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Biomedical subjects

S Wakisaka

Publications and source records attributed to S Wakisaka.

At least 145 records · Page 8Linked to original sources

Spontaneous discharge originates in the dorsal root ganglion at the onset of a painful peripheral neuropathy in the rat.

The activity of myelinated primary afferents was recorded from the dorsal roots 1-3 days after creation of a painful peripheral neuropathy in rats. The effects on spontaneous discharge of acute transections at various points along the injured sciatic nerve and the dorsal root were determined, as were the effects of K+ channel blockers applied topically to two putative sites of impulse origin: the injured region of the nerve and the dorsal root ganglion (DRG). Transections just proximal to the nerve injury and just distal to the DRG failed to halt the discharge, but spontaneous discharge disappeared when the transection was made just proximal to the DRG (i.e. between the DRG and recording electrode). K+ channel blockers (4-aminopyridine and gallamine triethiodide) applied to the DRG increased the frequency of spontaneous discharge or initiated activity from silent fibers. Applications of K+ channel blockers to the injured region of the nerve were without effect. Thus, the spontaneous discharge and the sensitivity to K+ channel blockade seen in A beta and A delta primary afferents at the time of the onset of the neuropathic pain syndrome appear to originate in the DRG.

4-Aminopyridine↗

Changes of cytochemical properties in the Golgi apparatus during in vivo differentiation of the ameloblast in developing rat molar tooth germs.

The cytochemical changes of the Golgi stacks occurring concomitantly with cell differentiation were examined in ameloblasts of developing rat molar tooth germs using osmium impregnation and cytochemistry with nicotinamide adenine dinucleotide phosphatase (NADPase), thiamine pyrophosphatase (TPPase), and acid phosphatase (Acpase). NADPase, TPPase, and Acpase activities were already present in the Golgi stacks of the inner enamel epithelial cells, the undifferentiated form of the ameloblast: NADPase activity existed in the medial Golgi cisternae, TPPase activity in the trans Golgi cisternae, and Acpase activity in almost all cisternae and strongly in the trans-most cisterna of the Golgi stack. At this stage, however, osmium deposits after impregnation were not observed in the cisterna of Golgi stacks but were present in some small vesicles. These vesicles were located throughout the cytoplasm. Osmiophilic cisternae in the Golgi stacks were apparent for the first time at the stage when the Golgi apparatus developed and migrated to the region distal to the nucleus with the progression of cell differentiation. These findings indicate that the cis subcompartment of the Golgi apparatus was incomplete in the inner enamel epithelial cells with regard to appearance of its cytochemical property, as compared with the medial and trans subcompartments. It is suggested that the cis compartment of the Golgi stack may be completed only in the last stage of the compartmentalized Golgi organization during differentiation of the ameloblast.

Acid Phosphatase↗

Magnetic resonance imaging of a malignant transformation of an intracranial cellular blue nevus. A case report.

As a follow-up to a case previously reported, a rare case of malignant transformation of cellular blue nevus (CBN) in the central nervous system preoperatively diagnosed by magnetic resonance imaging (MRI) is reported. On MRI, the malignant portion of the nevus was slightly hyperintense on both T1- and T2-weighted images. In contrast, the benign portion with a great deal of melanin was hyperintense on T1-weighted image and hypointense on T2-weighted image. MRI was useful and indispensable for detecting the malignant transformation of CBN.

Brain Neoplasms↗

C-fos expression in the rat brain after intraperitoneal injection of lithium chloride.

The distribution of evoked expression of the proto-oncogene c-fos was immunohistochemically examined in the rat brain after intraperitoneal injection of isotonic LiCl, which is commonly used to induce internal malaise in the conditioned taste aversion paradigm. C-fos-like immunoreactive neurones (c-fos neurones) were most densely observed in the central amygdaloid nucleus, external lateral subnucleus of the parabrachial nucleus (PBN), posteromedial and commissural parts of the nucleus of the tractus solitarius (NTS) and area postrema (AP). Experiments including vagotomy, intravenous injection of LiCl and lesions of the area postrema suggest that NTS neurones are activated via both sides of the vagus nerves, while AP neurones, humorally as well as neurally via the vagal nerve with a right side predominance. The activated NTS and AP neurones project mainly to the external lateral subnucleus of the PBN and lightly to the central lateral subnucleus of the PBN. These results are discussed in terms of the role of LiCl in the formation of conditioned taste aversion.

