Synopsis of Social media discussions

Throughout the discussions, commenters express support and curiosity about how mechanical forces influence cancer spread, using words like 'muscle their way' and phrases like 'describing biomechanics,' which show an active interest in the study's implications. The tone reflects respect for the research's significance, highlighting its potential impact on future cancer therapies and understanding of metastasis.

A
Agreement
Moderate agreement

Most discussions acknowledge the importance of the study, with some explicitly praising its contributions to understanding cancer metastasis.

I
Interest
High level of interest

The topics related to cancer cell mechanics and migration appear engaging to the audience, shown by enthusiastic reactions and mentions of the study in various contexts.

E
Engagement
Moderate level of engagement

Posts reference specific aspects of the research, such as the mechanics involved and the biological implications, indicating active interest and understanding.

I
Impact
Moderate level of impact

Discussions suggest that the publication is seen as meaningful for advancing knowledge in cancer biology and potentially influencing future research or treatment strategies.

Social Mentions

YouTube

1 Videos

Twitter

24 Posts

News

3 Articles

Metrics

Video Views

77

Total Likes

67

Extended Reach

1,303,861

Social Features

28

Timeline: Posts about article

Top Social Media Posts

Posts referencing the article

Endothelium and Matrix Mechanics in Cancer Cell Transendothelial Migration

Endothelium and Matrix Mechanics in Cancer Cell Transendothelial Migration

Cancer cell extravasation involves stopping on the blood vessel lining and moving into tissues. The study highlights how the mechanical properties of the endothelium and subendothelial matrix influence cancer cell migration through blood vessel walls.

September 19, 2023

77 views


  • @victor_mrtnez
    @victor_mrtnez (Twitter)

    RT @chayito09: Fuentes: Artículo resumido y traducido: - https://t.co/M5rvNWyiHj - https://t.co/dvRvtgk1tA - https://t.co/wxnspLZPPH -…
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    March 1, 2024

    4


  • @ferminacevesd (Twitter)

    RT @chayito09: Fuentes: Artículo resumido y traducido: - https://t.co/M5rvNWyiHj - https://t.co/dvRvtgk1tA - https://t.co/wxnspLZPPH -…
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    March 1, 2024

    4

  • Jorge ortega
    @jaguarjmo (Twitter)

    RT @chayito09: Fuentes: Artículo resumido y traducido: - https://t.co/M5rvNWyiHj - https://t.co/dvRvtgk1tA - https://t.co/wxnspLZPPH -…
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    March 1, 2024

    4

  • Elsa T
    @ElsaT5922 (Twitter)

    RT @chayito09: Fuentes: Artículo resumido y traducido: - https://t.co/M5rvNWyiHj - https://t.co/dvRvtgk1tA - https://t.co/wxnspLZPPH -…
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    March 1, 2024

    4

  • Rosario in Paris ᥫ᭡
    @chayito09 (Twitter)

    Fuentes: Artículo resumido y traducido: - https://t.co/M5rvNWyiHj - https://t.co/dvRvtgk1tA - https://t.co/wxnspLZPPH - https://t.co/RtlseQTf4w -https://t.co/QugKLttg0Q - https://t.co/qMVWaKbs8d - https://t.co/gEHlrmYRrE - https://t.co/NJqUWA6mFg https://t.co/0eapOSjlsV
    view full post

    March 1, 2024

    22

    4

  • KammLab
    @kamm_lab (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    May 5, 2023

    9

  • Laura Quevedo
    @lauriquepa (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    May 2, 2023

    9

  • NP AGARWAL世界一フォローを目指しますAiming best in world.
    @np_grwl (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 20, 2023

    7

  • Grupo Genómica Funcional IBBTEC
    @IBBTEC_Varela (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 17, 2023

    9

  • Jon Humphries
    @JDHL18 (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 15, 2023

    9

  • Ashraf Saad, bridging Glycobiology and Oncology!
    @AsAshraf123321 (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 14, 2023

    9

  • Javier Redondo
    @jredondomunoz (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 14, 2023

    9

  • eharo84
    @EndikaHaro (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 14, 2023

    9

  • Elena Rainero
    @ERainero_lab (Twitter)

    RT @calvo_lab: Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells…
    view full post

    April 14, 2023

    9

  • CalvoLab
    @calvo_lab (Twitter)

    Glad to share our newest study with our collaborators @emadmoeen @kamm_lab, describing the biomechanics of how cancer cells escape from the bloodstream to invade other organs, published yesterday in Advanced Science https://t.co/BCRu9wIMpe
    view full post

    April 14, 2023

    38

    9

  • Ariakas Enoreth
    @Aenoreth (Twitter)

    Endothelium and Subendothelial Matrix Mechanics Modulate Cancer Cell Transendothelial Migration https://t.co/9apCN4Wfy5
    view full post

    April 14, 2023

  • Rene Sugar
    @renesugar (Twitter)

    Endothelium and Subendothelial Matrix Mechanics Modulate Cancer Cell Transendothelial Migration https://t.co/HAlggequRq
    view full post

    April 14, 2023

    1

  • serrgv
    @serrgv (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 13, 2023

    7

  • Manu Gupta
    @guptam108 (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 13, 2023

    7

  • Medical Xpress
    @physorg_health (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 13, 2023

    7

  • Science X
    @sciencex_com (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 13, 2023

    7

  • Phys.org
    @physorg_com (Twitter)

    RT @medical_xpress: How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKse…
    view full post

    April 13, 2023

    7

  • Medical Xpress
    @medical_xpress (Twitter)

    How ##cancercells muscle their way into other organs @uclnews @advscinews https://t.co/LSavupN5YS https://t.co/CwXMQKsekx
    view full post

    April 13, 2023

    6

    7

  • plantregeneration
    @plant_regenerat (Twitter)

    Endothelium and Subendothelial Matrix Mechanics Modulate Cancer Cell Transendothelial Migration https://t.co/yopMqpztQ8
    view full post

    April 13, 2023

Abstract Synopsis

  • Cancer cell extravasation involves the cancer cells stopping on the blood vessel lining (endothelium) and then moving through it into tissues, a critical step in metastasis.
  • The study highlights that the mechanical properties of the endothelium and the subendothelial matrix significantly influence the ability of cancer cells to migrate through blood vessel walls.
  • Both the forces exerted by cancer cell protrusions and the contractile forces of endothelial cells play crucial roles in the success of transmigration, affecting where metastasis occurs.