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Telocytes: ultrastrukturella, immunhistokemiska och elektrofysiologiska egenskaper i humant myometrium

Sanda M Cretoiu, Dragos Cretoiu, Adela Marin, Beatrice Mihaela Radu, Laurentiu M Popescu
Nyckelinsikter
  1. 01Telocyter är en distinkt celltyp i livmoderväggen
  2. 02Deras struktur skiljer sig mellan gravid och icke-gravid
  3. 03De bildar nätverk och skickar signaler till andra celler
  4. 04Kan påverka timingen för livmoderns muskelsammandragningar
  5. 05Till skillnad från muskelceller är telocyter inte elektriskt retbara

Specialiserade celler i livmoderväggen, telocyter, kan hjälpa till att tidsstyra och koordinera den glatta muskulaturens sammandragningar.

Abstract

Telocytes (TCs) have been described in various organs and species (www.telocytes.com) as cells with telopodes (Tps) - very long cellular extensions with an alternation of thin segments (podomers) and dilated portions (podoms). We examined TCs using electron microscopy (EM), immunohistochemistry (IHC), immunofluorescence (IF), time-lapse videomicroscopy and whole-cell patch voltage clamp. EM showed a three-dimensional network of dichotomous-branching Tps, a labyrinthine system with homocellular and heterocellular junctions. Tps release extracellular vesicles (mean diameter of 160.6±6.9 nm in non-pregnant myometrium and 171.6±4.6 nm in pregnant myometrium), sending macromolecular signals to neighbouring cells. Comparative measurements (non-pregnant and pregnant myometrium) of podomer thickness revealed values of 81.94±1.77 vs 75.53±1.81 nm, while the podoms' diameters were 268.6±8.27 vs 316.38±17.56 nm. IHC as well as IF revealed double c-kit and CD34 positive results. Time-lapse videomicroscopy of cell culture showed dynamic interactions between Tps and myocytes. In non-pregnant myometrium, patch-clamp recordings of TCs revealed a hyperpolarisation-activated chloride inward current with calcium dependence and the absence of L-type calcium channels. TCs seem to have no excitable properties similar to the surrounding smooth muscle cells (SMCs). In conclusion, this study shows the presence of TCs as a distinct cell type in human non-pregnant and pregnant myometrium and describes morphometric differences between the two physiological states. In addition, we provide a preliminary in vitro electrophysiological evaluation of the non-pregnant state, suggesting that TCs could influence timing of the contractile activity of SMCs.

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APA
Sanda M Cretoiu, Dragos Cretoiu, Adela Marin, Beatrice Mihaela Radu, & Laurentiu M Popescu (2013). Telocytes: ultrastrukturella, immunhistokemiska och elektrofysiologiska egenskaper i humant myometrium. https://fasciaresearchdatabase.com/telocytes-ultrastructural-immunohistochemical-and-electrophysiological-characteristics-in-human-myometrium/
MLA
Sanda M Cretoiu, et al. "Telocytes: ultrastrukturella, immunhistokemiska och elektrofysiologiska egenskaper i humant myometrium." 2013, https://fasciaresearchdatabase.com/telocytes-ultrastructural-immunohistochemical-and-electrophysiological-characteristics-in-human-myometrium/.
Chicago
Sanda M Cretoiu et al. 2013. "Telocytes: ultrastrukturella, immunhistokemiska och elektrofysiologiska egenskaper i humant myometrium.". https://fasciaresearchdatabase.com/telocytes-ultrastructural-immunohistochemical-and-electrophysiological-characteristics-in-human-myometrium/