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Response of aged neurons to super-hypotonic environment.

Hidenori Horie, Kazunori Sango, Masahiko Takano, T Takenaka

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Abstract

Cultured sensory neurons from aged mice (24 months old) lost capability of cell volume auto-regulatory mechanism after the rapid treatment with a hypotonic solution of 1/4 the normal osmolarity or lower. However, they could survive and extend neurites in super-hypotonic media such as 1/4 osmolar and even 1/8 osmolar culture media when the osmolarity was reduced gradually to such a low level.

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What this paper is about

Cultured sensory neurons from aged mice (24 months old) lost capability of cell volume auto-regulatory mechanism after the rapid treatment with a hypotonic solution of 1/4 the normal osmolarity or lower. However, they could survive and extend neurites in super-hypotonic media such as 1/4 osmolar and even 1/8 osmolar culture media when the osmolarity was reduced gradually to such a low level.

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Available abstract

Cultured sensory neurons from aged mice (24 months old) lost capability of cell volume auto-regulatory mechanism after the rapid treatment with a hypotonic solution of 1/4 the normal osmolarity or lower. However, they could survive and extend neurites in super-hypotonic media such as 1/4 osmolar and even 1/8 osmolar culture media when the osmolarity was reduced gradually to such a low level.

Key concepts: Tonicity, Osmotic concentration, Neurite, Cell biology, Cell, Cell culture, Chemistry, Biology

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Response of aged neurons to super-hypotonic environment. — Research Paper | ScholarLens