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首页> 外文期刊>American Journal of Physiology >Intracellular pH regulation in neurons from chemosensitive and nonchemosensitive areas of the medulla.
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Intracellular pH regulation in neurons from chemosensitive and nonchemosensitive areas of the medulla.

机译:髓质化学敏感区和非化学敏感区神经元的细胞内pH调节。

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摘要

Intracellular pH (pHi) regulation was studied in neurons from two chemosensitive [nucleus of the solitary tract (NTS) and ventrolateral medulla (VLM)] and two nonchemosensitive [hypoglossal (Hyp) and inferior olive (IO)] areas of the medulla oblongata. Intrinsic buffering power (betaint) was the same in neurons from all regions (46 mM/pH U). Na+/H+ exchange mediated recovery from acidification in all neurons [Ritucci, N. A., J. B. Dean, and R. W. Putnam. Am. J. Physiol. 273 (Regulatory Integrative Comp. Physiol. 42): R433-R441, 1997]. Cl-/HCO-3 exchange mediated recovery from alkalinization in VLM, Hyp, and IO neurons but was absent from most NTS neurons. The Na+/H+ exchanger from NTS and VLM neurons was fully inhibited when extracellular pH (pHo) <7.0, whereas the exchanger from Hyp and IO neurons was fully inhibited only when pHo <6.7. The Cl-/HCO-3 exchanger from VLM, but not Hyp and IO neurons, was inhibited by pHo of 7.9. These pH regulatory properties resulted in steeper pHi-pHo relationships in neurons from chemosensitive regions compared with those from nonchemosensitive regions. These differences are consistent with a role for changes of pHi as the proximate signal in central chemoreception and changes of pHo in modulating pHi changes.
机译:研究了神经元的两个胞内pH(pHi)调节,这些化学敏感的是长延髓的两个化学敏感区[NTS)和腹外侧延髓(VLM)和两个非化学敏感区[hypoglossal(Hyp)和下橄榄(IO)]。所有区域的神经元内在缓冲能力(betaint)相同(46 mM / pH U)。 Na + / H +交换介导了所有神经元酸化的恢复[Ritucci,N. A.,J. B. Dean和R. W. Putnam。上午。 J.生理学。 273(Regulatory Integrative Comp。Physiol。42):R433-R441,1997]。 Cl- / HCO-3交换介导了VLM,Hyp和IO神经元的碱化恢复,但大多数NTS神经元中却没有。当细胞外pH(pHo)<7.0时,来自NTS和VLM神经元的Na + / H +交换子被完全抑制,而仅当pHo <6.7时,来自Hyp和IO神经元的交换子才被完全抑制。 pHo为7.9抑制了来自VLM的Cl- / HCO-3交换子,但没有抑制Hyp和IO神经元。与非化学敏感区域的神经元相比,这些pH调节特性导致化学敏感区域的神经元的pHi-pHo关系更陡。这些差异与pHi的变化作为中枢化学感受中的近端信号以及pHo的变化在调节pHi变化中的作用一致。

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