Animals↗

Distribution of calcitonin gene-related peptide and substance P-immunoreactive nerve fibers and their correlation in the periodontal ligament of the mouse incisor.

The distribution of calcitonin gene-related peptide (CGRP)- and substance P (SP)-immunoreactive (IR) nerve fibers and their correlation in the periodontal ligament of mouse incisors were examined by indirect immunofluorescence. Both CGRP-IR and SP-IR thin nerve fibers were abundant in the apical and middle third of the periodontal ligament. In the lingual portion of the incisal periodontal ligament, these nerve fibers were localized in the alveolar half of the periodontal ligament and were observed as free nerve endings. No CGRP-IR and SP-IR specialized nerve endings, such as Ruffini-like corpuscles, were observed. In the labial periodontal ligament, CGRP-IR and SP-IR nerve fibers ran along the incisal axis. The distribution of CGRP-IR nerve fibers was very similar to that of SP-IR nerve fibers.

Animals↗

Pituitary metastasis of thyroid follicular adenocarcinoma--case report.

A rare case of pituitary metastasis of thyroid follicular adenocarcinoma occurred in a 62-year-old female manifesting as left retro-orbital pain and diplopia. Computed tomography and magnetic resonance imaging revealed a tumor in the pituitary fossa extending to the left cavernous sinus, sphenoid sinus, and prepontine cistern, destroying the upper portion of the clivus. An asymptomatic thyroid mass, probably malignant, was also found. She also had an incidental small meningioma in the posterior fossa. The pituitary tumor was partially removed, and the thyroid and posterior fossa tumors were totally removed in two operations. Both pituitary and thyroid tumors were verified to be follicular adenocarcinoma. Postoperatively, she developed panhypopituitarism for which cortisol and thyroxine replacement therapy was necessary. Three years after first therapy, she was alive but her symptoms did not improve.

Adenocarcinoma↗

Increase in c-fos-like immunoreactivity in the trigeminal nucleus complex after dental treatment.

An immunohistochemical study was made of the temporal changes in the expression of the c-fos oncogene protein in the spinal trigeminal nucleus complex (STNC) after three different types of dental injury. One hour after tooth extraction or pulp exposure, c-fos neurons appeared in the ipsilateral subnucleus caudalis, but there were very few c-fos neurons in the ipsilateral subnuclei oralis and interpolaris, and in the trigeminal main sensory nucleus and contralateral STNC. The great number of c-fos neurons was found 2-4 hours after injury, levels decreased by 8 hours after injury. Twenty-four hours after injury, the number of these neurons in subnucleus caudalis became very small. Shallow cavity preparation, however, did not induce an increase in the number of c-fos neurons at any selected postoperative time in STNC. These results indicate that c-fos neurons appear mainly in subnucleus caudalis very soon after severe dental injury.

Animals↗

Increased neuropeptide Y (NPY)-like immunoreactivity in rat sensory neurons following peripheral axotomy.

The effects of peripheral axotomy (sciatic nerve transection) on the presence and distribution of neuropeptide Y (NPY) in rat dorsal root ganglion (DRG) and spinal grey matter were examined using immunocytochemistry. In normal rats and on the sham-operated side of experimental rats, NPY-like immunoreactivity (NPYir) was observed in all laminae of the lumbar spinal cord, with an especially dense concentration of immunostained axons and axonal varicosities in laminae I-II of the dorsal horn. There was no detectable NPYir in L4-L5 DRG cells from normal rats or from the sham-operated side of experimental rats. At 14 days after axotomy, there was a large ipsilateral increase in the density of NPYir axons and varicosities in the lumbar spinal cord on the side of the nerve injury; this was especially apparent in laminae III-V. In the same rats, NPYir was observed in many small, medium, and large neurons in the L4-L5 DRGs on the side of the severed nerve.

