Literature DB >> 15466813

Laryngeal chemosensory clusters.

Andrea Sbarbati1, Flavia Merigo, Donatella Benati, Marco Tizzano, Paolo Bernardi, Francesco Osculati.   

Abstract

The expression of molecules involved in the transductory cascade of the sense of taste (TRs, alpha-gustducin, PLCbeta2, IP3R3) has been described in lingual taste buds or in solitary chemoreceptor cells located in different organs. At the laryngeal inlet, immunocytochemical staining at the light and electron microscope levels revealed that alpha-gustducin and PLCbeta2 are mainly localized in chemosensory clusters (CCs), which are multicellular organizations differing from taste buds, being generally composed of two or three chemoreceptor cells. Compared with lingual taste buds, CCs are lower in height and smaller in diameter. In laryngeal CCs, immunocytochemistry using the two antibodies identified a similar cell type which appears rather unlike the alpha-gustducin-immunoreactive (IR) and PLCbeta2-IR cells visible in lingual taste buds. The laryngeal IR cells are shorter than the lingual ones, with poorly developed basal processes and their apical process is shorter and thicker. Some cells show a flask-like shape due to the presence of a large body and the absence of basal processes. CCs lack pores and their delimitation from the surrounding epithelium is poorly evident. The demonstration of the existence of CCs strengthens the hypothesis of a phylogenetic link between gustatory and solitary chemosensory cells. Copyright 2004 Oxford University Press

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Year:  2004        PMID: 15466813     DOI: 10.1093/chemse/bjh071

Source DB:  PubMed          Journal:  Chem Senses        ISSN: 0379-864X            Impact factor:   3.160


  18 in total

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Authors:  G Krasteva; W Kummer
Journal:  Histochem Cell Biol       Date:  2012-07-10       Impact factor: 4.304

2.  Solitary chemoreceptor cell proliferation in adult nasal epithelium.

Authors:  Brian D Gulbransen; Thomas E Finger
Journal:  J Neurocytol       Date:  2005-03

3.  Solitary chemoreceptor cell survival is independent of intact trigeminal innervation.

Authors:  Brian Gulbransen; Wayne Silver; Thomas E Finger
Journal:  J Comp Neurol       Date:  2008-05-01       Impact factor: 3.215

4.  Cholinergic chemosensory cells in the auditory tube.

Authors:  G Krasteva; P Hartmann; T Papadakis; M Bodenbenner; L Wessels; E Weihe; B Schütz; A C Langheinrich; V Chubanov; T Gudermann; I Ibanez-Tallon; W Kummer
Journal:  Histochem Cell Biol       Date:  2012-01-20       Impact factor: 4.304

5.  Morphology of P2X3-immunoreactive nerve endings in the rat laryngeal mucosa.

Authors:  Natsumi Takahashi; Nobuaki Nakamuta; Yoshio Yamamoto
Journal:  Histochem Cell Biol       Date:  2015-10-16       Impact factor: 4.304

6.  Morphology of GNAT3-immunoreactive chemosensory cells in the rat larynx.

Authors:  Haruka Masuda; Nobuaki Nakamuta; Yoshio Yamamoto
Journal:  J Anat       Date:  2018-11-23       Impact factor: 2.610

7.  Minor antenna proteins CP24 and CP26 affect the interactions between photosystem II subunits and the electron transport rate in grana membranes of Arabidopsis.

Authors:  Silvia de Bianchi; Luca Dall'Osto; Giuseppe Tognon; Tomas Morosinotto; Roberto Bassi
Journal:  Plant Cell       Date:  2008-04-01       Impact factor: 11.277

8.  Residual chemosensory capabilities in double P2X2/P2X3 purinergic receptor null mice: intraoral or postingestive detection?

Authors:  Robert M Hallock; Marco Tatangelo; Jennell Barrows; Thomas E Finger
Journal:  Chem Senses       Date:  2009-11       Impact factor: 3.160

Review 9.  Chemosensors in the nose: guardians of the airways.

Authors:  Marco Tizzano; Thomas E Finger
Journal:  Physiology (Bethesda)       Date:  2013-01

10.  Nasal solitary chemoreceptor cell responses to bitter and trigeminal stimulants in vitro.

Authors:  Brian D Gulbransen; Tod R Clapp; Thomas E Finger; Sue C Kinnamon
Journal:  J Neurophysiol       Date:  2008-04-16       Impact factor: 2.714

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