Centre of Marine Sciences (CCMAR), University of Algarve, Faro, Portugal.
Faculty of Medicine and Biomedical Sciences (FMCB), University of Algarve, Faro, Portugal.
Cell Mol Life Sci. 2023 Sep 30;80(10):310. doi: 10.1007/s00018-023-04953-y.
Skeletal disorders are problematic aspects for the aquaculture industry as skeletal deformities, which affect most species of farmed fish, increase production costs and affect fish welfare. Following recent findings that show the presence of osteoactive compounds in marine organisms, we evaluated the osteogenic and mineralogenic potential of commercially available microalgae strains Skeletonema costatum and Tetraselmis striata CTP4 in several fish systems. Ethanolic extracts increased extracellular matrix mineralization in gilthead seabream (Sparus aurata) bone-derived cell cultures and promoted osteoblastic differentiation in zebrafish (Danio rerio) larvae. Long-term dietary exposure to both extracts increased bone mineralization in zebrafish and upregulated the expression of genes involved in bone formation (sp7, col1a1a, oc1, and oc2), bone remodeling (acp5a), and antioxidant defenses (cat, sod1). Extracts also improved the skeletal status of zebrafish juveniles by reducing the incidence of skeletal anomalies. Our results indicate that both strains of microalgae contain osteogenic and mineralogenic compounds, and that ethanolic extracts have the potential for an application in the aquaculture sector as dietary supplements to support fish bone health. Future studies should also identify osteoactive compounds and establish whether they can be used in human health to broaden the therapeutic options for bone erosive disorders such as osteoporosis.
骨骼疾病是水产养殖业的一个问题,因为骨骼畸形影响了大多数养殖鱼类的品种,增加了生产成本并影响了鱼类福利。最近的研究发现海洋生物中存在骨活性化合物,因此我们评估了市售微藻菌株 Skeletonema costatum 和 Tetraselmis striata CTP4 在几种鱼类系统中的成骨和矿化潜力。乙醇提取物增加了金头鲷(Sparus aurata)骨源性细胞培养物细胞外基质的矿化,并促进了斑马鱼(Danio rerio)幼鱼的成骨细胞分化。两种提取物的长期饮食暴露均增加了斑马鱼的骨矿化,并上调了参与骨形成(sp7、col1a1a、oc1 和 oc2)、骨重塑(acp5a)和抗氧化防御(cat、sod1)的基因表达。提取物还通过降低骨骼畸形的发生率改善了斑马鱼幼鱼的骨骼状况。我们的研究结果表明,这两种微藻菌株均含有成骨和矿化化合物,乙醇提取物有可能作为膳食补充剂应用于水产养殖领域,以支持鱼类骨骼健康。未来的研究还应确定具有骨活性的化合物,并确定它们是否可用于人类健康,以拓宽骨质疏松等骨骼侵蚀性疾病的治疗选择。