The SBO chicks exhibited no symptoms, whereas the SBA chicks exhibited paralysis of a leg muscle and imbalance between an agonist and an antagonist leg muscles. Lesions in these SBA chicks were located in the spinal segments that give rise to motor neurons that innervated the dysfunctional muscles. Histological analysis revealed that there were fewer small spinal neurons (interneurons) at the site of the lesion in SBA chicks than in the normal chicks and that there was no such difference in the number of the large spinal neurons (motor neurons). Leg dysfunctions in this model of SBA may be attributable to the smaller number of interneurons in the spinal segments that contain motor neurons that innervate the dysfunctional muscle. This model may facilitate studies of the pathological mechanisms that lead to leg dysfunctions in SBA chicks.

Animals↗

A novel procedure using a tissue expander for management of persistent alveolar fistula after lobectomy.

We treated a patient with postlobectomy persistent alveolar fistula using a tissue expander, which is a prosthesis widely used in plastic surgery. The patient had thoracic empyema develop after right bilobectomy for lung cancer, and consequently underwent drainage of empyema followed by muscle flap closure for alveolar fistula. A residual space remained, and air leak persisted. However, implanting and expanding a tissue expander enabled us to tightly fix the flap on the raw pulmonary surface, which eventually solved the air leak. The tissue expander greatly contributed to muscle flap closure for a persistent alveolar-pleural fistula with a large remaining thoracic space.

Carcinoma, Non-Small-Cell Lung↗

Functional expression of CCL6 by rat microglia: a possible role of CCL6 in cell-cell communication.

There is growing evidence that chemokines play important roles in the immune surveillance of central nervous system (CNS). In the CNS, microglia are primary immune effector cells and secrete various chemokines in response to their microenvironment. Using the RT-PCR procedure and indirect immunofluorescence analysis, we found that CCL6 (known as C10/MRP-1 in mouse) was expressed in rat primary microglia without any stimulation, but not in primary astrocytes, although both cell types expressed CCR1 mRNA, which is a receptor for CCL6. Furthermore, immunohistochemical analysis demonstrated that microglia produced CCL6 protein in a normal brain, suggesting that microglia may be the primary source of CCL6 in a normal brain. Recombinant rat CCL6 mediated the migration of microglia and astrocytes in vitro. The CCL6-mediated cell migration was blocked by treating the cells with LY294002, a PI3-kinase inhibitor and Western blot analysis showed that the phosphorylation of Akt could be induced by treating microglia with a recombinant CCL6, suggesting that CCL6 functions by activating the PI3-kinase/Akt pathway. A proinflammatory cytokine, interferon-gamma enhanced the expression of both CCL6 mRNA and protein in microglia, while other proinflammatory cytokines, interleukin-6 and tumor necrosis factor-alpha and an anti-inflammatory cytokine, transforming growth factor-beta exerted no effect on CCL6 expression in microglia. These findings suggest that CCL6 may be a mediator released by microglia for cell-cell communication under physiological as well as pathological conditions of CNS.

Analysis of Variance↗

Brain stem ischemia from intracranial dural arteriovenous fistula: case report.

BACKGROUND: Intracranial dural arteriovenous fistulas (AVFs) with spinal perimedullary venous drainage are rarely reported, but most of the patients initially have presented with myelopathy or subarachnoid hemorrhage. This is the first report of the intracranial dural AVF patient who presented with brain stem infarction. CASE DESCRIPTION: A 38-year-old woman experienced nausea and vomiting with an acute onset, followed by vertigo. Magnetic resonance imaging showed ischemic lesion in the medulla oblongata, and she was then sent to our hospital. On admission, she had nystagmus, swallowing difficulties, Homer syndrome, and right hemiparesis and hemisensory disturbance. Cerebral angiography revealed dural AVF draining into spinal perimedullary veins at the left transverse-sigmoid sinus. The patient was treated by transvenous embolization under local anesthesia. A microcatheter proceeded to the left sigmoid sinus via the internal jugular vein, and embolization of the sinus was performed using coils without complications. The patient's swallowing difficulties improved over a few days after the embolization, and one month later, there remained only a slight mild hemiparesis and hemisensory disturbance. Six months after the onset, there was no ischemic lesion in the brain stem on magnetic resonance imaging. CONCLUSIONS: In this case, we showed the possibility of brain stem infarction, caused by the intracranial dural AVF.