Animals↗

Claws of cilia: further observation of ciliated epithelium in neurenteric cyst.

Claw-like projections and related structures on cilium tips in neurenteric cyst epithelium are described. The ciliary claws are about 20 nm in length and just beneath them four parallel electron-dense areas or lines are discernible. Similar structures were also observed in another case of neurenteric cyst. These structures are very similar to those reported previously, and it is suggested that they are commonly present in various ciliated epithelia in Man.

Child, Preschool↗

Neuropeptide Y- and substance P-like immunoreactivities in the guinea pig parotid gland.

These immunoreactivities were examined by double immunofluorescence, which demonstrated that many nerve fibres around the glandular acini and blood vessels contain neuropeptide Y and substance P. It appears that these substances may coexist in nerve fibres around acini, but that there may be two populations of fibres containing these peptides around the blood vessels.

Animals↗

Ontogeny of cholinergic ganglionic cells which take up L-3,4-dihydroxyphenylalanine and contain vasoactive intestinal polypeptide in the mouse tongue.

During the prenatal development of the mouse tongue, the intralingual ganglion was investigated histochemically and immunohistochemically for acetylcholinesterase (AChE) activity, the capacity to take up L-3,4-dihydroxyphenylalanine (L-DOPA) and vasoactive intestinal polypeptide (VIP)-like immunoreactivity. AChE-positive cells were first observed at gestational day 12, and AChE-positive neurons which take up L-DOPA were found at gestational day 14, while VIP-like immunoreactive neurons were not seen until gestational day 16. The present results suggested that the cholinergic neurons within the mouse tongue can take up L-DOPA from gestational day 14 and synthesize VIP from gestational day 16.

Acetylcholinesterase↗

Aversive taste stimuli increase CGRP levels in the gustatory insular cortex of the rat.

Calcitonin gene-related peptide-like immunoreactivity (CGRP-IR) was surveyed immunohistochemically in the insular cortex of the rat, and the levels of insular cortical CGRP-IR were measured with the radioimmunoassay method following intraoral stimulation with various taste stimuli. CGRP-IR was localized in nerve fibers within the agranular and dysgranular insular cortices. The CGRP-IR levels in the rostral (gustatory) part of the insular cortex were increased significantly by strongly aversive taste stimuli such as quinine hydrochloride and conditioned taste stimuli (NaCl and sucrose) which animals had been taught to avoid. The results suggest that CGRP in the gustatory insular cortex is concerned with rejection or avoidance behaviors to aversive taste stimuli.

Animals↗

Re-innervation of rat molar tooth pulp following transection of the inferior alveolar nerve.

The inferior alveolar nerves (IAN) of young male Wistar rats (b.wt. greater than or equal to 200 g) were transected unilaterally, slightly proximal to the mandibular foramen under anesthesia with chloral hydrate (0.4 g/kg, i.p.). After various postoperative periods of time, the animals received horseradish peroxidase (HRP) applications to 3 mandibular molar tooth pulps on both sides and were fixed by transvascular perfusion 24 h later. Horizontal 60 microns sections of the trigeminal ganglion were incubated with tetramethylbenzidine hydrochloride and the cross-sectional areas of all the labeled neuronal cell bodies were measured. The average number of labeled cells on the untransected (control) side was 148 (n = 26), with cross-sectional areas ranging between 131.9 and 2129.6 microns 2. Of these, 42.5% fell between 300 and 600 microns 2. About 13.5% (n = 7) of the primary neurons innervating the tooth pulps escaped the ipsilateral neurotomy and were labeled by HRP application on postoperative day 0. With HRP application on postoperative day 3, the number of labeled neurons recovered to 56.8% (n = 7) that of the control and maintained this level up to postoperative day 75. From postoperative days 3 through 75, the cell size spectrum of labeled neurons on the transection side was similar to that of the control and no consistent tendency of alteration was observed; i.e. they were distributed between 134.4 and 2214.3 microns 2, with the mode being 41.5% in the range between 300 and 600 microns 2 (n = 19).

