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Exogenous C-type natriuretic peptide therapy for impaired skeletal growth in a murine model of glucocorticoid treatment

机译:外源C型利钠肽治疗糖皮质激素治疗小鼠模型中骨骼生长受损

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摘要

Growth retardation is an important side effect of glucocorticoid (GC)-based drugs, which are widely used in various preparations to treat many pediatric diseases. We investigated the therapeutic effect of exogenous CNP-53, a stable molecular form of intrinsic CNP, on a mouse model of GC-induced growth retardation. We found that CNP-53 successfully restored GC-induced growth retardation when both dexamethasone (DEX) and CNP-53 were injected from 4 to 8 weeks old. Notably, CNP-53 was not effective during the first week. From 4 to 5 weeks old, neither CNP-53 in advance of DEX, nor high-dose CNP-53 improved the effect of CNP. Conversely, when CNP-53 was started at 5 weeks old, final body length at 8 weeks old was comparable to that when CNP-53 was started at 4 weeks old. As for the mechanism of resistance to the CNP effect, DEX did not impair the production of cGMP induced by CNP. CNP reduced Erk phosphorylation even under treatment with DEX, while CNP did not changed that of p38 or GSK3β. Collectively, the effect of CNP-53 on GC-induced growth retardation is dependent on age in a mouse model, suggesting adequate and deliberate use of CNP would be effective for GC-induced growth retardation in clinical settings.
机译:生长迟缓是基于糖皮质激素(GC)的药物的重要副作用,该药物广泛用于治疗许多儿科疾病的各种制剂中。我们调查了外源CNP-53(内在CNP的稳定分子形式)对GC诱导的生长迟缓的小鼠模型的治疗效果。我们发现,地塞米松(DEX)和CNP-53均在4至8周龄时注射,CNP-53成功恢复了GC诱导的生长迟缓。值得注意的是,CNP-53在第一周无效。在4至5周龄时,DEX之前的CNP-53或大剂量的CNP-53均未改善CNP的作用。相反,当CNP-53在5周龄开始时,其最终体长在8周龄时与CNP-53在4周龄开始时的相当。至于抗CNP作用的机制,DEX不损害CNP诱导的cGMP的产生。即使使用DEX处理,CNP也会减少Erk磷酸化,而CNP却不会改变p38或GSK3β的磷酸化。总的来说,CNP-53对GC诱导的生长迟缓的影响取决于小鼠模型的年龄,这表明在临床环境中适当而有意地使用CNP对GC诱导的生长迟缓有效。

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