Department of Biomedical Sciences for Health, University of Milan, via F.lli Cervi 93, 20090 Segrate (Milan), Italy.
Org Biomol Chem. 2013 Sep 21;11(35):5747-71. doi: 10.1039/c3ob40945g.
This review focuses on the chemical structure, biosynthesis and synthesis of free and glycosylated pyridinolines (Pyds), fluorescent collagen cross-links, with a pyridinium salt structure. Pyds derive from the degradation of bone collagen and have attracted attention for their use as biochemical markers of bone resorption and to assess fracture risk prediction in persons suffering from osteoporosis, bone cancer and other bone or collagen diseases. We consider and critically discuss all reported syntheses of free and glycosylated Pyds evidencing an unrevised chemistry, original and of general utility, analysis of which allows us to also support a previously suggested non-enzymatic formation of Pyds in collagen better rationalizing and justifying the chemical events.
本文重点介绍了具有吡啶鎓盐结构的游离态和糖基化吡啶诺林(Pyd)——荧光性胶原交联物的化学结构、生物合成和合成。Pyd 来源于骨胶原的降解,因其可作为骨吸收的生化标志物,以及用于评估骨质疏松症、骨癌和其他骨骼或胶原疾病患者的骨折风险预测而受到关注。我们考虑并批判性地讨论了所有报道的游离态和糖基化 Pyd 的合成方法,证明了这些方法所使用的化学方法未经修订,具有原创性和通用性。通过对这些方法的分析,我们还支持之前提出的胶原中 Pyd 非酶形成的假设,从而更好地合理化和证明了这些化学事件的发生。