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Biotensegrity hos extracellular matrix: fysiologi, dynamisk mekanisk balans och implikationer inom onkologi och mechanotherapy

Irene Tadeo, Ana P Berbegall, Luis M Escudero,Tomás Álvaro, Rosa Noguera
Nyckelinsikter
  1. 01Celler omvandlar mekaniska stimuli till kemiska signaler
  2. 02Biotensegritet är en balans mellan spänning och kompression
  3. 03Den extracellulära matrixen är en nyckelkomponent
  4. 04Störd mekanisk balans är kopplad till cancer
  5. 05Detta kan ligga till grund för nya cancerbehandlingar

Den mekaniska balansen i våra vävnader, kallad biotensegritet, påverkar både normal cellfunktion och sjukdomsprocesser som cancer.

Abstract

Cells have the capacity to convert mechanical stimuli into chemical changes. This process is based on the tensegrity principle, a mechanism of tensional integrity. To date, this principle has been demonstrated to act in physiological processes such as mechanotransduction and mechanosensing at different scales (from cell sensing through integrins to molecular mechanical interventions or even localized massage). The process involves intra- and extracellular components, including the participation of extracellular matrix (ECM) and microtubules that act as compression structures, and actin filaments which act as tension structures. The nucleus itself has its own tensegrity system which is implicated in cell proliferation, differentiation, and apoptosis. Despite present advances, only the tip of the iceberg has so far been uncovered regarding the role of ECM compounds in influencing biotensegrity in pathological processes. Groups of cells, together with the surrounding ground substance, are subject to different and specific forces that certainly influence biological processes. In this paper, we review the current knowledge on the role of ECM elements in determining biotensegrity in malignant processes and describe their implication in therapeutic response, resistance to chemo- and radiotherapy, and subsequent tumor progression. Original data based on the study of neuroblastic tumors will be provided.

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APA
Irene Tadeo, Ana P Berbegall, Luis M Escudero, Tomás Álvaro, & Rosa Noguera (2014). Biotensegrity hos extracellular matrix: fysiologi, dynamisk mekanisk balans och implikationer inom onkologi och mechanotherapy. https://fasciaresearchdatabase.com/biotensegrity-of-the-extracellular-matrix-physiology-dynamic-mechanical-balance-and-implications-in-oncology-and-mechanotherapy/
MLA
Irene Tadeo, et al. "Biotensegrity hos extracellular matrix: fysiologi, dynamisk mekanisk balans och implikationer inom onkologi och mechanotherapy." 2014, https://fasciaresearchdatabase.com/biotensegrity-of-the-extracellular-matrix-physiology-dynamic-mechanical-balance-and-implications-in-oncology-and-mechanotherapy/.
Chicago
Irene Tadeo et al. 2014. "Biotensegrity hos extracellular matrix: fysiologi, dynamisk mekanisk balans och implikationer inom onkologi och mechanotherapy.". https://fasciaresearchdatabase.com/biotensegrity-of-the-extracellular-matrix-physiology-dynamic-mechanical-balance-and-implications-in-oncology-and-mechanotherapy/