CELLULAR LEAD TOXICITY AND METABOLISM IN PRIMARY AND CLONAL OSTEOBLASTIC BONE-CELLS

被引:32
作者
LONG, GJ
ROSEN, JF
POUNDS, JG
机构
[1] MONTEFIORE MED CTR,ALBERT EINSTEIN COLL MED,BRONX,NY 10467
[2] BROOKHAVEN NATL LAB,DEPT APPL SCI,DIV ATOM & APPL PHYS,UPTON,NY 11973
[3] UNIV ARKANSAS MED SCI HOSP,DIV INTERDISCIPLINARY TOXICOL,LITTLE ROCK,AR 72205
关键词
D O I
10.1016/0041-008X(90)90032-P
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
A knowledge of bone lead metabolism is critical for understanding the toxicological importance of bone lead, as a toxicant both to bone cells and to soft tissues of the body, as lead is mobilized from large reservoirs in hard tissues. To further understand the processes that mediate metabolism of lead in bone, it is necessary to determine lead metabolism at the cellular level. Experiments were conducted to determine the intracellular steady-state 210Pb kinetics in cultures of primary and clonal osteoblastic bone cells. Osteoblastic bone cells obtained by sequential collagenase digestion of mouse calvaria or rat osteosarcoma (ROS 17 2.8) cells were labeled with 210Pb as 5 μm lead acetate for 20 hr, and kinetic parameters were determined by measuring the efflux of 210Pb from the cells over a 210-min period. The intracellular metabolism of 210Pb was characterized by three kinetic pools of 210Pb in both cell types. Although the values of these parameters differed between the primary osteoblastic cells and ROS cells, the profile of 210Pb was remarkably similar in both cell types. Both types exhibited one large, slowly exchanging pool (S3), indicative of mitochondrial lead. These data show that primary osteoblastic bone cells and ROS cells exhibit similar steady-state lead kinetics, and intracellular lead distribution. These data also establish a working model of lead kinetics in osteoblastic bone cells and now permit an integrated view of lead kinetics in bone. © 1990.
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页码:346 / 361
页数:16
相关论文
共 40 条
[1]  
BARRY PSI, 1975, BRIT J IND MED, V32, P119
[2]  
BRAND JS, 1982, ENDOCRINOLOGY CALCIU, P423
[3]   THE PATHOBIOLOGY OF THE OSTEOCLAST [J].
CHAMBERS, TJ .
JOURNAL OF CLINICAL PATHOLOGY, 1985, 38 (03) :241-252
[4]   TRANS-PLACENTAL MOVEMENT OF INORGANIC LEAD IN EARLY AND LATE GESTATION IN THE MOUSE [J].
DANIELSSON, BRG ;
DENCKER, L ;
LINDGREN, A .
ARCHIVES OF TOXICOLOGY, 1983, 54 (02) :97-107
[5]  
DONAHUE HJ, 1988, J BIOL CHEM, V263, P13522
[6]   CALCIUM-TRANSPORT IN ISOLATED BONE-CELLS .3. EFFECTS OF PARATHYROID-HORMONE AND CYCLIC 3',5'-AMP [J].
DZIAK, R ;
STERN, PH .
ENDOCRINOLOGY, 1975, 97 (05) :1281-1287
[7]   USE OF AN INVITRO SYSTEM TO STUDY THE EFFECTS OF LEAD ON ASTROCYTE ENDOTHELIAL-CELL INTERACTIONS - A MODEL FOR STUDYING TOXIC INJURY TO THE BLOOD-BRAIN BARRIER [J].
GEBHART, AM ;
GOLDSTEIN, GW .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1988, 94 (02) :191-206
[8]  
HOLTZMAN D, 1984, NEUROTOXICOLOGY, V5, P97
[9]   EVIDENCE FOR THE COUPLING OF BONE-FORMATION TO BONE-RESORPTION INVITRO [J].
HOWARD, GA ;
BOTTEMILLER, BL ;
BAYLINK, DJ .
METABOLIC BONE DISEASE & RELATED RESEARCH, 1980, 2 (02) :131-135
[10]  
KELLER CA, 1980, J LAB CLIN MED, V95, P81