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M Jennerwein

Publications and source records attributed to M Jennerwein.

11 recordsLinked to original sources

Effect of intracellular chloride on the cellular pharmacodynamics of cis-diamminedichloroplatinum(II).

cis-Diamminedichloroplatinum(II) (DDP) is activated by aquation to species that are much more reactive with nucleophiles. The dichloro form of the drug predominates at the high CI- concentrations found outside the cell (approximately 108 mM), whereas the reactive aquated forms predominate at low CI-. Lower CI- levels inside cells are presumed to facilitate cellular platination reactions, but little actual data are available to support this general belief. We therefore determined intracellular CI- in tumor cell lines and assessed the effect of modulation of CI- levels on the sensitivity to DDP and the platination of DNA. Basal CI- levels were 22.7 +/- 1.5 mM (N = 4) in 2008 human ovarian carcinoma cells and 12.2 +/- 2.3 mM (N = 4) in the resistant subline C13*. Intracellular CI- concentrations in 2008 and C13* cells dropped to < 8% of basal levels within 30 min after exposure to medium in which CI- had been replaced by NO3-. Lowering the intracellular CI- level should shift the equilibrium to the aquated form of the drug and thereby enhance cytotoxicity. Exposure of cells to DDP in equiosmolar CI(-)-deficient medium, however, did not change cytoxicity as measured by colony-forming assay. Accumulation experiments at 1 hr confirmed that the same amount of platinum was entering the 2008 and C13* cells in normal or CI(-)-deficient media. Plantination of cellular DNA was also determined under normal and CI(-)-depleted conditions, but again no difference was found.(ABSTRACT TRUNCATED AT 250 WORDS)

Chlorides↗

Drug accumulation and DNA platination in cells exposed to aquated cisplatin species.

Since CP always exists in aqueous solution as a mixture of native drug and various aqua and hydroxo species, it is conceivable that one or more of these aquated species is the main form of the drug that enters the cell. To test this hypothesis, we examined the accumulation by 2008 human ovarian carcinoma cells of CP and aquated CP in Cl-, deficient medium. After 24 h in 150 mM NaNO3, HPLC analysis indicated that 54% of the platinum in solution was accounted for by aquated species. Immediately following addition of this solution to Cl- deficient RPMI 1640 medium, the initial concentrations of the aqua and hydroxo species were calculated to be 34-2400-fold higher with pre-aquated CP than with native CP. The cellular platinum accumulation, however, was the same under both conditions and was also identical to that of native CP in normal RPMI. To confirm that aquated species were actually entering the cell, the amount of platinum reaching the DNA was determined. The total platinum levels on DNA were 1.9-fold higher when cells were exposed to pre-aquated CP in Cl- deficient medium compared to CP in regular medium. We conclude that 2008 cells do not preferentially transport an aquated form of CP under these conditions compared to native CP.

Cisplatin↗

Tumor inhibiting [1,2-bis(difluorophenyl)ethylenediamine]dichloroplatinum (II) complexes, I: Synthesis.

The synthesis of the diastereomeric 1,2-bis(2,3-, 2,4-, 2,5-, 2,6-, 3,4-, 3,5-difluorophenyl)ethylenediamine (meso, D/L 8-13) from meso 1,2-bis(2-hydroxyphenyl)ethylenediamine and the respective difluorobenzaldehyde by a diaza-Cope-rearrangement and their conversion into the [1,2-bis(2,3-, 2,4-, 2,5-, 2,6-, 3,4-, 3,5-difluorophenyl)ethylenediamine]dihaloplatinum(II)- complexes (meso, D/L 8-13 PtCl2; meso D/L 9- and 11-PtI2) with K2PtHal4 (Hal = Cl, I) is described. From the diiodoplatinum(II)-complexes (meso D/L 9- and 11-PtI2) the better water soluble diaqua[1,2-bis(2,4- and 2,6-difluorophenyl)ethylenediamine]platinum(II) sulfates (meso, D/L 9- and 11-PtSO4) are obtained by reaction with Ag2SO4.

Antineoplastic Agents↗

Tumor inhibiting [1,2-bis(fluorophenyl)ethylenediamine]platinum(II) complexes. Part II: Biological evaluation-in vitro studies on the P 388 D1 leukemia cell line.

