PubMed Health⌕ Search

Biomedical subjects

M Seike

Publications and source records attributed to M Seike.

48 records · Page 3Linked to original sources

[Gonadotropin, as a tumor marker, in body fluid and tumor tissues of germ cell tumors].

The value of gonadotropin in the body fluids of germ cell tumor patients is its usefulness as a tumor marker. It is also used for differential diagnosis and/or judgement of therapeutic effects. In order to clarify the most effective value of gonadotropin as a tumor marker in the body fluids, we compared the value in serum, liquor and urine with one another. The liquor contained highest (1650 IU/l) value of gonadotropin in the primary intracranial germ cell tumors, mostly in choriocarcinoma. But the gonadotropin value was highest (3050 IU/l) in the serum of secondary intracranial choriocarcinoma. Chiasmal germ cell tumor, except choriocarcinoma, which does frequently secrete gonadotropin (alpha, beta) showed moderate or very high values in the liquor. However, pineal germ cell tumors rarely secrete gonadotropin and sometimes mild high value are obtained in the serum without gonadotropin secretion immunohistochemically. In such cases, the gonadotropin may be increased by indirect mechanism of gonadotropin-secretion following pineal disorder. In most of such cases, the gonadotropin was not human chorionic gonadotropin (HCG) but lutein hormone (LH). Because alpha-subunit of such gonadotropin has the same structure, their antibodies show immunologic cross reaction. So, a count of beta-subunit gonadotropin in the serum or liquor is the best way for differential diagnosis or judgement of therapeutic effects. From our results, it is considered that the tumor secretes HCG if the serum beta-HCG value was higher than 30 IU/l, and that it doesn't secrete HCG if beta-HCG value was lower than 10 IU/l or non calculable. The mild increased HCG may be caused by hypothalamo-diencephalic disorder such as pineal tumor.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Erythrocyte aggregation as a determinant of blood flow: effect of pH, temperature and osmotic pressure.

The effect of pH, temperature and osmotic pressure on velocity of erythrocyte aggregation was quantitatively examined with a rheoscope combined with a video-camera, an image analyzer and a computer, (a) in an artificial medium containing fibrinogen and albumin and (b) in diluted autologous plasma. (1) With increasing pH of the medium, the velocity of erythrocyte aggregation increased. (2) The velocity of erythrocyte aggregation in the artificial medium increased as the temperature rose. However, in 70% autologous plasma the velocity was minimum at 15-18 degrees C, increasing both above and below this temperature (above 30 degrees C, the velocity saturated). (3) The velocity of erythrocyte aggregation decreased in hypotonic medium, while it increased in hypertonic medium (at osmotic pressures higher than 400 mOsm, the velocity decreased). The mechanism of erythrocyte aggregation is discussed with special reference to the morphological changes produced by pH, temperature and osmotic pressure, and the implications of the phenomena for oxygen transport to tissues in (patho)physiological situations are considered.

Adult↗

Effect of pH on the velocity of erythrocyte aggregation.

The effect of pH on the velocity of aggregation of human erythrocytes was quantitatively examined with a rheoscope combined with a video-camera, an image analyzer and a computer, in relation to the morphological changes of erythrocytes and their aggregates. (i) With increasing pH of the medium, the velocity of erythrocyte aggregation increased. (ii) The rouleaux formed at high pH were longer in shape and more stable against the increase of shear rate than those formed at low pH. (iii) With increasing pH, the diameter of erythrocyte increased, the (maximum) thickness decreased, and the cell volume decreased. The pH dependency of erythrocyte aggregation may be mainly due to the morphological change of erythrocytes, and partly due to the changes of erythrocyte deformability and of interaction with macromolecules.

Erythrocyte Aggregation↗

Effect of temperature on the velocity of erythrocyte aggregation.

The velocity of the aggregation of human erythrocytes was examined in the range of 5-43 degrees C with a rheoscope combined with a video camera, an image analyzer and a computer. (1) With increasing temperature, the velocity of erythrocyte aggregation induced by fibrinogen, immunoglobulin G and artificial macromolecules (dextran of 70 kDa and poly(glutamic acid) of 50 kDa) increased. However, the relationship between the velocity of erythrocyte aggregation and the temperature was different among these macromolecules. (2) In 70% autologous plasma, the velocity of erythrocyte aggregation was minimum at 15-18 degrees C, and increased at both higher and lower temperatures. (3) The shape of erythrocyte aggregates in 12 mumol/l fibrinogen (containing 770 mumol/l albumin) and in 70% autologous plasma was dependent on temperature: three-dimensional below 15-18 degrees C and one-dimensional (mainly rouleaux) above 15-18 degrees C. However, the shape of aggregates in 27 mumol/l immunoglobulin G (containing 770 mumol/l albumin) was three-dimensional in all temperature ranges. (4) The temperature dependency of erythrocyte aggregation was discussed in terms of the changes of medium viscosity, of erythrocyte properties and of bridging macromolecules.

