Operculum ultrastructure in leech cocoons
Ultrastructure published in J Morphol (2013)
Abstract
Clitellate annelids (i.e., oligochaetes including leeches) secrete cocoons as part of their normal reproductive cycle. Typically, the cocoon sheath is passed over the head of the leech and sealed at both ends by opercula (i.e., glue-like material secreted by the clitellum). Both the fibrous cocoon wall (CW) and opercula are chemically-related biomaterials that share unusual physiochemical properties, including thermal and chemical resiliency. To explore the underlying morphology of the operculum, we examined cocoons from four leech species (i.e., Myzobdella lugubris, Theromyzon tessulatum, Erpobdella obscura, and Erpobdella punctata) by transmission (TEM) and scanning electron microscopy (SEM). Transmission electron micrographs of all opercula revealed a common, ultrastructural pattern comprising an electron-dense mosaic of ordered polygons that surrounded interspersed cavities. The long axes of cavities were often oriented directionally, suggesting that operculum material is pliable prior to solidification and distorted as a consequence of cocoon deposition. Concomitantly, the operculum permeates jagged edges of the cocoon sheath sealing the cocoon, which provides a mechanically strong CW/operculum boundary. SEM of leech opercula revealed globular nanoparticles comparable to that observed in bioadhesives from disparate animal phyla (e.g., mussel, barnacle, sea star), suggesting a convergent mechanism of bioadhesion among animals.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Resumen
Transmission and scanning electron microscopy of cocoons from four leech species (Myzobdella lugubris, Theromyzon tessulatum, Erpobdella obscura, Erpobdella punctata) revealed an electron-dense mosaic of ordered polygons with globular nanoparticles comparable to bioadhesives in mussels, barnacles, and sea stars.
Por qué esto importa para la hirudoterapia
Mediante microscopía electrónica de transmisión y de barrido, los autores examinaron la ultraestructura del opérculo en cocones de cuatro especies de sanguijuelas: Myzobdella lugubris, Theromyzon tessulatum, Erpobdella obscura y Erpobdella punctata. Encontraron un patrón común de polígonos ordenados electrodensos alrededor de cavidades, evidencia de que el material del opérculo es flexible antes de su solidificación, y una unión mecánicamente resistente donde el opérculo penetra la pared del cocón. La microscopía de barrido también reveló nanopartículas globulares similares a las presentes en bioadhesivos de otros animales, lo que sugiere un mecanismo de bioadhesión convergente. Se trata de biología indirecta de la sanguijuela relevante para biomateriales secretados, pero no aborda anticoagulantes salivales, hirudoterapia ni aplicación clínica, y los hallazgos son únicamente microscopía descriptiva.
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Añadido a la biblioteca ASH: May 26, 2026 · Última actualización del sitio: 18 de junio de 2026