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A possible mechanism of the specific action of bisphosphonates on osteoclasts: tiludronate preferentially affects polarized osteoclasts having ruffled borders.
Author: BarbierA, MurakamiH, NakamuraI, SasakiT, SudaT, TakahashiN, TanakaS, UdagawaN, ZhangD
Original Abstract of the Article :
The mechanism of action of tiludronate [(4-chlorophenyl)-thiomethylene bisphosphonate] on osteoclastic bone resorption was examined in mouse culture systems. Tiludronate did not inhibit the formation of osteoclast-like multinucleated cells (OCLs) induced by 1 alpha,25-dihydroxyvitamin D3 in cocultur...See full text at original site
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引用元:
https://doi.org/10.1016/s8756-3282(95)00150-6
データ提供:米国国立医学図書館(NLM)
Bisphosphonates: Targeting Osteoclasts in the Desert of Bone Metabolism
The desert of bone metabolism is a complex and dynamic landscape, where intricate processes of bone formation and resorption constantly interplay. This study explores the mechanism of action of bisphosphonates, a class of drugs commonly used to treat osteoporosis and other bone diseases. The researchers investigated the specific effects of tiludronate, a bisphosphonate, on osteoclasts, the cells responsible for bone resorption, seeking to understand its precise mode of action.
Navigating the Desert of Bone Metabolism
This study delves into the intricate mechanisms of bone metabolism, revealing the specific action of tiludronate on osteoclasts. The researchers found that tiludronate preferentially affects polarized osteoclasts, those that have developed ruffled borders, disrupting their ability to resorb bone. This finding sheds light on the targeted nature of bisphosphonates, suggesting that they primarily inhibit the activity of mature and active osteoclasts, rather than interfering with their formation.
A Targeted Approach in the Desert
This research offers valuable insights into the mechanisms of action of bisphosphonates, highlighting their specific targeting of polarized osteoclasts. This understanding is crucial for optimizing their therapeutic use and minimizing potential side effects. As we continue to explore the vast desert of bone metabolism, this study underscores the importance of understanding the intricate molecular mechanisms underlying bone health and disease, paving the way for more targeted and effective therapies.
Dr. Camel's Conclusion
This study offers a fascinating glimpse into the intricate mechanisms of bone metabolism, revealing the specific targeting of bisphosphonates on polarized osteoclasts. This knowledge is crucial for optimizing therapeutic strategies and promoting bone health. As we continue to navigate the vast desert of bone research, it's essential to remain open to new discoveries and strive for more precise and effective treatments.
Date :
- Date Completed 1996-02-26
- Date Revised 2022-04-08
Further Info :
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