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Tissue Distribution and Receptor Activation by Somapacitan a Long Acting Growth Hormone Derivative

机译:长效生长激素衍生物Somapacitan的组织分布和受体激活

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摘要

Somapacitan is a long-acting, once-weekly, albumin-binding growth hormone (GH) derivative. The reversible albumin-binding properties leads to prolonged circulation half-life. Here, we investigated and compared somapacitan with human GH on downstream receptor signaling in primary hepatocytes and hepatocellular models and using isothermal titration calorimetry to characterize receptor binding of somapacitan in the presence or absence of human serum albumin (HSA). With non-invasive fluorescence imaging we quantitatively visualize and compare the temporal distribution and examine the tissue-specific growth hormone receptor (GHR) activation at distribution sites. We found that signaling kinetics were slightly more rapid and intense for GH compared with somapacitan. Receptor binding isotherms were characterized by a high and a low affinity interaction site with or without HSA. Using in vivo optical imaging we found prolonged systemically biodistribution of somapacitan compared with GH, which correlated with plasma pharmacokinetics. Ex vivo mouse organ analysis revealed that the temporal fluorescent intensity in livers dosed with somapacitan was significantly increased compared with GH-dosed livers and correlated with the degree of downstream GHR activation. Finally, we show that fluorescent-labeled analogs distributed to the hypertrophic zone in the epiphysis of proximal tibia of hypophysectomized rats and that somapacitan and GH activate the GHR signaling in epiphyseal tissues.
机译:Somapacitan是一种长效,每周一次的白蛋白结合生长激素(GH)衍生物。可逆的白蛋白结合特性可延长循环半衰期。在这里,我们调查和比较了人参皂甙和人GH在原代肝细胞和肝细胞模型中的下游受体信号传导,并使用等温滴定量热法来表征人参皂甙在有或没有人血清白蛋白(HSA)时的受体结合。使用无创荧光成像,我们可以定量地观察和比较时间分布,并检查分布部位的组织特异性生长激素受体(GHR)激活。我们发现,与索马帕西坦相比,GH的信号动力学更快,更强。受体结合等温线的特征是具有或不具有HSA的高和低亲和力相互作用位点。使用体内光学成像,我们发现与GH相比,索马帕西坦的全身生物分布延长,这与血浆药代动力学有关。离体小鼠器官分析显示,与GH给药的肝脏相比,服用somapacitan的肝脏的时间荧光强度显着增加,并且与下游GHR激活程度相关。最后,我们显示荧光标记的类似物分布在垂体切除的大鼠胫骨近端骨epi的肥大区,而索马帕西坦和GH激活骨s组织中的GHR信号传导。

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