Adult↗

Fibrinogen-induced erythrocyte aggregation: erythrocyte-binding site in the fibrinogen molecule.

The effect of fibrinogen and fibrinogen-derived products on the velocity of rouleau formation of human erythrocytes was quantitatively examined with a rheoscope combined with a video-camera, an image analyzer and a computer. (i) The velocity of rouleau formation by naturally occurring low-molecular-weight fibrinogen of 305 kDa and by desialylated fibrinogen was the same as that by native fibrinogen of 340 kDa. (ii) Concerning fibrinogen degradation products by plasmin, the velocity of rouleau formation decreased upon going from fibrinogen greater than fragment X greater than fragment Y (the ratio of molar concentration of fibrinogen, fragment X and fragment Y for giving a certain velocity of rouleau formation was approx. 1:2:5). The effect of fragments X and Y on the fibrinogen-induced rouleau formation was additive. (iii) Fragments D and E could not induce rouleau formation and did not affect the fibrinogen-, fragment X- and fragment Y-induced rouleau formation. (iv) Fibrinopeptides A and B and artificial tetrapeptides (Gly-Pro-Arg-Pro and Gly-His-Arg-Pro) did not affect the fibrinogen-induced rouleau formation. (v) The possible erythrocyte-binding site in fibrinogen molecule for leading to rouleaux was proposed to be in A alpha-chain (probably, around residues No. 207-303) near the terminal domain of the trinodular structure of fibrinogen.

Binding Sites↗

[Primary intracranial endodermal sinus tumor with a skull base extension--a case report].

The authors described a case of primary intracranial endodermal sinus tumor (EST), and presented a review of 24 reported cases. From the middle of December 1981, this 15-year-old boy experienced progressive diplopia. At the other hospital, partial removal of the intrasellar tumor was performed by a left frontotemporal craniotomy approximately 2 months after the onset of symptoms. The histological diagnosis was suspected to be a pituitary adenoma, and thereafter, 60Co irradiation was carried out for about a month. On June 5th. 1982, the patient was admitted to the Kochi Medical School Hospital, because of increasing headache with diplopia, hoarseness, dysphagia and limitation of tongue movement. On admission, he had a small stature for his age with moderate diabetes insipidus. Neurological examination showed left abducens, glossopharyngeal and vagal nerve palsies in addition to bitemporal hemianopsia. CT scans revealed a heterogenously enhanced high density mass lesion behind the dorsum sellae with an extension from the upper clivus to the sphenoid sinus. Cerebral angiograms showed posterior displacement of the basilar artery. In the endocrinological examination, panhypopituitarism was recognized with a high level of serum alfa-fetoprotein (AFP). While, serum carcinoembryonic antigen (CEA) and human chorionic gonadotropin (HCG) were in normal range. On July 1st. 1982, a left suboccipital craniectomy was performed. The tumor existed mainly in the extradural space along the clivus, and only a small intradural portion of the tumor was excited.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

[Alumina ceramic (Bioceram) as the cranioplastic material--experimental study and application in cranioplasty].

External decompression is an effective treatment for acute intracranial hypertension, but the repair of cranial defect by cranioplasty is necessary sooner or later. Various materials have been used for cranioplasty, such as bone, metallic materials and methyl methacrylate. Alumina ceramic (Bioceram), which is known to be extremely compatible with tissues, has already been used in the operations of not only orthopedic and oral surgery but also neurosurgery such as transsphenoidal surgery and anterior cervical fusion. At first, we implanted pieces of ceramic and small titan shield in the parietal bone of mongrel dogs. In this experimental study, tissue compatibility and osteogenesis are investigated in each case. The new bone formation was observed macroscopically and histologically around the ceramic pieces, but there were no osteogenic changes around the titan shields. Then ceramic plates, which were designed just as patients' own bone flaps, and titan shields were used for cranioplasties after decompression surgery, and compared clinically and histologically. The ceramic plate is superior than the titan shield in its strength, tissue-compatibility and excellent fit for cranial defect compared with the titan shield. There was no tissue reaction such as subgaleal fluid collection just as seen in the application of acryl resin. We believe that Alumina ceramic (Bioceram) is a good material for cranioplasty.

Aluminum↗

The distribution fields of sensory neurons in the human thalamus.

Thalamic neurons were identified by activity related to passive joint movement, active joint movement, tapping stimulation, and light touch stimulation during surgery to treat movement disorders. The neurons were classified into three types: movement-related neurons, tapping-related neurons, or superficial sensory neurons. Tapping-related neurons had characteristics of lemniscal sensory neurons and occupied the border area of movement-related neurons and superficial sensory neurons. Tapping-related neurons showed a laminar distribution 1.0-1.5 mm in width in the anterodorsal region of the nucleus ventrocaudalis. Results suggest that the distribution pattern of tapping-related neurons in the human thalamus is consistent with the functional distribution pattern found in the monkey thalamus.

Brain Mapping↗