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Biomedical subjects

D Munroe

Publications and source records attributed to D Munroe.

25 records · Page 2Linked to original sources

Effects of 1-beta-D-arabinofuranosylcytosine incorporation on eukaryotic DNA template function.

1-beta-D-Arabinofuranosylcytosine (ara-C) incorporates into DNA, and the extent of this incorporation correlates significantly with inhibition of DNA synthesis. The incorporated ara-C residue provides a poor primer terminus for further chain elongation. There is a highly significant relationship between formation of (ara-C) DNA and loss of clonogenic survival. The present studies confirm that incorporation of ara-C into DNA, and not the competitive inhibition of DNA polymerase, is responsible for inducing lethal cellular events. The results also demonstrate that the incorporated ara-C residue is not excised from the DNA strand. Furthermore, the presistence of ara-C residues in DNA inhibits recovery of DNA synthesis following exposure to drug. The relative DNA chain-terminating effect of ara-C provides several mechanisms of action that explain internucleotide and chain terminus positioning of ara-C residues, reinitiation of previously replicated DNA segments, and DNA strand or chromosomal breaks. The precise mechanism of action is dependent upon dose scheduling of this drug.

Animals↗

Relationships among Ara-CTP pools, formation of (Ara-C)DNA, and cytotoxicity of human leukemic cells.

Cytosine arabinoside (Ara-C) is the most effective agent in the treatment of acute myelogenous leukemia. This agent incorporates in leukemic cell DNA, and the extent of this incorporation correlates with loss of clonogenic survival. The incorporated Ara-C residue behaves as a relative DNA chain terminator, and the extent of (Ara-C)DNA formation correlates with inhibition of DNA synthesis. The incorporation of Ara-C into DNA requires the formation of Ara-CTP, and previous measurements of this metabolite have also been correlated with cytotoxicity. Because it is clinically relevant to define biochemical parameters predictive of Ara-C cytotoxicity, the present studies were undertaken to determine the relationship among Ara-CTP pools, formation of (Ara-C)DNA, and loss of clonogenic survival. The results demonstrate that the incorporation of Ara-C into DNA is the single most powerful predictor of cell lethality. Furthermore, although there is a correlation between Ara-CTP pools or continuous cellular exposure to Ara-CTP and cell kill, these relationships are less significant than that obtained with formation of (Ara-C)DNA. The extent of Ara-C incorporation into DNA can be predicted by the product of the Ara-CTP level and time (T), thus supporting the concept that Ara-C incorporation is dependent on continuous exposure to the triphosphate metabolite. These findings support the formation of (Ara-C)DNA as a highly predictive parameter of lethal cellular events.

Arabinofuranosylcytosine Triphosphate↗

Relationship between incorporation of 9-beta-D-arabinofuranosyladenine in L 1210 DNA and cytotoxicity.

We have used cesium sulfate density gradient centrifugation to monitor the incorporation of 9-beta-D-arabinofuranosyladenine (ara-A) into L1210 cellular nucleic acids. The results demonstrate the specific incorporation of ara-A in L1210 DNA. We have also found a highly significant relationship between the formation of ara-A incorporated into DNA and loss of clonogenic survival. This relationship was maintained when using ara-A in the presence of the adenosine deaminase inhibitor deoxycoformycin. Furthermore, treatment with increasing concentrations of ara-A resulted in a greater proportion of ara-A residues at the 3'-terminus, consistent with this agent providing a poor primer terminus for elongating DNA strands. These findings are similar to those obtained previously with 1-beta-D-arabinofuranosylcytosine and suggest that the incorporation of arabinofuranosyl derivatives in DNA is one mechanism responsible for cell lethality.

Animals↗

Induction of differentiation of human myeloid leukemia cells by inhibitors of DNA synthesis.

The HL-60 human leukemic promyelocyte can be induced to mature into terminally differentiated cells using certain nucleosides and chemotherapeutic agents. The mechanisms responsible for this induction of differentiation, however, remain unclear. We have monitored the effects of two specific inhibitors of DNA synthesis to determine whether slowing of DNA polymerization can induce HL-60 differentiation. The results demonstrate that cytosine arabinoside (ara-C) induces nonspecific esterase activity in HL-60 cells and increases surface expression of the monocyte antigen MY-4. The results also demonstrate that aphidicolin, an inhibitor of DNA polymerase which is not incorporated in DNA, induces similar phenotypic changes. The induction of differentiation by both agents was accompanied by loss of clonogenic potential as monitored by colony formation in methylcellulose. These observations suggest that terminal differentiation of HL-60 cells can be induced by drugs known to inhibit DNA synthesis.

Aphidicolin↗

After-hours call in a primary care nursing practice.

This paper describes the recorded concerns of clients and the management activity of Master's prepared nurse providers in an urban, ambulatory, university affiliated primary care nursing practice during after-hours call. Retrospective record review was used to collect data. Pain was the most common client concern, and the abdomen the most frequently identified pain site. The majority of concerns expressed by clients were minor health problems appropriate for telephone management. The most frequent interventions used were nursing measures such as comfort, supported and reassurance. Finally, the nurse providers in this group practice managed the majority of calls with nursing interventions.

Adolescent↗