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Biomedical subjects

S Suga

Publications and source records attributed to S Suga.

At least 343 records · Page 19Linked to original sources

[Mode of action of fluoropyrimidines, in relation to their clinical application].

From results which we obtained in experiments on 5-fluoropyrimidine analogs, it was demonstrated that the mode of action of these compounds was as follows: In human cancer, in contrast to experimental animal tumors, it was demonstrated that thymidine phosphorylase (Thd Pase) activity was dominant compared to that of uridine phosphorylase (Urd Pase). This observation would indicate that 5-fluorouracil (5-FU) was mainly metabolized to produce 5-fluoro-2'-deoxyuridine-5'-monophosphate (FdUMP), via 5-flu fluoro-2'-deoxyuridine(FdUR). FdUMP would inhibit DNA synthesis by blocking thymidilate synthetase activity, resulting in the death of cancer cells. Thd Pase activity by which 5-FU is converted to FdUR would participate greatly in the antitumor effect of the compounds because of the fact that FdUR has 1,000 times greater antitumor activity than 5-FU. Moreover, some of the fluoropyrimidines are activated by this enzyme to produce 5-FU. It should be emphasized that Thd Pase activity is higher in tumor tissue than in normal tissues. This finding would mean that the compounds would exert a selective (antitumor) activity on cancer cells. In addition, a clinical trial of fluoropyrimidines showed them to be effective when administered to patients in order to maintain a lower effective level of 5-FU in tumor tissues for a longer period of time. Such experiences would also lend more weight the possible of the mode of action of the of fluoropyrimidines mentioned above.

Animals↗

[Chemotherapy of Borrmann's type IV diffuse carcinoma of the stomach].

Because of the great difficulty in detection of early lesion of Borrmann type 4 diffuse (scirrhous) gastric cancer, diagnosis is frequently given to the patients with far advanced, widely spread cancer invasion in the stomach which is not infrequently associated with peritonitis carcinomatosa. Accordingly, cancer chemotherapy should be of great importance. We have designed UFTM chemotherapy (a combination of UFT and Mitomycin C) for gastric cancer on the basis of pharmacodynamics of UFT. Twenty-one patients with Borrmann type 4 gastric cancer were treated with UFTM therapy. Of 21 patients, 14 (66.7%) patients experienced clinical responses. Fifty percent survival time after initiation of therapy was 11 months for the responders and 5.7 months for the non-responders. Overall fifty percent survival time was 8.4 months. It is considered that one of the keypoints of chemotherapy for Borrmann type 4 gastric cancer will be the complete treatment of metastatic lesion in the peritoneum which will become lethal to the patients later. Further, discussion was widely made on the treatment of Borrmann type 4 diffuse (scirrhous) gastric cancer.

Adenocarcinoma↗

Studies on the designing of chemotherapy for gastric cancer in man, based on the tumor tissue concentration of anticancer agents.

5-fluorouracil analogs investigated in this study include a combination of uracil and Ftorafur (UFT), Ethyl (+/-)-t-butoxy-5-fluoro-hexahydro-2, 4-dioxopyrimidine r-5-carboxylate (TAC-278), and 5'-deoxy-5-fluorouridine (5'-DFUR). In a total of 45 patients with gastric cancer, tumor tissue level of 5-fluorouracil (5-FU) was determined at 2, 4, 6, 8, and 12 hours following the oral administration of drug, using a resected stomach specimen as material. As a result, it was demonstrated that oral administration of 200 mg/m2 of UFT maintained above 0.05 microgram/g (minimum inhibitory concentration: MIC) of 5-FU in tumor tissues over 12 hours in 11 of 13 patients. On the contrary, 133 mg/m2 of TAC-278, and 200 mg/m2 or 300 mg/m2 of 5'-DFUR (which is activated by thymidine phosphorylase in man) did not produce an effective 5-FU concentration in tumor tissues. Serum 5-FU level was high in order of TAC-278, UFT, and 5'-DFUR. Clinical response rates obtained with UFT (200 mg/m2 twice a day), or TAC-278 (133-200 mg/m2, 3 times daily) were 27.5% (49 of 178 cases), and 8.3% (3 of 36 cases, by Koyama et al.), respectively. Fisher's direct probability test revealed that there was a significant difference (p less than 0.05) between them in the response rate. It was considered that the measurement of concentration of anticancer drugs in tumor tissues might provide us useful information for the designing of chemotherapy of gastric cancer.

Antineoplastic Agents↗

Pharmacokinetics of neothramycin in animals and man.

The pharmacokinetics of neothramycin (NTM) was performed in mice, rabbits and man. Biological half-life of NTM in man after a 20 mg bolus injection produced an alpha phase half-life of 3.63 minutes, a beta phase half-life of 84.5 minutes and a volume of distribution at a steady state of 50.3 liters/body. Its human half-life was longer than those of adriamycin, mitomycin C and neocarzinostatin, and a little shorter than that of bleomycin. In mice and rabbits, NTM was well distributed in the kidney, urinary bladder, squamous tissues, lung, spleen and gastrointestinal tract and it was rapidly excreted in urine and bile. It was partially absorbed from the gastrointestinal tract. Concentrations of NTM in ascites and pleural fluids in man were also reported.

Adult↗

[Pharmacological and pharmacodynamic aspects of cancer chemotherapy, with special reference to 5-fluorouracil and its derivatives].

5-FU analogs being investigated in Japan are; 5-FU, FT, FD-1, HCFU, UFT, TAC-278, 5'-DFUR, FF-705, and TK-117. They exert antitumor activity via 5-FU which is an intermediate metabolite of those derivatives. In this paper, UFT, TAC-278, and 5'-DFUR, were particularly investigated from the point of view of pharmacokinetics of those drugs (or 5-FU) in the blood, normal and tumor tissues of patients with gastric cancer. As a result, it is concluded that observation of the sequential changes of 5-FU level in various tissues of humans is potential in designing cancer chemotherapy.

Antineoplastic Combined Chemotherapy Protocols↗

Progressive mineralization pattern of developing enamel during the maturation stage.

The maturation stage of developing enamel may be divided into three substages: First, a secondary mineralization increase appears from the surface toward the deeper layer; then, a tertiary mineralization increase takes place from the deeper layer toward the surface; and finally, the narrow subsurface layer mineralizes heavily and attains the highest degree of mineralization of all layers.

Animals↗

Crystallographic nature of fluoride in enameloids of fish.

X-ray diffraction studies on calcified tissues (teeth and/or scales) of fish and of shark showed that the presence of fluoride affects the crystallite size and lattice parameters of the apatite phase. An inverse correlation between F contents (ranging from 0.2 to 3.8 wt% F) and alpha-axis dimensions (9.441 to 9.375 +/- 0.003 A) exists for both synthetic and enameloid apatites and is consistent with the F-for-OH substitution in the apatite, idealized as Ca10(PO4)6(OH)2 and Ca10(PO4)6F2, for fluoride-free and maximum fluoride-substituted apatite, respectively. In synthetic systems, the incorporation of F is found to be dependent on the F concentration of the media from which the apatite formed. This dependency is also observed between F content of the dentine apatites and the F concentration of the water from which the fish can (i.e., less than 0.08 ppmF in fresh water, about 1.3 ppm in seawater). However, no such dependency was observed between the F incorporation in fish enameloid apatite and the F concentration in the water of origin. In some cases, the F incorporated in the enameloid apatite is much in excess of what can be expected from the F concentration of water. These observations suggest that in some fish, a fluoride-concentrating mechanism is operative during the formation of the enameloid but not during the formation of the dentine, and this mechanism appears to be specie-related.

Animals↗