Adult↗

A novel function of WAVE in lamellipodia: WAVE1 is required for stabilization of lamellipodial protrusions during cell spreading.

When a cell spreads and moves, reorganization of the actin cytoskeleton pushes the cell membrane, and the resulting membrane protrusions create new points of contact with the substrate and generate the locomotive force. Membrane extension and adhesion to a substrate must be tightly coordinated for effective cell movement, but little is known about the mechanisms underlying these processes. WAVEs are critical regulators of Rac-induced actin reorganization. WAVE2 is essential for formation of lamellipodial structures at the cell periphery stimulated by growth factors, but it is thought that WAVE1 is dispensable for such processes in mouse embryonic fibroblasts (MEFs). Here we show a novel function of WAVE in lamellipodial protrusions during cell spreading. During spreading on fibronectin (FN), MEFs with knockouts (KOs) of WAVE1 and WAVE2 showed different membrane dynamics, suggesting that these molecules have distinct roles in lamellipodium formation. Formation of lamellipodial structures on FN was inhibited in WAVE2 KO MEFs. In contrast, WAVE1 is not essential for extension of lamellipodial protrusions but is required for stabilization of such structures. WAVE1-deficiency decreased the density of actin filaments and increased the speed of membrane extension, causing deformation of focal complex at the tip of spreading edges. Thus, at the tip of the lamellipodial protrusion, WAVE2 generates the membrane protrusive structures containing actin filaments, and modification by WAVE1 stabilizes these structures through cell-substrate adhesion. Coordination of WAVE1 and WAVE2 activities appears to be necessary for formation of proper actin structures in stable lamellipodia.

Actin Cytoskeleton↗

Phospholipase C-delta1 and -delta3 are essential in the trophoblast for placental development.

Phosphoinositide-specific phospholipase C (PLC) is a key enzyme in phosphoinositide turnover and is involved in a variety of physiological functions. We analyzed PLCdelta1 knockout mice and found that PLCdelta1 is required for the maintenance of skin homeostasis. However, there were no remarkable abnormalities except hair loss and runting in PLCdelta1 knockout mice, even though PLCdelta1 is broadly distributed. Here, we report that mice lacking both PLCdelta1 and PLCdelta3 died at embryonic day 11.5 (E11.5) to E13.5. PLCdelta1/PLCdelta3 double-knockout mice exhibited severe disruption of the normal labyrinth architecture in the placenta and decreased placental vascularization, as well as abnormal proliferation and apoptosis of trophoblasts in the labyrinth area. Furthermore, PLCdelta1/PLCdelta3 double-knockout embryos supplied with a normal placenta by the tetraploid aggregation method survived beyond E14.5, clearly indicating that the embryonic lethality is caused by a defect in trophoblasts. On the basis of these results, we conclude that PLCdelta1 and PLCdelta3 are essential in trophoblasts for placental development.

Animals↗

WAVE2 is required for directed cell migration and cardiovascular development.