Animals↗

Influence of colchicine on the addition of a sugar to the enamel protein in secretory ameloblasts of cultured germs of rat molar tooth by 3H-galactose radioautography.

The influence of colchicine on the addition of 3H-galactose to the enamel protein in secretory ameloblasts of cultured germs of rat molar tooth was investigated by light- and electron-microscopic radioautography. In tooth germs cultured without colchicine, the reaction products of 3H-galactose were observed over Golgi cisternae at early chase times and then localized over the enamel with time. In tooth germs cultured with colchicine, the silver grains were seen over the Golgi cisternae, condensing granules and accumulated secretory granules. Some grains also appeared with time over the pale granular material precipitated in the intercellular space with colchicine treatment. In quantitative analysis with light microscopic radioautography, values of silver grain counts over the unit area (100 microns2) on ameloblasts and enamel of colchicine-treated tooth germs were significantly lower at both 0 min and 30 min chase after 30 min pulse than those of control tooth germs, respectively. This finding indicates that colchicine diminished the incorporation of 3H-galactose into the secretory ameloblast of cultured tooth germs. It is suggested that colchicine decreases the activity of the Golgi apparatus with regard to the addition of sugar to the synthesizing glycoprotein in the secretory ameloblast.

Ameloblasts↗

Leucine-enkephalin-, neurokinin A- and cholecystokinin-like immunoreactivities in the guinea pig tongue.

The occurrence of these neuropeptides was examined by immunofluorescence. Leu-Enk-like immunoreactivity was seen in nerve fibres associated with the epithelium, blood vessels and lingual salivary glands as well as in ganglionic cells within the tongue. Neuropeptide A-like immunoreactivity was found in nerve fibres associated with the epithelium, taste buds, blood vessels and lingual salivary glands. Cholecystokinin-like immunoreactivity was found in some nerve fibres around blood vessels as well as in ganglionic cells. The coexistence of these neuropeptides and substance P was also demonstrated in some nerve fibres and ganglionic cells within the tongue. Like substance P, these neuropeptides could be involved in blood flow regulation, salivation and as trophic factors for taste buds.

Animals↗

Fine structure of calcitonin gene-related peptide-immunoreactive nerve fibres in the rat temporomandibular joint.

The distribution and fine structure of these nerve fibres was examined by immunoelectron microscopy. CGRP-immunoreactive fibres were seen in the nerve bundles, blood vessels and periosteum around the condyle as well as in the disc. These nerve fibres were unmyelinated and had diameters varying from 200 to 600 nm. They were completely or partially enclosed by Schwann cell cytoplasm and did not form synaptic contact with any cells. CGRP-immunoreactive nerve fibres may be sensory nature and this peptide could be involved in pain transmission and neurogenic inflammation.

Animals↗

The distribution of vasoactive intestinal polypeptides and calcitonin gene-related peptide in the periodontal ligament of mouse molar teeth.

The distribution of VIP- and CGRP-containing nerve fibres was examined by indirect immunofluorescence. There were many such fibres in the lower third of the ligament, some around the blood vessel close to the socket wall. In the middle third of the ligament, some CGRP-containing fibers entered from the lateral wall of the socket; this type of fibre was more numerous in the lower third than in middle third. There were some VIP-containing fibres but no CGRP-containing fibres in the ligament surrounding the furcation of the molar roots.

Alveolar Process↗

Neuropeptides in the dental pulp: distribution, origins, and correlation.

It is known that many factors participate in the process of inflammation and pain transmission. Recently, various neuropeptides have been demonstrated in the intrapulpal nerve fibers immunobiohistochemically. These neuropeptides may play some role in the process of inflammation and transmission of pain sensation. In this presentation, the distribution, origins, and correlation of neuropeptides in the dental pulp is reviewed.

Dental Pulp↗