A strong quick-release biointerface in mussels mediated by serotonergic cilia-based adhesion

Author:

Sivasundarampillai Jenaes1ORCID,Youssef Lucia1ORCID,Priemel Tobias1ORCID,Mikulin Sydney1ORCID,Eren E. Deniz1ORCID,Zaslansky Paul2ORCID,Jehle Franziska13ORCID,Harrington Matthew J.1ORCID

Affiliation:

1. Department of Chemistry, McGill University, 801 Sherbrooke Street West, Montreal, Quebec H3A 0B8, Canada.

2. Department for Operative, Preventive and Pediatric Dentistry, Charité-Universitätsmedizin Berlin, Berlin 14197, Germany.

3. Department of Biomaterials, Max Planck Institute of Colloids and Interfaces, Am Mühlenberg 1, 14476 Potsdam, Germany.

Abstract

The mussel byssus stem provides a strong and compact mechanically mismatched biointerface between living tissue and a nonliving biopolymer. Yet, in a poorly understood process, mussels can simply jettison their entire byssus, rebuilding a new one in just hours. We characterized the structure and composition of the byssus biointerface using histology, confocal Raman mapping, phase contrast–enhanced microcomputed tomography, and advanced electron microscopy, revealing a sophisticated junction consisting of abiotic biopolymer sheets interdigitated between living extracellular matrix. The sheet surfaces are in intimate adhesive contact with billions of motile epithelial cilia that control biointerface strength and stem release through their collective movement, which is regulated neurochemically. We posit that this may involve a complex sensory pathway by which sessile mussels respond to environmental stresses to release and relocate.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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