首页> 中文期刊> 《骨研究:英文》 >Mechanical suppression of breast cancer cell invasion and paracrine signaling to osteoclasts requires nucleo-cytoskeletal connectivity

Mechanical suppression of breast cancer cell invasion and paracrine signaling to osteoclasts requires nucleo-cytoskeletal connectivity

         

摘要

Exercise benefits the musculoskeletal system and reduces the effects of cancer.The effects of exercise are multifactorial,where metabolic changes and tissue adaptation influence outcomes.Mechanical signals,a principal component of exercise,are anabolic to the musculoskeletal system and restrict cancer progression.We examined the mechanisms through which cancer cells sense and respond to low-magnitude mechanical signals introduced in the form of vibration.Low-magnitude,high-frequency vibration was applied to human breast cancer cells in the form of low-intensity vibration(LIV).LIV decreased matrix invasion and impaired secretion of osteolytic factors PTHLH,IL-11,and RANKL.Furthermore,paracrine signals from mechanically stimulated cancer cells,reduced osteoclast differentiation and resorptive capacity.Disconnecting the nucleus by knockdown of SUN1 and SUN2 impaired LIV-mediated suppression of invasion and osteolytic factor secretion.LIV increased cell stiffness;an effect dependent on the LINC complex.These data show that mechanical vibration reduces the metastatic potential of human breast cancer cells,where the nucleus serves as a mechanosensory apparatus to alter cell structure and intercellular signaling.

著录项

  • 来源
    《骨研究:英文》 |2020年第4期|P.393-405|共13页
  • 作者单位

    Department of Physical Therapy School of Health and Rehabilitation Sciences Indiana University Indianapolis IN 46202 USA;

    Department of Medicine Division of Endocrinology School of Medicine Indiana University Indianapolis IN 46202 USA;

    Department of Medicine Division of Endocrinology School of Medicine Indiana University Indianapolis IN 46202 USA;

    Department of Mechanical and Biomedical Engineering Boise State University Boise ID 83725 USA;

    Department of Biomedical Engineering Purdue School of Engineering and Technology Purdue University Indianapolis IN 46202 USA;

    Department of Biomedical Engineering Purdue School of Engineering and Technology Purdue University Indianapolis IN 46202 USADepartment of Anatomy&Cell Biology Indiana University Indianapolis IN 46202 USA;

    Department of Anatomy&Cell Biology Indiana University Indianapolis IN 46202 USA;

    Department of Biomedical Engineering Stony Brook University Stony Brook NY 11794 USA;

    Department of Medicine Division of Endocrinology School of Medicine Indiana University Indianapolis IN 46202 USA;

    Department of Medicine Division of Endocrinology School of Medicine Indiana University Indianapolis IN 46202 USA;

    Department of Physical Therapy School of Health and Rehabilitation Sciences Indiana University Indianapolis IN 46202 USADepartment of Anatomy&Cell Biology Indiana University Indianapolis IN 46202 USA;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 肿瘤学;
  • 关键词

    invasion; impaired; skeletal;

    机译:入侵;受损;骨骼;
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