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Histochemical Examination on Periodontal Tissues of Klotho-Deficient Mice Fed With Phosphate-Insufficient Diet
Author(s) -
Kumiko Hikone,
Tomoka Hasegawa,
Erika Tsuchiya,
Hiromi Hongo,
Muneteru Sasaki,
Tomomaya Yamamoto,
Ai Kudo,
Kimimitsu Oda,
Mai Haraguchi,
Paulo Henrique Luiz de Freitas,
Minqi Li,
Junichiro Iida,
Norio Amizuka
Publication year - 2017
Publication title -
journal of histochemistry and cytochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 124
eISSN - 1551-5044
pISSN - 0022-1554
DOI - 10.1369/0022155416689670
Subject(s) - klotho , medicine , endocrinology , alkaline phosphatase , fibroblast growth factor 23 , acid phosphatase , fibroblast , chemistry , biology , biochemistry , calcium , kidney , parathyroid hormone , enzyme , in vitro
To elucidate which of elevated serum concentration of inorganic phosphate (Pi) or disrupted signaling linked to αklotho/fibroblast growth factor 23 (FGF23) is a predominant regulator for senescence-related degeneration seen in αKlotho-deficient mice, we have examined histological alteration of the periodontal tissues in the mandibular interalveolar septum of αKlotho-deficient mice fed with Pi-insufficient diet. We prepared six groups of mice: wild-type, kl/kl, and αKlotho -/- mice with normal diet or low-Pi diet. As a consequence, kl/kl norPi and αKlotho -/-norPi mice showed the same abnormalities in periodontal tissues: intensely stained areas with hematoxylin in the interalveolar septum, dispersed localization of alkaline phosphatase-positive osteoblasts and tartrate-resistant acid phosphatase-reactive osteoclasts, and accumulation of dentin matrix protein 1 in the osteocytic lacunae. Although kl/kl lowPi mice improved these histological abnormalities, αKlotho -/- lowPi mice failed to normalize those. Gene expression of αKlotho was shown to be increased in kl/kl  lowPi specimens. It seems likely that histological abnormalities of kl/kl mice have been improved by the rescued expression of αKlotho, rather than low concentration of serum Pi. Thus, the histological malformation in periodontal tissues in αKlotho-deficient mice appears to be due to not only increased concentration of Pi but also disrupted αklotho/FGF23 signaling.

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