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CD44 Attenuates Metastasis During Breast Cancer Progression

机译:CD44减轻乳腺癌进展过程中的转移。

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摘要

Progression to metastatic disease is the leading cause of deaths resulting from breast cancer. Understanding the mechanisms underlying a cell's ability to move away from its site of origin and populate a distant site is important for the future development of therapies. The interactions between a tumor cell and the microenvironment can modulate a cell's ability to invade through tissues and access distant organs. In this study we present evidence indicating the differential modulation of invasive and proliferative phenotypes by hyaluronan present in the cellular microenvironment.We establish the role of CD44, the primary receptor for hyaluronan, in breast cancer progression and metastasis through the use of transgenic mouse models of breast cancer. While no differences were seen in the onset of primary breast tumors, mice expressing CD44 had a reduced rate of pulmonary metastasis compared to mice that lacked CD44. This establishes an anti-invasive role for CD44 in breast tumor progression. We also identify a decreased population of alveolar macrophages in CD44 negative mice that could affect metastatic breast cancer cell colonization of the lungs.We then focused our study in vitro, where we assessed the invasive properties of breast cancer cells as they move through three dimensional (3D) matrices containing or lacking hyaluronan. We show that in 3D type I collagen gels, breast cancer cells invade more readily in the absence of hyaluronan compared to when hyaluronan (HA) is embedded within the gel. HA mediated inhibition of invasion is dependent on CD44 binding as demonstrated through the use of a CD44 functional blocking antibody.We also show that HA promotes differential phenotypes of breast cancer cell. HA promotes filopodia formation and invasion when soluble in the cell microenvironment. Alternatively, matrix-embedded HA inhibits invasion and promotes migration through the formation of lamellipodia. The differential HA invasive and proliferative phenotypes are mediated by differential activation of ERK or γPAK. Activation of γPAK is mediated by CD44 while ERK activation by HA occurs by CD44 independent mechanisms.We also demonstrate an inhibition of MMP9 mediated invasion by HA when embedded within a type IV collagen matrix, but not a type I collagen matrix. This differential activity indicates that it is not only the immobilization of HA in a matrix that determines its activity, but also the context in which it is present within the matrix.These data underscore the importance of studying matrix components in an environment that closely resembles in vivo conditions. HA is a prime example as it has the capability of both promoting and inhibiting invasion depending on how it is presented to a cell. Differential HA activity also underlies the importance of understanding extracelluar matrix degradation and the release of matrix components as these can adversely affect disease progression.
机译:转移性疾病的进展是乳腺癌导致死亡的主要原因。了解细胞离开其起源部位并分布到一个遥远部位的能力的潜在机制对于治疗的未来发展很重要。肿瘤细胞与微环境之间的相互作用可以调节细胞侵袭组织和进入遥远器官的能力。在这项研究中,我们提供了证据,表明存在于细胞微环境中的透明质酸对侵袭性和增殖表型的差异调节。我们通过使用转基因小鼠模型确定透明质酸的主要受体CD44在乳腺癌进展和转移中的作用。乳腺癌。虽然在原发性乳腺肿瘤的发作中未见差异,但与缺乏CD44的小鼠相比,表达CD44的小鼠的肺转移率降低。这建立了CD44在乳腺肿瘤进展中的抗侵入作用。我们还确定了CD44阴性小鼠中肺泡巨噬细胞数量的减少,可能会影响转移性乳腺癌细胞在肺部的定植。然后我们将研究重点放在了体外,我们评估了乳腺癌细胞在三维中移动时的侵袭特性( 3D)含有或缺乏透明质酸的基质。我们显示,在透明质酸缺失的情况下,与透明质酸(HA)嵌入凝胶中相比,在3D I型胶原蛋白凝胶中,乳腺癌细胞更容易侵入。 HA介导的侵袭抑制作用依赖于CD44结合,如通过使用CD44功能性阻断抗体所证实的。我们还表明HA可以促进乳腺癌细胞的差异表型。当溶于细胞微环境时,HA促进丝状伪足的形成和侵袭。或者,基质包埋的HA通过层状脂膜的形成抑制侵袭并促进迁移。差异HA入侵和增殖表型是由ERK或γPAK的差异激活介导的。 κPAK的激活是由CD44介导的,而HA的ERK激活是由CD44独立的机制发生的。我们还证明了当嵌入IV型胶原蛋白基质而不是I型胶原蛋白基质时,HA抑制MMP9介导的入侵。这种差异性的活性表明,不仅是将HA固定在基质中决定了其活性,还决定了其在基质中的存在环境。这些数据强调了在与之相似的环境中研究基质成分的重要性。体内条件。 HA是一个主要的例子,因为它具有促进和抑制侵袭的能力,这取决于将其呈递给细胞的方式。 HA的差异活性也成为理解细胞外基质降解和基质成分释放的重要性的基础,因为它们会不利地影响疾病进程。

著录项

  • 作者

    Lopez Jose Ignacio;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 EN
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