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Biomimetic synthesis of struvite with biogenic morphology and implication for pathological biomineralization

机译:具有生物成因形态的鸟粪石的仿生合成及其对病理生物矿化的意义

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Recent studies have found that certain urinary proteins can efficiently inhibit stone formation. These discoveries are significant for developing effective therapies for stone disease, but the inhibition mechanism of crystallization remains elusive. In the present study, polyaspartic acid (PASP) was employed as a model peptide to investigate the effect of urinary proteins on the crystallization and morphological evolution of struvite. The results demonstrate that selective adsorption/binding of PASP onto the {010} and {101} faces of struvite crystals results in arrowhead-shaped morphology, which further evolves into X-shaped and unusual tabular structures with time. Noticeably, these morphologies are reminiscent of biogenic struvite morphology. Concentration-dependent experiments show that PASP can inhibit struvite growth and the inhibitory capacity increases with increasing PASP concentration, whereas aspartic acid monomers do not show a significant effect. Considering that PASP is a structural and functional analogue of the subdomains of aspartic acid-rich proteins, our results reveal that aspartic acid-rich proteins play a key role in regulating biogenic struvite morphology, and aspartic acid residues contribute to the inhibitory capacity of urinary proteins. The potential implications of PASP for developing therapeutic agents for urinary stone disease is also discussed.
机译:最近的研究发现,某些尿蛋白可以有效地抑制结石的形成。这些发现对于开发治疗结石病的有效疗法具有重要意义,但是结晶的抑制机制仍然难以捉摸。在本研究中,聚天冬氨酸(PASP)被用作模型肽来研究尿蛋白对鸟粪石的结晶和形态演化的影响。结果表明,PASP在鸟粪石晶体的{010}和{101}面上的选择性吸附/结合导致箭头形的形态,随着时间的流逝进一步演变为X形和不寻常的板状结构。值得注意的是,这些形态使人联想到生物型鸟粪石形态。浓度依赖性实验表明,PASP可以抑制鸟粪石的生长,并且抑制能力随PASP浓度的增加而增加,而天冬氨酸单体则没有明显的作用。考虑到PASP是富含天冬氨酸的蛋白质亚结构域的结构和功能类似物,我们的研究结果表明富含天冬氨酸的蛋白质在调节生物鸟粪石形态中起关键作用,而天冬氨酸残基有助于抑制尿液蛋白质。还讨论了PASP对开发治疗尿路结石的治疗剂的潜在意义。

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