首页> 外文期刊>Bioconjugate Chemistry >Folic Acid-Functionalized Nanomedicine: Folic Acid Conjugated Copolymer and Folate Receptor Interactions Disrupt Receptor Functionality Resulting in Dual Therapeutic Anti-Cancer Potential in Breast and Prostate Cancer
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Folic Acid-Functionalized Nanomedicine: Folic Acid Conjugated Copolymer and Folate Receptor Interactions Disrupt Receptor Functionality Resulting in Dual Therapeutic Anti-Cancer Potential in Breast and Prostate Cancer

机译:叶酸官能化纳米胺:叶酸缀合的共聚物和叶酸受体相互作用破坏受体功能,导致乳腺癌和前列腺癌中的双重治疗抗癌潜力

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We have previously reported on a functionalized folic acid (FA) conjugated poly(styrene-alt -maleic anhydride) (SMA) via biological linker 2,4-diaminobutyric acid (DABA) (FA–DABA–SMA) copolymer. This biocompatible nanocopolymer self-assembles in a pH-dependent manner, providing stimuli responsiveness, active targeting, and extended release of hydrophobic chemotherapeutic agents and effectively penetrates the inner core of 3-dimensional cancer spheroid models. The empty FA–DABA–SMA decreased tumor spheroid volume, revealing a previously unknown mechanism of action. Here, we investigated the potential mechanism of the small (20 kDa) and large (350 kDa) FA–DABA–SMA empty copolymers affecting the folic acid receptor alpha (FRα) signaling properties in breast and prostate cancer cell lines. Microscopic imaging, immunocytochemistry, flow cytometry, Caspase 3/7 apoptosis assays, Incucyte live cell tracking, the scratch wound assay, the water-soluble tetrazolium salt-1 (WST-1) cell viability assay, morphologic changes, and Western blot for the expression levels of FRα on the cell surface were used on MDA MB-231 and MCF-7 breast and DU-145 prostate cancer cell lines. The findings indicate that FA–DABA–SMA increases FRα expression levels in breast MDA MB-231 cancer cells and then disrupts FR signaling by reducing HES1 and NOTCH1 protein expression levels. Also, FA–DABA–SMA induces apoptosis and further causes a change in the MDA MB-231 cells’ morphology and significantly reduces their ability to migrate in a scratch wound assay. Collectively, these findings provide a novel insight into the functionalized FA–DABA–SMA copolymer. The 350 and 20 kDa copolymers actively target FRα to initialize internationalization. However, only the large size and sheet-shaped 350 kDa copolymers disrupt FRα signaling. The significance of these novel findings reveals that the copolymer’s intracellular activity is critically dependent on the size and structural shape. This report offers novel therapeutic insight into a dual mechanism of the FA–DABA–SMA copolymer for its therapeutic potential to treat cancer.
机译:我们以前通过生物接头2,4-二氨基丁酸(DABA)(Fa-daba-SMA)共聚物在官能化叶酸(Fa)共轭聚(苯乙烯 - Alt-Maraleic酸酐)(SMA)上。这种生物相容性纳米聚合体以pH依赖性方式自组装,提供刺激反应性,活性靶向和疏水化学治疗剂的延长释放,并有效地穿透三维癌症球体模型的内核。空的Fa-daba-SMA降低肿瘤球体体积,揭示了先前未知的作用机制。在这里,我们研究了影响乳腺癌和前列腺癌细胞系中的小(20kDa)和大(350kDa)和大(350kDa)Fa-daba-sma空共聚物的潜在机制。微观成像,免疫细胞化学,流式细胞术,胱天蛋白酶3/7细胞凋亡测定,切割活细胞跟踪,划痕伤口测定,水溶性四唑鎓盐-1(WST-1)细胞活力测定,形态学变化和Western印迹在MDA MB-231和MCF-7乳腺癌和DU-145前列腺癌细胞中使用细胞表面上FRα的表达水平。结果表明,FA-DABA-SMA增加乳腺MDA MB-231癌细胞中的FRα表达水平,然后通过减少HES1和Notch1蛋白表达水平来破坏FR信号传导。此外,FA-DABA-SMA诱导细胞凋亡,进一步引起MDA MB-231细胞形态的变化,并显着降低了它们在划痕伤口测定中迁移的能力。总的来说,这些发现提供了对官能化Fa-daba-SMA共聚物的新颖洞察力。 350和20 KDA共聚物主动靶向FRα以初始化国际化。然而,只有大尺寸和片状350kDa共聚物破坏FRα信号传导。这些新发现的重要性表明,共聚物的细胞内活性尺寸依赖性依赖于尺寸和结构形状。本报告提供了对FA-DABA-SMA共聚物的双重机制的新型治疗洞察力,用于治疗癌症的治疗潜力。

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