Institute of Pharmaceutical Biology, Goethe University Frankfurt/Main, Germany.
LOEWE Center Translational Biodiversity Genomics (TBG), Frankfurt/Main, Germany.
Planta Med. 2021 Jul;87(8):611-619. doi: 10.1055/a-1351-1038. Epub 2021 Feb 2.
BNO 1095, a standardized dry extract from the fruits of , represents an approved herbal medicinal product for the treatment of premenstrual syndrome. Angiogenesis, the formation of new blood vessels from pre-existing capillaries, plays a major role in physiological situations, such as wound healing or tissue growth in female reproductive organs, but it is also of great importance in pathophysiological conditions such as chronic inflammatory diseases or cancer. Angiogenesis is a highly regulated multi-step process consisting of distinct key events that can be influenced pharmacologically. Few studies suggested anti-angiogenic actions of fruit extracts in and models. Here, we provide for the first time profound data on BNO 1095-derived anti-angiogenic effects focusing on distinct angiogenesis-related endothelial cell functions that are inevitable for the process of new blood vessel formation. We found that extract significantly attenuated undirected and chemotactic migration of primary human endothelial cells. Moreover, the extract efficiently inhibited endothelial cell proliferation and reduced the formation of tube-like structures on Matrigel. Of note, the treatment of endothelial cell spheroids almost blocked endothelial sprouting in a 3D collagen gel. Our data present new and detailed insights into the anti-angiogenic actions of BNO 1095 and, therefore, suggest a novel scope of potential therapeutic applications of the extract for which these anti-angiogenic properties are required.
BNO 1095,一种标准化的从果实中提取的干燥提取物,是一种已批准的草药药物,用于治疗经前综合征。血管生成,即从现有毛细血管中形成新血管,在生理情况下(如伤口愈合或女性生殖器官中的组织生长)起着重要作用,但在慢性炎症性疾病或癌症等病理生理情况下也非常重要。血管生成是一个高度调节的多步骤过程,包括可以通过药理学影响的独特关键事件。一些研究表明,果实提取物在和模型中具有抗血管生成作用。在这里,我们首次提供了关于 BNO 1095 衍生的抗血管生成作用的深刻数据,重点关注与新血管形成过程相关的独特血管生成相关内皮细胞功能。我们发现,提取物显著减弱了原代人内皮细胞的无定向和趋化性迁移。此外,该提取物有效地抑制了内皮细胞的增殖,并减少了在 Matrigel 上形成管状结构。值得注意的是,内皮细胞球体的处理几乎阻断了 3D 胶原凝胶中内皮细胞的发芽。我们的数据提供了关于 BNO 1095 的抗血管生成作用的新的和详细的见解,因此,提示了提取物的潜在治疗应用的新范围,这些抗血管生成特性是必需的。