STEREOCHEMICAL EVALUATION OF THE RELATIVE ACTIVITIES OF THE CINCHONA ALKALOIDS AGAINST PLASMODIUM-FALCIPARUM

被引:55
作者
KARLE, JM
KARLE, IL
GERENA, L
MILHOUS, WK
机构
[1] WALTER REED ARMY MED CTR, DEPT PARASITOL, DIV EXPTL THERAPEUT, WASHINGTON, DC 20307 USA
[2] USN, RES LAB, STRUCT MATTER LAB, WASHINGTON, DC 20375 USA
关键词
D O I
10.1128/AAC.36.7.1538
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Quinine and quinidine were over 100 times more active than 9-epiquinine and 9-epiquinidine against chloroquine-sensitive Plasmodium falciparum and over 10 times more active against chloroquine-resistant P. falciparum. Since the only structural difference between quinine, quinidine, 9-epiquinine, and 9-epiquinidine is their three-dimensional configuration, the three-dimensional structures of these four alkaloids were examined in order to explain the large difference in relative activities between the 9-epi alkaloids and quinine and quinidine. The crystal structure of 9-epiquinidine hydrochloride monohydrate was determined by X-ray diffraction and was compared with the crystal structures of quinine, quinidine sulfate dihydrate, and 9-epiquinine hydrochloride dihydrate. The crystallographic parameters for 9-epiquinidine hydrochloride monohydrate were as follows: chemical formula, C20H25N2O2+ . Cl- . H2O; M(r), 378.9; symmetry of unit cell, orthorhombic; space group, P2(1)2(1)2(1); parameters of unit cell, a was 7.042 +/- 0.001 angstrom (1 angstrom = 0.1 nm), b was 9.082 +/- 0.001 angstrom, c was 31.007 +/- 0.005 angstrom; the volume of unit cell was 1,983.1 +/- 0.6 angstrom3; number of molecules per unit cell was 4; the calculated density was 1.27 g cm-3; the source of radiation was Cu K-alpha (lambda = 1.54178 angstrom); mu (absorption coefficient) was 18.82 cm-1; F(000) (sum of atomic scattering factors at zero scattering angle) was 808; room temperature was used; final R (residual index) was 5.72% for 1,501 reflections with \F(o)\ > 3-sigma (F). The intramolecular distance from N-1 to 0-12 in 9-epiquinidine and 9-epiquinine, although shorter than the corresponding distance in quinine and quinidine, was similar to those of other active amino alcohol antimalarial agents. In all four alkaloids, both the hydroxyl and amine groups formed intermolecular hydrogen bonds, showing the potential for forming hydrogen bonds with cellular constituents. However, the positioning of the N+-1-H-N1 and O-12-H-O12 groups relative to each other was quite different in the 9-epi alkaloids versus quinidine. This difference in positioning may determine the relative strengths of the formation of hydrogen bonds with cellular constituents important to antimalarial activity and, therefore, may determine the relative strength of antimalarial activity.
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页码:1538 / 1544
页数:7
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