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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Disruption of galectin-3 and galectin-3 binding protein (G3BP) interaction by dietary pectic polysaccharides (DPP) - Arrest of metastasis, inhibition of proliferation and induction of apoptosis
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Disruption of galectin-3 and galectin-3 binding protein (G3BP) interaction by dietary pectic polysaccharides (DPP) - Arrest of metastasis, inhibition of proliferation and induction of apoptosis

机译:通过膳食果糖多糖(DPP)的加塞内菌素-3和Galectin-3结合蛋白(G3bp)的破坏 - 阻滞转移,抑制增殖和凋亡的诱导

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摘要

Galectin-3 and galectin-3 binding proteins (G3BP) are implicated as key players in metastasis. In the current study, we evaluated the effect of pectic polysaccharides on galectin-3 and G3BP mediated metastasis in vitro (cells) and in vivo (tissues). In vitro study (double immunostaining) confirms the presence of galectin-3 on the cell surface and G3BP in the interlinking region of the cells confirming the role of G3BP in bridging galectin-3 molecules. Dietary carrot (Daucus carota) pectic polysaccharide (CRPP) blocked the expression of galectin-3 and G3BP more effectively (80%), whereas the expressions were reduced to 60% upon treatment with swallow root (Decalepis hamiltonii) pectic polysaccharide (SRPP), beta-carotene and deferoxamine (antiproliferative drug). Ginger (Gingiber officinale) pectic polysaccharide (GRPP) showed only 20% reduction. CRPP reduced 80% of tumor incidence followed by cyclophosphamide - a chemotherapeutic drug (77%), SRPP (67%) and GRPP (45%). Further 3-5 folds reduction in galectin-3/G3BP expression followed by infiltration of macrophages into the deeper layer of the skin by CRPP and SRPP suggested the anticancer property via immunomodulation. Surface Plasmon Resonance (SPR) studies confirm galectin-3 and G3BP interaction, which are disrupted during the treatment with dietary pectic polysaccharides (DPP) (Supplementary Scheme-1). Overall data demonstrate the role of DPPs as potential anticancer alternatives. (C) 2019 Elsevier B.V. All rights reserved.
机译:Galectin-3和Galectin-3结合蛋白(G3BP)涉及转移中的关键参与者。在目前的研究中,我们评估了果糖多糖对Galectin-3和G3bp介导的转移体外(细胞)和体内(组织)的影响。体外研究(双重免疫染色)证实了在细胞表面上的Galectin-3的存在,并且在细胞的相互连接区域中的G3BP确认G3BP在桥接Galectin-3分子中的作用。膳食红萝卜(Daucus Carota)果糖(CRPP)更有效地阻断了Galectin-3和G3bp的表达(80%),而表情将在用吞咽根(甲壳石哈密氏菌)果糖多糖(SRPP)处理后减少至60%, β-胡萝卜素和Deferoxamine(抗增殖药物)。姜(Gingiber Officinale)PectiC多糖(GRPP)减少了20%。 CRPP减少了80%的肿瘤发病率,然后减少了环磷酰胺 - 化学治疗药物(77%),SRPP(67%)和GRPP(45%)。此外,通过CRPP和SRPP通过免疫调节浸润到巨噬细胞中的3-5倍,然后通过CRPP渗透到皮肤上深层浸润。表面等离子体共振(SPR)研究证实了Galectin-3和G3BP相互作用,其在用膳食果糖(DPP)(补充方案-1)处理期间被破坏。整体数据展示了DPP作为潜在的抗癌替代品的作用。 (c)2019 Elsevier B.v.保留所有权利。

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