Department of Health Promotion, Division of Infections and Molecular Biology, Kyushu Dental University, Fukuoka 803-8580, Japan.
Department of Health Promotion, Division of Developmental Stomatognathic Function Science, Kyushu Dental University, Fukuoka 803-8580, Japan.
Molecules. 2021 Apr 1;26(7):1982. doi: 10.3390/molecules26071982.
Although the anti-tumor and anti-infective properties of β-glucans have been well-discussed, their role in bone metabolism has not been reviewed so far. This review discusses the biological effects of β-glucans on bone metabolisms, especially on bone-resorbing osteoclasts, which are differentiated from hematopoietic precursors. Multiple immunoreceptors that can recognize β-glucans were reported to be expressed in osteoclast precursors. Coordinated co-stimulatory signals mediated by these immunoreceptors are important for the regulation of osteoclastogenesis and bone remodeling. Curdlan from the bacterium negatively regulates osteoclast differentiation in vitro by affecting both the osteoclast precursors and osteoclast-supporting cells. We also showed that laminarin, lichenan, and glucan from baker's yeast, as well as β-1,3-glucan from inhibit the osteoclast formation in bone marrow cells. Consistent with these findings, systemic and local administration of β-glucan derived from and suppressed bone resorption in vivo. However, zymosan derived from stimulated the bone resorption activity and is widely used to induce arthritis in animal models. Additional research concerning the relationship between the molecular structure of β-glucan and its effect on osteoclastic bone resorption will be beneficial for the development of novel treatment strategies for bone-related diseases.
虽然 β-葡聚糖的抗肿瘤和抗感染特性已得到充分讨论,但迄今为止,其在骨代谢中的作用尚未得到综述。本文讨论了 β-葡聚糖对骨代谢的生物学影响,特别是对破骨细胞的影响,破骨细胞是由造血前体细胞分化而来的。据报道,多种能够识别 β-葡聚糖的免疫受体在破骨细胞前体中表达。这些免疫受体介导的协调共刺激信号对于破骨细胞生成和骨重塑的调节非常重要。来自细菌的 葡聚糖在体外通过影响破骨细胞前体和破骨细胞支持细胞来负调控破骨细胞分化。我们还表明,来自 的 、 、和来自酿酒酵母的葡聚糖以及 的 β-1,3-葡聚糖抑制骨髓细胞中的破骨细胞形成。与这些发现一致,来自 和 的 β-葡聚糖的全身和局部给药在体内抑制了骨吸收。然而,来自 的 聚糖刺激了骨吸收活性,并且广泛用于诱导动物模型中的关节炎。关于 β-葡聚糖的分子结构与其对破骨细胞骨吸收的影响之间关系的进一步研究将有助于开发治疗与骨骼相关疾病的新策略。