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Biomedical subjects

C C Cheng

Publications and source records attributed to C C Cheng.

At least 127 records · Page 7Linked to original sources

Antileukemic activity of substituted ureidothiazoles, ureidothiadiazoles, and related compounds.

A number of ureidothiazole and ureidothiadiazole derivatives related to ethyl 4-[[(2-thiazolylamino)carbonyl]-amino]benzoate were prepared and evaluated against the leukemia P-388 tumor system in mice. Preliminary structure-activity relationship study revealed that, among other considerations, active compounds of this series contain either an "isothioureido" [N-C(S-)=N-] or an "isothiosemicarbazono" [N-C(S-)=N-N=] structural unit.

Animals↗

Structural modification study of bis(substituted aminoalkylamino)anthraquinones. An evaluation of the relationship of the [2-[(2-hydroxyethyl)amino]ethyl]amino side chain with antineoplastic activity.

Several anthraquinones containing the [2-[(2-hydroxyethyl)amino]ethyl]amino, the [2-(dimethylamino)ethyl]amino, and the 2-(dimethylamino)ethoxy groups were prepared. Preparation of a lucanthone analogue, a 7-chloroquinoline derivative, and derivatives of naphthoquinones containing the [2-[(2-hydroxyethyl)amino]ethyl]amino side chain and related amino-substituted side chains was also conducted. It was found that the antineoplastic activity of anthraquinones containing the [2-[(2-hydroxyethyl)amino]ethyl]amino side chain is superior to those containing the tertiary amino side chain. However, the presence of the [2-[(2-hydroxyethyl)amino]ethyl]amino chain is an important, but not a sufficient, factor for good antineoplastic activity, as indicated by the lack of significant biological activity of other ring systems containing this side chain.

Animals↗

A structural modification study of procarbazine.

Eight analogues of the antineoplastic compound procarbazine were prepared by varying one portion of the molecule, keeping either the methylhydrazinomethyl or the N-(1-methylethyl)benzamido portion of procarbazine intact. Preliminary screening results indicated that none of the analogues tested in leukemias L1210 and P388 were as active as the original compound.

Animals↗

Development and testing of new hypoxic cell radiosensitizers.

Several new electron-affinic compounds have been shown to possess radiosensitizing ability in hypoxic mammalian cells. The correlation between chemical structure and biological activity can aid in the design and synthesis of new agents with potentially greater hypoxic cell radiosensitizing ability.

Animals↗

Experimental antitumor activity of aminoanthraquinones.

The activity of a number of substituted alkylaminoanthraquinones was compared in transplanted murine tumor systems including P388 and L1210 leukemias, B16 melanoma, and colon carcinoma 26. The structure-activity relationships among this class of compounds are discussed. Several derivatives had very high antitumor activity in several tumor systems. Two of the most active derivatives, namely, 1,4-bis(2-[(2-hydroxyethyl)amino]ethylamino)-9,10-anthracenedione (bisalkylAAD) and 1,4-dihydroxy-5,8-bis(2-[(2-hydroxyethyl)amino]ethylamino)-9,10-anthracenedione (dihydroxybisalkylAAD), which had curative activity in the above-mentioned tumors, were compared in considerable detail. DihydroxybisalkylAAD showed distinct advantages over bisalkylAAD in several tumor systems and is tenfold more potent with respect to effective dose range. This last difference is important for two reasons. First, these aminoanthraquinones are strong and persistent blue dyes and the administration of lower doses would minimize a potential cosmetic drawback of these compounds. Second and most important, iv administration of dose levels of bisalkylAAD which are within the therapeutic dose range on intermittent dose schedules produced convulsions and immediate death. IV administration of dihydroxybisalkylAAD also caused acute toxicity, but, because of its increased potency relative to antitumor activity and delayed toxicity, this acute toxicity was apparent only at doses well above the therapeutic dose range. All of the aminoanthraquinones evaluated, regardless of their activity as antitumor agents in vivo, proved to be potent inhibitors of DNA and RNA synthesis in vitro and bound strongly to DNA as evidenced by deltaTm values (deltaTm = upward shift in DNA melting temperature). Thus, the strong antitumor activity of aminoanthraquinones would appear to be due to some mechanism other than, or in addition to, DNA binding and inhibition of nucleic acid synthesis.

Animals↗

Complete sequence of constant and 3' noncoding regions of an immunoglobulin mRNA using the dideoxynucleotide method of RNA sequencing.

Three synthetic oligonucleotides were prepared to be complementary to known regions of the mouse immunoglublin light chain mRNA, and their ability to prime the transcription of complementary DNA (cDNA) was studied. The sequence of the cDNA was determined by adapting for mRNA the DNA sequencing method of Sanger, Nicklen and Coulson (1977) which uses 2'3' dideoxy ribonucleotides. A continuous sequence of 532 nucleotides was obtained, 321 corresponding to the whole of the constant region of the mRNA and the remaining 211 being the complete 3' noncoding region of the mRNA. The termination codon U-A-G occurs at the expected position in the mRNA corresponding to the triplet following the C terminal cystine. The nucleotide sequence is partially corroborated by the sequence of fragments obtained previously from 32P-mRNA fingerprints and endonuclease IV digests of 32P-cDNA, and is in agreement with the amino acid sequence of the constant region, except for a rearrangement of four amino acids (between amino acid positions 163 and 166). A revision of the amino acid sequence confirms the nucleic acid sequence.

