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首页> 外文期刊>Molecular pharmaceutics >Formulation of Anti-miR-21 and 4-Hydroxytamoxifen Co-loaded Biodegradable Polymer Nanoparticles and Their Antiproliferative Effect on Breast Cancer Cells
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Formulation of Anti-miR-21 and 4-Hydroxytamoxifen Co-loaded Biodegradable Polymer Nanoparticles and Their Antiproliferative Effect on Breast Cancer Cells

机译:抗miR-21和4-羟基他莫昔芬共载生物可降解聚合物纳米粒子的制备及其对乳腺癌细胞的抗增殖作用

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摘要

Breast cancer is the second leading cause of cancer-related death in women. The majority of breast tumors are estrogen receptor-positive (ER+) and hormone-dependent. Neoadjuvant anti-estrogen therapy has been widely employed to reduce tumor mass prior to surgery. Tamoxifen is a broadly used anti-estrogen for early and advanced ER+ breast cancers in women and the most common hormone treatment for male breast cancer. 4-Hydroxytamoxifen (4-OHT) is an active metabolite of tamoxifen that functions as an estrogen receptor antagonist and displays higher affinity for estrogen receptors than that of tamoxifen and its other metabolites. MicroRNA-21 (miR-21) is a small noncoding RNA of 23 nucleotides that regulates several apoptotic and tumor suppressor genes and contributes to chemoresistance in numerous cancers, including breast cancer. The present study investigated the therapeutic potential of 4-OHT and anti-miR-21 coadministration in an attempt to combat tamoxifen resistance, a common problem often encountered in anti-estrogen therapy. A biodegradable poly(d,l-lactide-co-glycolide)-block-poly(ethylene glycol) (PLGA-b-PEG-COOH) copolymer was utilized as a carrier to codeliver 4-OHT and anti-miR-21 to ER+ breast cancer cells. 4-OHT and anti-miR-21 co-loaded PLGA-b-PEG nanoparticles (NPs) were developed using emulsion-diffusion evaporation (EDE) and water-in-oil-in-water (w/o/w) double emulsion methods. The EDE method was found to be best method for 4-OHT loading, and the w/o/w method proved to be more effective for coloading NPs with anti-miR-21 and 4-OHT. The optimal NPs, which were prepared using the double emulsion method, were evaluated for their antiproliferative and apoptotic effects against MCF7, ZR-75-1, and BT-474 human breast cancer cells as well as against 4T1 mouse mammary carcinoma cells. We demonstrated that PLGA-b-PEG NP encapsulation significantly extended 4-OHTs stability and biological activity compared to that of free 4-OHT. MTT assays indicated that treatment of MCF7 cells with 4-OHTanti-miR-21 co-loaded NPs resulted in dose-dependent antiproliferative effects at 24 h, which was significantly higher than what was achieved with free 4-OHT at 48 and 72 h post-treatment. Cell proliferation analysis showed that 4-OHT and anti-miR-21 co-loaded NPs significantly inhibited MCF-7 cell growth compared to that of free 4-OHT (1.9-fold) and untreated cells (5.4-fold) at 1 mu M concentration. The growth rate of MCF7 cells treated with control NPs or NPs loaded with anti-miR-21 showed no significant difference from that of untreated cells. These findings demonstrate the utility of the PLGA-b-PEG polymer NPs as an effective nanocarrier for co-delivery of anti-miR-21 and 4-OHT as well as the potential of this drug combination for use in the treatment of ER+ breast cancer.
机译:乳腺癌是女性与癌症相关的死亡的第二大主要原因。大多数乳腺肿瘤是雌激素受体阳性(ER +)和激素依赖性的。新辅助抗雌激素疗法已被广泛用于减少手术前的肿瘤块。他莫昔芬是一种广泛用于女性早期和晚期ER +乳腺癌的抗雌激素药物,也是男性乳腺癌最常见的激素治疗方法。 4-羟基他莫昔芬(4-OHT)是他莫昔芬的活性代谢产物,它起雌激素受体拮抗剂的作用,并且与他莫昔芬及其其他代谢产物相比,对雌激素受体的亲和力更高。 MicroRNA-21(miR-21)是由23个核苷酸组成的小型非编码RNA,可调节几种凋亡和抑癌基因,并有助于包括乳腺癌在内的多种癌症的化学耐药性。本研究调查了4-OHT和抗miR-21共同给药在对抗他莫昔芬耐药性方面的治疗潜力,这是抗雌激素治疗中经常遇到的常见问题。利用可生物降解的聚(d,l-丙交酯-乙交酯)-嵌段-聚乙二醇(PLGA-b-PEG-COOH)共聚物作为载体将4-OHT和抗miR-21编码为ER +乳腺癌细胞。使用乳液扩散蒸发(EDE)和水包油包水型(w / o / w)双重乳液开发了4-OHT和抗miR-21共载PLGA-b-PEG纳米颗粒(NPs)方法。发现EDE方法是4-OHT上样的最佳方法,而w / o / w方法被证明对于将NPs与抗miR-21和4-OHT共装载更有效。使用双乳液法制备的最佳NPs评估了其对MCF7,ZR-75-1和BT-474人乳腺癌细胞以及对4T1小鼠乳腺癌细胞的抗增殖和凋亡作用。我们证明,与游离4-OHT相比,PLGA-b-PEG NP封装显着延长了4-OHT的稳定性和生物活性。 MTT分析表明,用4-OHTanti-miR-21共加载的NP处理MCF7细胞在24小时时具有剂量依赖性的抗增殖作用,这显着高于在术后48和72小时使用游离4-OHT所获得的抗增殖作用-治疗。细胞增殖分析表明,与1μM时的游离4-OHT(1.9倍)和未处理细胞(5.4倍)相比,4-OHT和抗miR-21共同负载的NPs显着抑制MCF-7细胞的生长。浓度。用对照NP或负载抗miR-21的NP处理的MCF7细胞的生长速率与未处理的细胞无明显差异。这些发现证明了PLGA-b-PEG聚合物NPs作为抗miR-21和4-OHT共同递送的有效纳米载体的用途,以及该药物组合在治疗ER +乳腺癌中的潜力。

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