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Biomedical subjects

K Mason

Publications and source records attributed to K Mason.

103 records · Page 6Linked to original sources

The grand mal pattern of Gibbs, Gibbs and Lennox.

The "grand mal" pattern of Gibbs, Gibbs and Lennox was observed in records of 14 patients during the past 3 years. It occurs most commonly in those epileptic patients who suffer from primary generalized seizures of more than one seizure type and in whom akinetic attacks are the main clinical problem. In addition, there is usually some degree of intellectual limitations. The EEG features and clinical accompaniments of the discharge were described and since the term "grand mal" discharge is not appropriate, it is suggested that it be replaced by either "generalized repetitive fast discharge", as had been suggested in the European literature, or "beta band seizure pattern".

Adolescent↗

Biogenetic origin of the D-isoleucine and N-methyl-L-alloisoleucine residues in the actinomycins.

Studies with (14)C-labeled isoleucine stereisomers have established that l-alloisoleucine, d-alloisoleucine, and d-isoleucine may function as precursors for the biogenesis of d-isoleucine and N-methyl-l-alloisoleucine residues in actinomycin. l-[(14)C]isoleucine appears to be employed chiefly for d-alloisoleucine (and N-methylisoleucine [?] formation); however, its role in the biosynthesis of d-isoleucine and N-methylalloisoleucine remains unclear. The potential pathway of biosynthesis of d-isoleucine and N-methyl-l-isoleucine is discussed.

Amino Acids↗

Combination of C. parvum and specific immunization against artificial pulmonary metastases in mice.

We have studied whether specific immunization administered intraperitoneally can augment the activity of C. parvum (0.25 mg intraperitoneally or intravenously) against intravenously injected cells of a syngeneic fibrosarcoma in C3Hf/Bu mice as expressed by the reduction of pulmonary metastases (nodules, colonies) and/or by the prolongation of the survival of recipients. Combination of specific immunization and C. parvum, applied either before or after IV inoculation of viable tumor cells, was more effective than the single treatments. IV injection of a mixture of heavily irradiated and viable tumor cells gave more tumor nodules in the lungs of normal mice than injection of viable cells alone. The metastasis-enhancing effect of admixed irradiated cells was not found in mice previously treated with C. parvum, and was abolished if the immunostimulant was injected after tumor cells. Generation of lung metastases by IV inoculation of fibrosarcoma cells was reduced in mice already having this tumor in the leg. This concomitant immunity to metastases was increased by treating the recipients with C. parvum, but not with irradiated cells; also, the injection of irradiated cells together with C. parvum did not augment the efficiency of the latter. C. parvum was not as effective in T-cell deprived as in control mice, which suggests that in this system, T-cells are required for optimal anti-tumor activity of this immunostimulant. Specific immunization was not effective in T-cell-deprived mice and did not augment the efficiency of C. parvum.

Animals↗

Nonspecific Immunotherapy of Murine Solid Tumors With Corynebacterium granulosum.

A single intraperitoneal (ip) or intravenous (iv) injection of Corynebacterium granulosum into C3Hf/Bu mice shortly after subcutaneous (sc) injection of cells from a strongly antigenic syngeneic fibrosarcoma induced by 3-methylcholanthrene caused complete and lasting regressions of 100 and 70% of resulting tumors, respectively. Treatment with this bacterium sc only slightly inhibited the growth of some tumors. C. granulosum given iv to mice 3 days after the sc injection of fibrosarcoma cells caused complete regressions of 39 of 45 tumors; two iv injections with this immunostimulant given 1 month apart were no more effective than a single injection. Intralesional treatment of fibrosarcomas 8 mm in diameter induced complete regressions of tumors in 30% of the animals, whereas sc treatment contralateral to the growing tumor only slightly reduced tumor growth. Intraperitoneal growth of a fibrosarcoma was efficiently controlled (58-80% survival of mice) if C. granulosum was given ip, but not iv, 3 days after inoculation with tumor cells. Again, two injections of C. granulosum (given ip 4 days apart) were only as effective as a single injection. Treatment with C. granulosum iv at 3, 7, 14, or 21 days after sc inoculation of a weakly antigenic, spontaneously arising mammary carcinoma (MC-1) strongly inhibited tumor growth. Three complete but temporary tumor regressions were observed. The subcutaneous growth of another spontaneous mammary carcinoma (MC-2), which contained fairly strong tumor-specific antigen(s), was also significantly inhibited if C. granulosum was given 3,7, or 14 days after, but not 7 days before, tumor cell inoculation. However, pretreatment of mice with the immunostimulant significantly protected the mice against artifically induced pulmonary metastases of this tumor.

Animals↗