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The Effects of Single-Walled Carbon Nanotubes on Cancer Cell Migration using a Pancreatic Tumor Model

机译:使用胰肿瘤模型的单壁碳纳米管对癌细胞迁移的影响

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摘要

Non-invasive laser immunotherapy (NLIT) is a viable alternative to traditional cancer treatment because it combines the photothermal and immunological effects of non-invasive laser irradiation and single-walled carbon nanotubes (SWNT) with an immunoadjuvant, glycated chitosan (GC). This combination forms SWNT-GC, a photosensitive immunoadjuvant, which creates a tumor-specific immunity that targets both the primary tumor and any metastasis. It is known that NLIT induces anti-tumor as well as anti-metastatic immune responses, but its immunological mechanism is not clear. The objective of this study is to clarify the role of SWNT-GC in cancer cell migration. Panc02 (non-metastatic) and Panc02-H7 (metastatic) pancreatic cancer cells were used in two-dimensional elastomer plug assays to observe the restriction of cell migration induced by SWNT, GC, and SWNT-GC individually. To replicate a three-dimensional in vivo study, a similar assay was repeated using embedded collagen lattices. Both the 2D and the 3D studies confirmed previous results indicating that GC inhibits cancer cell motility. The 2D and 3D studies also showed that SWNT-GC inhibited the migration of cancer cells, but a discrepancy was observed regarding the effect of SWNT alone. The 2D model concluded that SWNT inhibited migration while the 3D model determined that SWNT promoted migration. The results of this study will guide future work to determine the mechanism behind NLIT, including how metastases are eradicated and how the tumor specific immunity is created.
机译:无创激光免疫疗法(NLIT)是传统癌症治疗的可行替代方案,因为它结合了无创激光辐照和单壁碳纳米管(SWNT)的光热和免疫效应以及免疫佐剂糖化壳聚糖(GC)。这种组合形成了SWNT-GC,一种光敏免疫佐剂,可产生针对原发肿瘤和任何转移灶的肿瘤特异性免疫力。众所周知,NLIT可以诱导抗肿瘤以及抗转移免疫反应,但是其免疫机制尚不清楚。这项研究的目的是阐明SWNT-GC在癌细胞迁移中的作用。 Panc02(非转移性)和Panc02-H7(转移性)胰腺癌细胞用于二维弹性体栓塞测定法,以观察SWNT,GC和SWNT-GC分别诱导的细胞迁移限制。为了复制三维体内研究,使用嵌入的胶原蛋白晶格重复进行类似的测定。 2D和3D研究均证实了先前的结果,表明GC抑制了癌细胞的运动。 2D和3D研究还表明,SWNT-GC可以抑制癌细胞的迁移,但仅SWNT的作用存在差异。 2D模型得出结论,SWNT抑制了迁移,而3D模型确定了SWNT促进了迁移。这项研究的结果将指导未来的工作,以确定NLIT背后的机制,包括如何根除转移以及如何产生肿瘤特异性免疫。

著录项

  • 来源
    《Biophotonics and immune responses XII》|2017年|100650Z.1-100650Z.7|共7页
  • 会议地点 San Francisco(US)
  • 作者单位

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

    Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA,Regeneration and Developmental Biology Laboratory, Department of Biology, University of Central Oklahoma, Edmond, OK 73034, USA;

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

    Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA,Regeneration and Developmental Biology Laboratory, Department of Biology, University of Central Oklahoma, Edmond, OK 73034, USA;

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

    Biophotonics Research Laboratory, Department of Engineering and Physics, University of Central Oklahoma, Edmond, OK 73034, USA,Center for Interdisciplinary Biomedical Education and Research, University of Central Oklahoma, Edmond, OK 73034, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cell migration; laser irradiation; metastatic cancer; pancreatic cancer; immunological stimulant; glycated chitosan; carbon nanotube; single walled;

    机译:细胞迁移;激光照射转移性癌症;胰腺癌;免疫刺激剂糖化壳聚糖碳纳米管单壁;
  • 入库时间 2022-08-26 14:30:58

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