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Biomedical subjects

A H Soloway

Publications and source records attributed to A H Soloway.

At least 55 records · Page 3Linked to original sources

Carbinolamines and related structures--potential alkylating metabolites of clinically active anticancer drugs.

The precise biochemical mechanism by which a number of clinically-active anticancer compounds function remains unclear. Among these are procarbazine (NSC-77213), cyclophosphamide (NSC-26271), streptozotocin (NSC-85998), dacarbazine (NSC-45388), and hexamethylmelamine (NSC-13875). In all cases, there is an N-methyl or N-alkyl substituent which can be or has been shown to generate carbinolamine-like intermediates as a result of oxidative metabolism. Such intermediates can react with amines, imines, sulfhydryls and similar functional groups to form covalent linkages. Thus, carbinolamine metabolites of these clinically-active compounds are proposed as the active agents capable of altering covalently nucleic acids and proteins. It is this alkylating property that may be responsible for these compounds adversely effecting the mitosis of neoplastic cells. Thus, a unifying hypothesis is proposed whereby metabolic hydroxylation of various miscellaneous anticancer agents is the basis for biological activity. In essence, therefore, three broad classes of alkylating agents may be perceived: (1) the classical alkylators such as the nitrogen and sulfur mustards and the sulfonates, (2) bioreductive alkylating agents, and (3) biooxidative alkylating agents such as the carbinolamines. Though the chemical spectrum of each category may be highly diverse, nevertheless, all function as alkylating agents.

Alkylating Agents↗

Angiotoxicity of oxygenated sterols and possible precursors.

Cell death, inflammation, and repair in rabbits' aortas and pulmonary arteries were observed at 3-, 7-, and 10-day periods after the intravenous injection of oxygenated sterols. Thus, oxygenated sterols, not cholesterol, may play the primary role in arterial wall injury and lesion development.

Animals↗

Aporphines. 31. Synthesis and antitumor activity of aporphine nitrogen mustards.

A series of aporphine nitrogen mustards and their congeners (1b-g) has been prepared. N-[[Bis(2-chloroethyl)-amino]-2,11-dihyroxy-10-methoxynoraporphine (1b) and its mono- and diacetyl ester derivatives (1c-d) were prepared from N-(chloroacetyl)-2,11-diacetoxy-10-methoxynoraporphine (2). Reaction of 2 with diethanolamine under various conditions and different solvents resulted in the corresponding N-[[bis(2-hydroxyethyl)amino]acetyl] precursors, which were subsequently treated with SOCl2 to yield the target compounds. N-(2-Choroethyl)norapocodeine (1e) was obtained from the chlorination of N-(2-hydroxyethyl)norapocodeine (9) with SOCl2. Prolonging such treatment was found to result in the formation of N-[2-(chloroethoxy)ethyl]norapocodeine (1f) at the expense of 1e. N-[[[N'-(2-Chloroethyl)carbamyl]oxy]ethyl]norapocodeine (1g) and its 11-(2-chloroethyl)carbamyl derivative (1h) were also prepared. All the double-armed aporphine amide nitrogen mustards (ab-d) were found to have antitumor activity. The single-armed aporphine nitrogen mustard (1e) was also active in P388 but the activity was less than that observed with 1b-d. The lead compound 1a was inactive in the LE1210 and P388 systems at the doses tested. Similarly, the two aporphine mustard congeners (1f,g) were also inactive in the P388 system. All the activity was observed in the intraperitoneally innoculated tumor systems.

Animals↗

Chemoimmunotherapy of cancer.

The preparation of a series of water-soluble mustard haptens for chemoimmunotherapy of cancer is described. Preliminary screening data are given, indicating some activity against P388 lymphocytic leukemia for those compounds containing the most potent immunogenic functional groups.

Alkylating Agents↗

Isoquinolines. 6. Potential central nervous system antitumor agents. Nitrogen mustards of 3-amino-4-(p-aminophenyl)isoquinoline.

A series of 3-amino-4-(p-aminophenyl)isoquinolines bearing the bis(2-chloroethyl)amino group was synthesized as potential CNS antitumor agents. Diol precursors 1e and 1f were prepared by the treatment of 1b and 1c with ethylene oxide. Diol precursors 5a-c and 9 were prepared by the treatment of 4a-c and 8 with diethanolamine. The reaction of these diols with SOCl2 yielded target mustards 10-15 which were evaluated in the intraperitoneal murine L1210 tumor. No intermediates or target mustards were active in this tumor system.

Alkylating Agents↗

Chemoimmunotherapy of cancer. 3. Analytical measurement of chemical half-lives of monofunctional alkylators.

The objective of this study is the measurement of the rates of hydrolysis of a series of chloroethyl sulfide derivatives, under stimulated physiological conditions. Interferences encountered with the conventional spectrophotometric method prompted the use of a rapid-response, chloride selective electrode. This probe was readily capable of monitoring the hydrolytic rate, which is identical with the rate of chloride ion formation. Since the desired subsecond half-lives were not achieved by any of the compounds, factors influencing the rates were investigated. The results suggest that the rate-controlling cyclization step may be inhibited, due to coordination of undissociated protonic functional groups on the aromatic portions of the structures with the lone-pair electrons on sulfur.

Chemical Phenomena↗

Protein-binding polyhedral boranes.

A series of polyhedral borane derivatives containing protein-binding functional groups has been synthesized. Problems encountered in earlier studies (low incorporation levels, gross precipitation of conjugates) have been overcome by including a water-solubilizing gluconamide group in the structure. This modification has allowed high levels of boron to be covalently bound to HGG, forming a completely water-soluble conjugate.

Boranes↗