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Lpophilicity vs. Antitumor Activity of Carboxylatoplatinum(lV) Complexes
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  • Lpophilicity vs. Antitumor Activity of Carboxylatoplatinum(lV) Complexes
  • Lpophilicity vs. Antitumor Activity of Carboxylatoplatinum(lV) Complexes
저자명
송리타,김관묵,손윤수,Song. Ri Ta,Kim. Gwan Muk,Son. Yun Su
간행물명
Bulletin of the Korean Chemical Society
권/호정보
2000년|21권 10호|pp.951-952 (2 pages)
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대한화학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Acylation of an intermediate tetrahydroxoplatinum(IV) complex, $[Pt(OH)_4(dach)]$ (dach = $trans-(pm)-12-di-aminocyclohexane)$, with one or two kinds of carboxylic anhydrides in stepwise manner afforded various car-boxylatoplatinum(IV) complexes, $[Pt(O_2CR)chi(OR’)4-chi(dach)]$ (R = $(CH_2)_3CH_3$ or $C(CH_3)_3$, R’ = H or $OCCH_3$, and $chi$ = 1-4) with a wide range of lipophilicity. The title complexes were subjected to bioassay using the murine leukemia L1210 cell line, and in particular, their in vivo oral antitumor activity was attempted to correlate with their lipophilicity and water solubility. The most orally active complex exhibited intermediate lipophilicity and water solubility, but it has been found that an exact relationship between the lipophilicity and oral anticancer activity could not be established, since the lipophilicity of the complexes is not the sole parameter to determine the oral activity. One of the important intermediate complexes partially substituted was subjected to X-ray anal-ysis for positit of the substituted group: $[Pt(OPiv)_3(OH)(dach)]$ crystallizes in the tetragonal sys-tem, space group $P42_1c$ with a = 21.161(3) $AA$, b = 21.161(6) $AA$, c = 12.816(3) $AA$, $alpha=eta=$ r $=90^{circ}$, V = 5739(2) $AA^3$ and Z = 8.