CORRELATION BETWEEN PHOTODYNAMIC EFFICACY OF DIFFERING PORPHYRINS AND MEMBRANE PARTITIONING BEHAVIOR

被引:15
作者
OKUNAKA, T
ECKHAUSER, ML
KATO, H
BOMAMINIO, A
YAMAMOTO, H
AIZAWA, K
SARASUA, MM
KOEHLER, KA
机构
[1] METROHLTH MED CTR,CLEVELAND,OH 44109
[2] CASE WESTERN RESERVE UNIV,DEPT SURG,CLEVELAND,OH 44106
[3] TOKYO MED COLL,DEPT PHYSIOL,TOKYO 160,JAPAN
关键词
PORPHYRIN; PHOTOLYSIS; PARTITION COEFFICIENT;
D O I
10.1002/lsm.1900120115
中图分类号
R75 [皮肤病学与性病学];
学科分类号
100206 ;
摘要
The ability of a photosensitizer to partition into membrane is determined by its structure and physical properties. Partitioning behavior can be quantitated as the partition coefficient (K(p)) for a particular drug. This property may be an important determinant of cytocidal efficacy in photodynamic therapy. The K(p) of five photoactive drugs-13,17-ditetraammonium protoporphyrin (PH1008), photofrin II (PII), hematoporphyrin (Hp), benzoporphyrin derivative monoacid (BPD-MA), coproporphyrin (Cp), and uroporphyrin (Up)-was determined using a simple liposome system composed of sonicated egg phosphatidylcholine single bilayer vesicles. The cytocidal efficacy of each drug was compared by determining the concentration of drug resulting in 50% maximal lysis (C50) obtained by measuring the hemoglobin absorbance at 414 nm released from lysed human red blood cells. The percentage lysis at 1-mu-M final drug concentration was also determined. An argon-dye laser was used to administer light of 630-nm wavelength for a total exposure of 5 J/cm2. Porphyrins with a greater tendency to partition into phosphocholine bilayer membranes demonstrated a greater lytic efficacy in the rbc system utilized. The comparison of physical properties with lytic ability may be useful in understanding the mechanism by which PDT exerts its effects and in predicting the clinical efficacy of different drugs.
引用
收藏
页码:98 / 103
页数:6
相关论文
共 22 条
[1]  
BERNS MW, 1982, CANCER RES, V42, P2325
[2]   SPECTROFLUORIMETRIC STUDY OF PORPHYRIN INCORPORATION INTO MEMBRANE MODELS - EVIDENCE FOR PH EFFECTS [J].
BRAULT, D ;
VEVERBIZET, C ;
LEDOAN, T .
BIOCHIMICA ET BIOPHYSICA ACTA, 1986, 857 (02) :238-250
[3]   EQUILIBRIUM AND KINETIC STUDIES OF AGGREGATION OF PORPHYRINS IN AQUEOUS-SOLUTION [J].
BROWN, SB ;
SHILLCOCK, M ;
JONES, P .
BIOCHEMICAL JOURNAL, 1976, 153 (02) :279-285
[4]  
CHATELIER RC, 1985, METHODS PORPHYRIN PH, P169
[5]  
DOUGHERTY T J, 1986, Seminars in Surgical Oncology, V2, P24, DOI 10.1002/ssu.2980020104
[6]   TYPE-I AND TYPE-II MECHANISMS IN THE PHOTOSENSITIZED LYSIS OF PHOSPHATIDYLCHOLINE LIPOSOMES BY HEMATOPORPHYRIN [J].
GROSSWEINER, LI ;
PATEL, AS ;
GROSSWEINER, JB .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1982, 36 (02) :159-167
[7]   HEMATOPORPHYIN DERIVATIVE AND LASER PHOTORADIATION IN THE TREATMENT OF LUNG-CANCER [J].
HAYATA, Y ;
KONAKA, C ;
TAKIZAWA, N ;
KATO, H .
CHEST, 1982, 81 (03) :269-277
[8]  
HIFF R, 1986, CANCER RES, V46, P211
[9]  
KAWAMOTO C, 1985, JPN J DIG DIS, V82, P261
[10]   DIHEMATOPORPHYRIN ETHER PHOSPHOLIPID INTERACTIONS - THE ROLES OF SURFACE-CHARGE AND LATERAL PHASE SEPARATIONS [J].
KENDRICK, SE ;
PERSKY, J ;
ECKHAUSER, ML ;
IMBEMBO, AL ;
FLEISCHMANN, JD ;
KOEHLER, KA .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1987, 46 (05) :669-673