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载紫杉醇纳米海绵抑制黑色素瘤细胞模型中的生长和血管生成。

Paclitaxel-Loaded Nanosponges Inhibit Growth and Angiogenesis in Melanoma Cell Models.

作者信息

Clemente Nausicaa, Argenziano Monica, Gigliotti Casimiro Luca, Ferrara Benedetta, Boggio Elena, Chiocchetti Annalisa, Caldera Fabrizio, Trotta Francesco, Benetti Elisa, Annaratone Laura, Ribero Simone, Pizzimenti Stefania, Barrera Giuseppina, Dianzani Umberto, Cavalli Roberta, Dianzani Chiara

机构信息

Department of Health Sciences and Interdisciplinary Research Center of Autoimmune Diseases (IRCAD), UPO, Novara, Italy.

Dipartimento di Scienza e Tecnologia del Farmaco, University of Torino, Torino, Italy.

出版信息

Front Pharmacol. 2019 Jul 12;10:776. doi: 10.3389/fphar.2019.00776. eCollection 2019.

Abstract

This study investigated the effects of free paclitaxel (PTX) and PTX-loaded in pyromellitic nanosponges (PTX-PNS) in reducing and melanoma cell growth and invasivity, and in inhibiting angiogenesis. To test the response of cells to the two PTX formulations, the cell viability was evaluated by MTT assay in seven continuous cell lines, in primary melanoma cells, both in 2D and 3D cultures, and in human umbilical vein endothelial cells (HUVECs) after exposure to different concentrations of PTX or PTX-PNS. Cell motility was assessed by a scratch assay or Boyden chamber assay, evaluating cell migration in presence or absence of diverse concentrations of PTX or PTX-PNS. The effect of PTX and PTX-PNS on angiogenesis was evaluated as endothelial tube formation assay, a test able to estimate the formation of three-dimensional vessels . To assess the anticancer effect of PTX and PTX-PNS in experiments, the two drug formulations were tested in a melanoma mouse model obtained by B16-BL6 cell implantation in C57/BL6 mice. Results obtained were as follows: 1) MTT analysis revealed that cell proliferation was more affected by PTX-PNS than by PTX in all tested cell lines, in both 2D and 3D cultures; 2) the analysis of the cell migration showed that PTX-PNS acted at very lower concentrations than PTX; 3) tube formation assay showed that PTX-PNS were more effective in inhibiting tube formation than free PTX; and 4) experiments demonstrated that tumor weights, volumes, and growth were significantly reduced by PTX-PNS treatment with respect to PTX; the angiogenesis and the cell proliferation, detected in the tumor samples with CD31 and Ki-67 antibodies, respectively, indicated that, in the PTX-PNS-treated tumors, the tube formation was inhibited, and a low amount of proliferating cells was present. Taken together, our data demonstrated that our new PTX nanoformulation can respond to some important issues related to PTX treatment, lowering the anti-tumor effective doses and increasing the effectiveness in inhibiting melanoma growth .

摘要

本研究调查了游离紫杉醇(PTX)和载于均苯四甲酸纳米海绵中的紫杉醇(PTX-PNS)在降低黑色素瘤细胞生长和侵袭性以及抑制血管生成方面的作用。为了测试细胞对这两种PTX制剂的反应,在七种连续细胞系、原代黑色素瘤细胞(二维和三维培养)以及人脐静脉内皮细胞(HUVECs)中,通过MTT法评估细胞活力,这些细胞在暴露于不同浓度的PTX或PTX-PNS后进行检测。通过划痕试验或博伊登小室试验评估细胞运动性,评估在存在或不存在不同浓度的PTX或PTX-PNS时细胞的迁移情况。将PTX和PTX-PNS对血管生成的影响评估为内皮管形成试验,该试验能够估计三维血管的形成。为了评估PTX和PTX-PNS在体内实验中的抗癌作用,将这两种药物制剂在通过将B16-BL6细胞植入C57/BL6小鼠获得的黑色素瘤小鼠模型中进行测试。获得的结果如下:1)MTT分析显示,在所有测试的细胞系中,无论是二维还是三维培养,PTX-PNS对细胞增殖的影响均大于PTX;2)细胞迁移分析表明,PTX-PNS在比PTX低得多的浓度下起作用;3)管形成试验表明,PTX-PNS在抑制管形成方面比游离PTX更有效;4)体内实验表明,与PTX相比,PTX-PNS治疗显著降低了肿瘤重量、体积和生长;分别用CD31和Ki-67抗体在肿瘤样本中检测到的血管生成和细胞增殖表明,在PTX-PNS治疗的肿瘤中,管形成受到抑制,增殖细胞数量较少。综上所述,我们的数据表明,我们新的PTX纳米制剂可以应对与PTX治疗相关的一些重要问题,降低抗肿瘤有效剂量并提高抑制黑色素瘤生长的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1f7/6639435/f67bff752852/fphar-10-00776-g001.jpg

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