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11 Data figures and text NCOMMS-16-21368C.xlsx

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Figshare2017-07-24 更新2026-04-08 收录
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Data used in figures and text in the paper NCOMMS-16-21368C entitled:<br>D-serine released by astrocytes in the brainstem regulates the breathing response to CO<sub>2</sub> levels<br>Central chemoreception is essential for adjusting breathing to physiological demands, and for maintaining CO<sub>2</sub> and pH homeostasis in the brain. CO<sub>2</sub>-induced ATP release from brainstem astrocytes stimulates breathing. NMDA receptor antagonism reduces the CO<sub>2</sub>-induced hyperventilation by unknown mechanisms. Here we show that astrocytes in the mouse caudal medullary brainstem can synthesize, store, and release D-serine, an agonist for the glycine-binding site of the NMDAR, in response to elevated CO<sub>2 </sub>levels. We show that systemic and raphe nucleus D-serine administration to awake, unrestrained mice increase the respiratory frequency (fR). Application of D-serine to brainstem slices also increases fR, which was prevented by NMDAR blockade. Inhibition of D-serine synthesis, enzymatic degradation of D-serine, or the sodium fluoroacetate-induced impairment of astrocyte functions decrease the basal fR and the CO<sub>2</sub>-induced respiratory response <i>in vivo</i> and <i>in vitro</i>. Our findings suggest that astrocytic release of D-serine may account for the glutamatergic contribution to central chemoreception.<br><br>

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2017-07-24
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