Experiments on the P 388 D1 cell line (48 h exposure) demonstrate that [1,2-bis-(fluorophenyl)ethylenediamine]platinum(II) complexes are comparably active on the cell number and 3H-thymidine incorporation, irrespective of the position of the fluorine atom (ortho, meta, or para) and the nature of the "leaving group" (Cl- or H2O). However, the compounds of the R,R/S,S series are more active than those of the R,S series and comparable to cisplatin. In the "tumor colony forming assay" the R,R/S,S configurated compounds are about ten times as active as cisplatin. The R,R/S,S configurated diaqua[1,2-bis(4-fluorophenyl)ethylenediamine]platinum(II) salts reach their half maximum effect more readily (t1/2 approximately equal to 1.6 h) than their R,S configurated analogues (t1/2 approximately equal to 20 h). A time limited contact of the cells with R,R/S,S configurated diaqua[1,2-bis(4-fluorophenyl)ethylenediamine]platinum(II) salts (-1h) leads to a similar inhibition like a permanent drug exposure indicating a fast uptake of the complex by the tumor cell. In experiments on the Ehrlich ascites tumor of the mouse and on the L 1210 leukemia cell line R,R/S,S-[1,2-bis(4-fluorophenyl)ethylenediamine]dichloroplatinum(II) turns out to be equipotent with cisplatin.

Animals↗

[DL-1,2-bis(2-hydroxyphenyl)ethylenediamine]dichloroplatinum(II), a new compound for the therapy of ovarian cancer.

The synthesis of diastereoisomeric [1,2-bis(2-hydroxyphenyl)ethylenediamine]dichloroplatinum(II) complexes, DL-3-PtCl2 and meso-3-PtCl2, and their evaluation on the hormone-independent, human MDA-MB231 breast cancer cell line, on the cisplatin-sensitive and -resistant L1210 leukemia cell line, on the cisplatin-resistant human NIH:OVCAR 3 ovarian cancer cell line, on the P-388 leukemia of the mouse and on the cisplatin-sensitive and -resistant Ehrlich ascites tumor of the mouse are described. On all tumor models DL-3-PtCl2 produces a marked inhibitory effect. The diastereoisomer meso-3-PtCl2 is less active and more toxic. It is striking that DL-3-PtCl2 leads to a pronounced inhibition of all cisplatin-resistant tumors. At non-toxic concentrations DL-3-PtCl2 produces cytocidal effects on the NIH:OV-CAR 3 cell line. Therefore DL-3-PtCl2 is of interest for further evaluation for the therapy of ovarian cancer.

Animals↗

Tumor inhibiting properties of stereoisomeric [1,2-bis(3-hydroxyphenyl)ethylenediamine]dichloroplatinum(II)-compl exe s, Part I: Synthesis.

The synthesis of the stereoisomeric 1,2-bis(3-hydroxyphenyl)ethylenediamines (1-4) from meso-1,2-bis(2-hydroxyphenyl)ethylenediamine and 3-methoxybenzaldehyde by a diaza-Cope-rearrangement and subsequent ether cleavage with BBr3 and their conversion into the [1,2-bis(3-hydroxyphenyl)ethylenediamine]dichloroplatinum(II)-complexes with K2PtCl4 (1-PtCl2 - 4-PtCl2) is described.

Antineoplastic Agents↗

Tumor inhibiting properties of stereoisomeric [1,2-bis(3-hydroxyphenyl) ethylenediamine]dichloroplatinum(II)-complexes, Part II: Biological properties.

