OSTEOCLASTIC INHIBITION - AN ACTION OF NITRIC-OXIDE NOT MEDIATED BY CYCLIC-GMP

被引:298
作者
MACINTYRE, I
ZAIDI, M
ALAM, ASMT
DATTA, HK
MOONGA, BS
LIDBURY, PS
HECKER, M
VANE, JR
机构
[1] ST BARTHOLOMEWS HOSP, COLL MED, WILLIAM HARVEY RES INST, CHARTERHOUSE SQ, LONDON EC1M 6BQ, ENGLAND
[2] ST GEORGE HOSP, SCH MED, DEPT CELLULAR & MOLEC SCI, LONDON SW17 0RE, ENGLAND
[3] ROYAL POSTGRAD MED SCH, DEPT MED & CHEM PATHOL, LONDON W12 0NN, ENGLAND
关键词
OSTEOCLAST; CALCIUM; BONE;
D O I
10.1073/pnas.88.7.2936
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The osteoclast is unique in its ability to resorb bone, and excessive osteoclastic activity has been implicated in osteoporosis, Paget disease of bone, rheumatoid arthritis, and the growth of metastases in bone. The activity of this cell is controlled by the main circulating inhibitor, calcitonin, in association with locally produced modulators. We show that nitric oxide (NO) may be an important member of the latter group. NO is produced by the vascular endothelium and nervous system and is involved in both neurotransmission and the regulation of blood pressure. However, our results show that the autocoid is also a potent inhibitor of osteoclast function. NO (30-mu-M) produced a decrease to almost-equal-to 50% of the original osteoclast spread area. Similar effects were also produced by 3-morpholinosydnonimine or sodium nitroprusside, reagents that spontaneously release NO. These shape changes were associated with a reduction of bone resorption after a 24-hr incubation of isolated osteoclasts on devitalized bone slices. NO is thought to act by stimulating guanylate cyclase, with a consequent increase in cyclic GMP, but a different mode of action is likely in the osteoclast since dibutyryl or 8-bromo cyclic GMP have no effect. It should be noted that calcitonin can produce similar changes in shape and activity but is associated with an increase in osteoclast intracellular calcium and cessation of membrane movement; neither of these is produced by NO, suggesting that its mode of action is different. The abundance of NO-producing endothelial cells in bone marrow and their proximity to osteoclasts suggests that marrow endothelial cells may play a physiological role in the regulation of osteoclastic activity.
引用
收藏
页码:2936 / 2940
页数:5
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