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血卟啉衍生物和光卟啉II对R3230AC乳腺腺癌细胞膜酶5'-核苷酸酶、钠钾-ATP酶和镁-ATP酶的光敏作用。

Photosensitizing effects of hematoporphyrin derivative and photofrin II on the plasma membrane enzymes 5'-nucleotidase, Na+K+-ATPase, and Mg2+-ATPase in R3230AC mammary adenocarcinomas.

作者信息

Gibson S L, Murant R S, Hilf R

机构信息

Department of Biochemistry, University of Rochester School of Medicine and Dentistry, New York 14642.

出版信息

Cancer Res. 1988 Jun 15;48(12):3360-6.

PMID:2836053
Abstract

The sensitivity to photodynamic treatment of three plasma membrane enzymes in R3230AC mammary adenocarcinomas was assessed. The activities of Na+K+-ATPase, Mg2+-ATPase and 5'-nucleotidase in isolated membranes were measured after exposure of membranes to either hematoporphyrin derivative or Photofrin II plus light in vitro or in tumor membranes prepared from animals previously injected with 25 mg/kg Photofrin II and sacrificed at various times prior to exposure to light (in vivo-in vitro protocol). The activities of both Na+K+-ATPase and Mg2+-ATPase were inhibited at equivalent rates by Photofrin II in vitro; inhibition was drug dose and light dose related. For 5'-nucleotidase in vitro, a 10-fold higher porphyrin concentration was required to achieve a similar rate of enzyme inhibition as that for the ion-activated ATPases. Injection of Photofrin II in vivo followed by preparation of tumor plasma membranes, which were subsequently exposed to light in vitro, produced no photosensitization of 5'-nucleotidase activity at any time studied (up to 72 h after Photofrin II administration). Under the same conditions Na+K+-ATPase activity was reduced by 40-60% from 2 to 72 h after drug injection, whereas Mg2+-ATPase activity was inhibited by 10-25% over the same time course. The differential sensitivity of these three enzymes observed in this in vivo-in vitro protocol suggests that each enzyme may possess different characteristics, such as three-dimensional configuration or membrane location, that afford varying susceptibility to porphyrin photosensitization. The data also suggest that photosensitivity-induced damage to these ion-activated plasma membrane ATPases could have deleterious effects on tumor cell survival.

摘要

评估了R3230AC乳腺腺癌中三种质膜酶对光动力治疗的敏感性。在体外或从先前注射25mg/kg血卟啉衍生物II并在光照前不同时间处死的动物制备的肿瘤膜中(体内-体外方案),将膜暴露于血卟啉衍生物或血卟啉单甲醚II加光后,测量分离膜中Na⁺K⁺-ATP酶、Mg²⁺-ATP酶和5'-核苷酸酶的活性。在体外,血卟啉单甲醚II以相同速率抑制Na⁺K⁺-ATP酶和Mg²⁺-ATP酶的活性;抑制作用与药物剂量和光照剂量相关。对于体外的5'-核苷酸酶,需要比离子激活的ATP酶高10倍的卟啉浓度才能达到相似的酶抑制率。体内注射血卟啉单甲醚II后制备肿瘤质膜,随后在体外进行光照,在任何研究时间(血卟啉单甲醚II给药后长达72小时)均未产生5'-核苷酸酶活性的光致敏作用。在相同条件下,药物注射后2至72小时,Na⁺K⁺-ATP酶活性降低了40%-60%,而Mg²⁺-ATP酶活性在相同时间内被抑制了10%-25%。在这种体内-体外方案中观察到的这三种酶的不同敏感性表明,每种酶可能具有不同的特征,如三维结构或膜定位,这使得它们对卟啉光致敏的敏感性不同。数据还表明,光敏感性诱导的对这些离子激活的质膜ATP酶的损伤可能对肿瘤细胞存活产生有害影响。

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