The activity of stereoisomeric [1,2-bis(3-hydroxyphenyl)ethylenediamine] dichloroplatinum(II)-complexes (1-PtCl2,R,S; 2-PtCl2, R,R/S,S; 3-PtCl2, R,R; 4-PtCl2, S,S) on several tumor models (MDA-MB 231 breast cancer cell line; P 388 leukemia, mouse; L 1210 leukemia, mouse; L 5222 leukemia, rat; Ehrlich ascites tumor, mouse--wildtype; cisplatin-, etoposide-, cyclophosphamide-, and daunomycin-resistant, resp.) is described. For comparison the analogous [1,2-bis(4-hydroxyphenyl)ethylendiamine]dichloroplatinum (II)-complexes (5-PtCl2, R, S; 6-PtCl2, R,R/S,S; 7-PtCl2, R,R; 8-PtCl2, S,S) and cisplatin are used. 1-PtCl2 to 4-PtCl2 (OH in 3,3'-positions) show their maximum antitumor effect at lower doses than 5-PtCl2 to 8-PtCl2 (OH in 4,4'-positions). 2-PtCl2 and 6-PtCl2 (R,R/S,S) are more active than 1-PtCl2 and 5-PtCl2 (R,S). 4-PtCl2 and 8-PtCl2 (S,S) are superior to 3-PtCl2 and 7-PtCl2 (R,R). On the L 5222 leukemia 2-PtCl2 (R,R/S,S), 4-PtCl2 (S,S) and 8-PtCl2 (S,S) markedly surpass cisplatin. Strong effects are produced by 2-PtCl2 to 4-PtCl2 on the Ehrlich ascites tumor (wildtype, cisplatin-, etoposide-, cyclophosphamide-, and daunomycin-resistant, resp.). The combination of 4-PtCl2 with cisplatin results in a weakly synergistic effect.

Animals↗

Influence of ring substituents on the antitumor effect of dichloro(1,2-diphenylethylenediamine)platinum(II) complexes.

Diastereomeric para-substituted dichloro(1,2-diphenylethylenediamine)platinum(II) complexes were synthesized and tested for their antitumor activity on the human MDA-MB 231 breast cancer cell line and the P 388 leukemia of the mouse. An interaction with the DNA was demonstrated by UV difference spectroscopy. The D,L configurated, 4-fluoro-substituted complex was the most active.

Animals↗

The tumor-inhibiting effect of isomeric dichloro(diphenylethylenediamine)platinum(II) complexes.

Ring unsubstituted dichloro(diphenylethylenediamine)platinum(II) complexes show a dependence of their antitumor activity on the configuration and position of phenyl rings in ethylenediamine ligand. Dichloro(1,1-diphenylethylenediamine)platinum(II) (1d) and meso-dichloro(1,2-diphenylethylenediamine)-platinum(II) (meso-2d) have a weaker effect on the human breast-cancer cell line MDA-MB 231 and on rat leukemia L 5222 than (+/-)-dichloro(1,2-diphenylethylenediamine)platinum(II)((+)-2d) and its enantiomers (+)-2d and (-)-2d which cause marked and comparable inhibition of both tumors; (+/-)-2d is also active on ADJ/PC 6 plasmacytoma of the mouse and on cisplatin-, daunomycin-, and cisplatin/daunomycin-resistant Ehrlich ascites tumors of the mouse. The differences in activity of the diastereomers (+/-)-2d and meso-2d, for which distinct influences on the DNA secondary structure can be demonstrated CD spectroscopically may be explained by a steric hindrance of the drug-DNA interaction.

Animals↗

Dichloro[1,2-bis(4-hydroxyphenyl)ethylenediamine]platinum(II) complexes: an approach to develop compounds with a specific effect on the hormone-dependent mammary carcinoma.

Stereoisomeric dichloro [1,2-bis(4-hydroxyphenyl)ethylenediamine]platinum(II) complexes (meso-3a, (+/-)-3b, (+)-3c, (-)-3d) and their N,N'-dibutyl derivatives (meso-4a, (+/-)-4b, (+)-4c, (-)-4d) were synthesized and tested on antitumor activity. The most active compound, 3d, shows a modest inhibition of the [3H]estradiol receptor interaction and causes a marked effect on the growth of the hormone-dependent human MCF 7 breast cancer cell line. It is also active on the hormone-independent human MDA-MB 231 breast cancer cell line, on the ADJ/PC6 plasmacytoma of the Balb/C mouse, and on the L 5222 leukemia of the BD IX rat. Apparently the inhibition of the MCF 7 cell line is not mediated by the estrogen receptor system. Histopathological studies on 3d revealed very low toxicity.

Animals↗