Amino Acid Sequence↗

Antileukemic activity of ungeremine and related compounds. Preparation of analogues of ungeremine by a practical photochemical reaction.

A number of alkoxypyrrolophenanthridinium salts and their analogues related to the antileukemic alkaloid ungeremine were prepared by a practical photochemical cyclization. The importance of the quaternary nitrogen atom and of alkoxy groups, the planarity of a molecule, and steric considerations relative to antileukemic activity are discussed.

Alkaloids↗

Antineoplastic agents. Structure-activity relationship study of bis(substituted aminoalkylamino)anthraquinones.

A structure-activity relationship study was conducted on a number of bis(substituted aminoalkylamino)anthraquinones. These compounds were prepared by the condensation of substituted or unsubstituted leucoquinizarin with appropriate amines, followed by air oxidation. Both the position and the nature of the center nitrogen atom of the side chain are vital to the antineoplastic activity. The possible mode of action of these aminoquinones was discussed. 1,4-Dihydroxy-5,8-bis[[2-(hydroxyethyl)amino]ethyl]amino-9,10-anthracenedione (DHAQ) was found to possess potent inhibitory activity against both the P-388 leukemia system (T/C of 299 at 0.5 mg/kg with 4/6 cures) and the B-16 melanoma system (T/C of 503 at 1 mg/kg with 7/10 cures).

Animals↗

Synthesis and antiinflammatory activity of 6-oxo-1-(beta-D-ribofuranosyl)nocotinic acid and related derivatives.

5-Substituted 1-(beta-D-ribofuranosyl)pyridine-2-ones (6-oxonicotinic acid nucleosides) were prepared by direct glycosylation of 5-ntrio-, 5-carbomethoxy-, 5-carboxamido-, 5-amino, 5-carbobenzyloxyamino-, and 5-acetamido-2-trimethylsilyloxy or corresponding 2-methoxypyridine derivatives by the Hilbert-Johnson method. The glycosylation products were deblocked by conventional procedures and substituents at the 5 position were modified to give the 5-carboxamide, carboxyhydrazide, and carboxylic acid. Only 1-(beta-D-ribofuranosyl)pyridin-2-one-5-carboxylic acid [1-(beta-D-ribofuranosyl)-6-oxonicotinic acid (12), showed significant activity in treating adjuvant-induced arthritis in rats.

Animals↗

Inhibition of catechol O-methyltransferase and transfer RNA methyltransferases by coralyne, nitidine, and related compounds.

Inhibitory activity against both catechol O-methyltransferase and transfer RNA methyltransferases was observed among the antileukemic alkaloids coralyne, nitidine, and related synthetic alkoxy analogs. Inhibition of both classes of enzymes seems to have a similar profile. The role of water solubility of these compounds with regard to their enzyme inhibitory activity was noted.

Animals↗

Absence of mutagenicity of coralyne and related antileukemic agents: structural comparison with the potent carcinogen 7,12-dimethylbenz[a]anthracene.

The structural similarity between antileukemic alkaloid coralyne and the carcinogenic and antineoplastic hydrocarbon 7, 12-dimethylbenz[a]anthracene, as well as the similarity between the antileukemic alkaloid nitidine and the carcinogenic hydrocarbon 5-methylchrysene, prompted a mutagenicity evaluation of coralyne sulfoacetate, nitidine chloride, the 8-ethyl homolog of coralyne, nitidine methosulfate, and the tetramethoxy analog of nitidine by the Ames method against the histidine-auxotroph strains of Salmonella typhimurium TA-1537, TA-1538, TA-98, and TA-100; 7,12-dimethylbenz[a]anthracene was used as a reference standard. The mutagenicity of these antileukemic compounds was either completely eliminated or drastically reduced, but the mutagenic response was generally high for 7,12-dimethylbenz[a]anthracene. The results suggest that the presence of a quaternary nitrogen atom and alkoxy groups could be important in alleviating the mutagenicity of the parent mutagenic and carcinogenic hydrocarbons.

9,10-Dimethyl-1,2-benzanthracene↗

Colorimetric assay for guaiacol O-methyltransferase.

A relatively simple colorimetric assay was developed for guaiacol O-methyltransferase. Monomethylated phenolic acid substrates are enzymatically methylated to their corresponding dimethoxyl compounds; S-adenosylmethionine serves as the methyl donor. Enzymatic activity is measured by colorimetric assay of the monomethylated (nonreacted) substrate by coupling of the phenolic acid with a diazotized sulfanilic acid. The methoxyl and hydroxyl groups may be in the 3,4- or 4,3-positions on the substrate molecules; however, a side chain (COOH) or a substituted side chain is necessary for enzyme action. The radioactive demonstration of guaiacol O-methyltransferase as a separate entity from catechol O-methyl-transferase was confirmed.

Colorimetry↗