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M M Moore

Publications and source records attributed to M M Moore.

137 records · Page 8Linked to original sources

Regulation of cyclic AMP content in normal and malignant brain cells.

Pharmacologic characterization of the neurotransmitter-sensitive cyclic AMP-second messenger systems of brain has proven to be a complex and difficult endeavor. At least two types of receptor appear to be involved in the mediation of the effects of NE on cyclic AMP content. One of these receptor systems appears to mediate the potentiation by NE of the effect of adenosine of cyclic AMP accumulation. The cellular heterogeneity of brain has retarded the determination of the mechanism underlying the synergistic interaction of catecholamines and adenosine. An attempt to use clonal cell lines to examine the action of NE and adenosine on cyclic AMP content has resulted in the demonstration that adenosine acts in a hormone-like fashion to stimulate adenylate cyclase activity. However, the studies did not shed light on the mechanism of synergism. An increasing number of reports are appearing which support the idea that the responsiveness of cells to neuronally released NE may involve adaptive changes in the responsiveness of the cyclic AMP-second messenger system which compensate for chronic over- or underproduction of the first messenger, NE. Evidence was presented that such a regulatory process may be operative in rat cerebral cortex. Our studies of catecholamine-induced loss of responsiveness in human astrocytoma cells have led us to the conclusion that the loss in the capacity of the cells to accumulate cyclic AMP is a result of a loss in the capacity to synthesize cyclic AMP. However, it is probable that different cells make use of different mechanisms (e.g., changes in phosphodiesterase activity) to regulate their ability to respond to hormones or neurotransmitters. The physiologic importance of this level of regulation of responsiveness to hormones is not known at this time.

Adenosine↗

Treatment of ductal carcinoma in situ of the breast.

Ductal carcinoma in situ (DCIS) is increasing in frequency, primarily because of the increasing use of routine screening mammography. The management of DCIS has become one of the more controversial aspects in the treatment of breast cancer. Although total mastectomy provides local control and long-term survival approaching 100%, the move to breast conservation with early invasive breast cancer has forced a re-evaluation of the treatment of in situ breast cancer. Recent advances in the evaluation and subclassification of DCIS according to histologic subgroupings and sizings have provided valuable insight into the biology of the disease. These biologic parameters may help to identify those lesions amenable to breast conservation. In properly selected patients, breast conservation affords a 1%/year local failure rate, with approximately one-half of the recurrences being invasive.

Breast Neoplasms↗

Mutagenicity and clastogenicity of adriamycin in L5178Y/TK(+/-)-3.7.2C mouse lymphoma cells.

Adriamycin was found to be both mutagenic and clastogenic to L5178Y/TK(+/-)-3.7.2C mouse lymphoma cells. A dose of only 5 ng/ml (survival = 62% or 67%) gave an induced TK mutant frequency of 307 or 296 per 10(6) survivors in two separate experiments. This dose was also clastogenic, inducing 20 chromosome aberrations/100 cells analyzed. The majority of the mutants were small-colony mutants, indicating that adriamycin likely acts primarily by a clastogenic mechanism.

Animals↗

Multisegmented ion chamber for CT scanner dosimetry.

A multisegmented, ionization chamber capable of determining dosimetric profiles from a CT scanner has been developed and tested. The chamber consists of a number of 2 mm wide electrically isolated segments from which ionization currents may be measured. Presented here are the performance characteristics of the chamber including energy response, dose linearity, and corrections for "cross talk" between segments. Sample dosimetric profiles are depicted for 3 and 6 mm nominal beam widths at two locations in a dosimetric phantom positioned in the x-ray beam of a fourth generation CT scanner. The results agree well with the conventional method of obtaining dosimetry measurements with TLD chips.

Radiation Dosage↗

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Humans↗