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Molecular machines stimulate intercellular calcium waves and cause muscle contraction.
Beckham, Jacob L; van Venrooy, Alexis R; Kim, Soonyoung; Li, Gang; Li, Bowen; Duret, Guillaume; Arnold, Dallin; Zhao, Xuan; Li, John T; Santos, Ana L; Chaudhry, Gautam; Liu, Dongdong; Robinson, Jacob T; Tour, James M.
Afiliação
  • Beckham JL; Department of Chemistry, Rice University, Houston, TX, USA.
  • van Venrooy AR; Department of Chemistry, Rice University, Houston, TX, USA.
  • Kim S; Department of Electrical Engineering, Rice University, Houston, TX, USA.
  • Li G; Department of Chemistry, Rice University, Houston, TX, USA.
  • Li B; Department of Chemistry, Rice University, Houston, TX, USA.
  • Duret G; Department of Electrical Engineering, Rice University, Houston, TX, USA.
  • Arnold D; Department of Chemistry, Rice University, Houston, TX, USA.
  • Zhao X; Department of Electrical Engineering, Rice University, Houston, TX, USA.
  • Li JT; Department of Chemistry, Rice University, Houston, TX, USA.
  • Santos AL; Department of Chemistry, Rice University, Houston, TX, USA.
  • Chaudhry G; IdISBA-Fundación de Investigación Sanitaria de las Islas Baleares, Palma, Spain.
  • Liu D; Department of Chemistry, Rice University, Houston, TX, USA.
  • Robinson JT; Department of Chemistry, Rice University, Houston, TX, USA.
  • Tour JM; Department of Bioengineering, Department of Electrical Engineering, Rice University, Houston, TX, USA. jacob.t.robinson@rice.edu.
Nat Nanotechnol ; 18(9): 1051-1059, 2023 09.
Article em En | MEDLINE | ID: mdl-37430037
ABSTRACT
Intercellular calcium waves (ICW) are complex signalling phenomena that control many essential biological activities, including smooth muscle contraction, vesicle secretion, gene expression and changes in neuronal excitability. Accordingly, the remote stimulation of ICW could result in versatile biomodulation and therapeutic strategies. Here we demonstrate that light-activated molecular machines (MM)-molecules that perform mechanical work on the molecular scale-can remotely stimulate ICW. MM consist of a polycyclic rotor and stator that rotate around a central alkene when activated with visible light. Live-cell calcium-tracking and pharmacological experiments reveal that MM-induced ICW are driven by the activation of inositol-triphosphate-mediated signalling pathways by unidirectional, fast-rotating MM. Our data suggest that MM-induced ICW can control muscle contraction in vitro in cardiomyocytes and animal behaviour in vivo in Hydra vulgaris. This work demonstrates a strategy for directly controlling cell signalling and downstream biological function using molecular-scale devices.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Junções Comunicantes / Sinalização do Cálcio Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Junções Comunicantes / Sinalização do Cálcio Idioma: En Ano de publicação: 2023 Tipo de documento: Article