Glycotherapeutics Group, Institute of Medical Biology, 8A Biomedical Grove, #06-06 Immunos, 138648, Singapore.
Glycotherapeutics Group, Institute of Medical Biology, 8A Biomedical Grove, #06-06 Immunos, 138648, Singapore; Lee Kong Chian School of Medicine, Nanyang Technological University-Imperial College London, Singapore.
Biomaterials. 2018 Nov;184:41-55. doi: 10.1016/j.biomaterials.2018.08.056. Epub 2018 Aug 31.
Bone morphogenetic proteins (BMPs) are essential during tissue repair and remodeling after injury. Glycosaminoglycan (GAG) sugars are known to enhance BMP activity in vitro and in vivo; here the interactions of BMP-2 with various glycosaminoglycan classes were compared and shown to be selective for heparin over other comparable saccharides. The minimal chain lengths and specific sulfate moieties required for heparin-derived oligosaccharide binding to BMP-2, and the ability of such oligosaccharides to promote BMP-2-induced osteogenic differentiation in vitro were then determined. BMP-2 could bind to heparin hexasaccharides (dp6) and octasaccharides (dp8), but decasaccharides (dp10) were the minimum chain length required for both efficient binding of BMP-2 and consequent heparin-dependent cell responses. N-sulfation is the most important, and 6-O-sulfation moderately important for BMP-2 binding and activity, whereas 2-O-sulfation was much less critical. Bone formation assays in vivo further confirmed that dp10, N-sulfated heparin oligosaccharides were the minimal requirement for effective enhancement of BMP-2-induced bone formation. Such information is necessary for the rational design of the next generations of heparan-based devices for bone tissue repair.
骨形态发生蛋白(BMPs)在组织损伤后的修复和重塑过程中是必不可少的。糖胺聚糖(GAG)糖被认为可以增强 BMP 在体外和体内的活性;在这里,比较了 BMP-2 与各种糖胺聚糖类的相互作用,结果表明肝素对其他可比糖具有选择性。然后确定了肝素衍生的寡糖与 BMP-2 结合所需的最小链长和特定硫酸盐部分,以及此类寡糖在体外促进 BMP-2 诱导的成骨分化的能力。BMP-2 可以与肝素六糖(dp6)和八糖(dp8)结合,但十糖(dp10)是 BMP-2 有效结合和随后肝素依赖性细胞反应所必需的最小链长。N-硫酸化是最重要的,6-O-硫酸化对 BMP-2 的结合和活性具有中等重要性,而 2-O-硫酸化则不太重要。体内骨形成测定进一步证实,dp10、N-硫酸化肝素寡糖是增强 BMP-2 诱导骨形成的最小要求。此类信息对于基于肝素的下一代骨组织修复设备的合理设计是必要的。