WAVE2, a protein related to Wiskott-Aldrich syndrome protein, is crucial for Rac-induced membrane ruffling, which is important in cell motility. Cell movement is essential for morphogenesis, but it is unclear how cell movement is regulated or related to morphogenesis. Here we show the physiological functions of WAVE2 by disruption of the WAVE2 gene in mice. WAVE2 was expressed predominantly in vascular endothelial cells during embryogenesis. WAVE2-/- embryos showed haemorrhages and died at about embryonic day 10. Deficiency in WAVE2 had no significant effect on vasculogenesis, but it decreased sprouting and branching of endothelial cells from existing vessels during angiogenesis. In WAVE2-/- endothelial cells, cell polarity formed in response to vascular endothelial growth factor, but the formation of lamellipodia at leading edges and capillaries was severely impaired. These findings indicate that WAVE2-regulated actin reorganization might be required for proper cell movement and that a lack of functional WAVE2 impairs angiogenesis in vivo.

Animals↗

Internalization of antibodies by endothelial cells via fibronectin implicating a novel mechanism in lupus nephritis.

BACKGROUND: One of the crucial events in lupus nephritis is the glomerular deposition of immunoglobulins (Igs), of which pathogenic properties have been proposed mostly to be either type IIor type III allergic reactions. Some of IgG3-producing hybridoma clones established from an MRL/MpTn-gld/gld (MRL/gld) lupus mouse generate wire loop-like lesions in glomeruli resembling lupus nephritis when injected into SCID mice. These clones are useful for analyzing the mechanisms of glomerular deposition of antibodies in lupus nephritis at the monoclonal level. METHODS: Glomerular lesions of SCID mice injected with the hybridoma clones, 17H8a or 1G3 as control were analyzed by light and electron microscopy. Interaction of the antibodies with human glomerular endothelial cells (HGECs) and human umbilical vein endothelial cells (HUVECs) in vitro was studied by fluorescence microscopy, electron microscopy, and flow cytometry. RESULTS: Both antibodies did not show any antigen specificity for mouse glomeruli. The glomerular lesions generated by 17H8a, but not by 1G3, contained electron-dense deposits not only in subendothelial regions but also in the cytoplasm of endothelial cells, suggesting internalization of the 17H8a antibodies by endothelial cells. In cell culture studies, internalization of only 17H8a antibodies by HGECs and HUVECs was observed, but the antibodies did not have antigen specificity for both types of endothelial cells. The internalization by HUVECs was mediated by actin polymerization, and it was inhibited by RGDS (Arg-Gly-Asp-Ser) tetrapeptide, antihuman fibronectin and antihuman integrin beta1 monoclonal antibodies. CONCLUSION: The interaction between particular antibodies and endothelial cell surface integrins via fibronectin may be involved in their subsequent internalization by endothelial cells leading to antibody deposition in glomeruli. This may be one of the mechanisms of glomerular injury in lupus nephritis.

Animals↗

Long-term follow-up of intraductal papillary adenoma of the pancreas.

Intraductal papillary mucinous tumors of the main pancreatic duct are often considered to be premalignant or malignant, and therefore surgical resection is recommended. We report two autopsy cases of intraductal papillary mucinous tumor of the pancreas following long-term observation. The first patient was an 84-year-old man with early gastric cancer treated by endoscopic mucosectomy. The second patient was a 77-year-old man with hepatocellular carcinoma treated by percutaneous pure ethanol injection and transarterial embolization. In both patients, endoscopic retrograde pancreatography showed a diffusely dilated main pancreatic duct, with intraductal filling defects expressing mucus, as well as dilated side branches. Obvious intramural nodules were not detected. Due to their advanced age and personal requests, both patients were managed conservatively and followed nonoperatively. In the first patient, serial pancreatograms showed progression of the pancreatic duct dilatation. Both patients died of gastric cancer, the first patient 7(1)/(2) years and the second, 10 years after first presentation, respectively. Autopsies revealed extensive intraductal papillary adenoma throughout the dilated mucus-filled main pancreatic duct. However, there was no evidence of progression to adenocarcinoma. Based on these observations, we suggest that, in patients with intraductal papillary mucinous tumor of the pancreas without obvious intramural nodules, even if the tumor is in the main pancreatic duct, pancreatectomy may not be mandatory, particularly in the elderly.

Adenocarcinoma↗