Greger R, Schlatter E, Wang F, Forrest J N
Pflugers Arch. 1984 Dec;402(4):376-84. doi: 10.1007/BF00583938.
Segments of rectal gland tubules (RGT) the spiny dogfish (Squalus acanthias) were perfused in vitro to study the cellular mechanism by which NaCl secretion is stimulated. Transepithelial PD (PDte), transepithelial resistance (Rte), the PD across the basolateral membrane (PDbl), the fractional resistance of the lumen membrane (FR1), and the cellular activities for Cl-, Na+, and K+ (alpha cell x) were measured. In series 1 the effects of stimulation (S) (dbcAMP 10(-4, adenosine 10(-4), and forskolin 10(-6) mol x 1(-1) on these parameters were recorded and compared to nonstimulated state (NS). PDte increased from -1.9 +/- 0.2 mV to -11.0 +/- 0.9 mV (n = 51). PDbl depolarized from -86 +/- 1 to -74 +/- 1.4 mV (n =52), Rte fell from 29 +/- 2.8 to 21 +/- 2 omega cm2 (n = 23), and FR1 fell from 0.96 +/- 0.005 to 0.79 +/- 0.04 (n = 9). alpha cell K+ was constant (123 +/- 13 versus 128 +/- 17 mmol x 1(-1) (n = 6), but alpha cell cl- fell significantly from 48 +/- 4 to 41 +/- 3 mmol x 1(-1) (n = 7). alpha cell Na+ increased from 11 +/- 2.1 to 29.5 +/- 6.6 mmol x 1(-1) (n = 4). In series 2 the conductivity properties were examined by rapid K+, and Cl- concentration steps on the basolateral and luminal cell side respectively in NS and S states. In NS-segments reduction of bath K+ led to a hyperpolarization of PDbl with a mean slope of 28 +/- 1.3 mV/decade (n = 9) (as compared to 19 mV/decade for S-state).(ABSTRACT TRUNCATED AT 250 WORDS)
对白斑角鲨直肠腺小管(RGT)片段进行体外灌注,以研究刺激NaCl分泌的细胞机制。测量跨上皮电位(PDte)、跨上皮电阻(Rte)、基底外侧膜的电位差(PDbl)、管腔膜的分数电阻(FR1)以及Cl-、Na+和K+的细胞活性(α细胞x)。在系列1中,记录刺激(S)(10-4mol/L的二丁酰环磷腺苷、10-4mol/L的腺苷和10-6mol/L的福斯可林)对这些参数的影响,并与非刺激状态(NS)进行比较。PDte从-1.9±0.2mV增加到-11.0±0.9mV(n = 51)。PDbl从-86±1mV去极化到-74±1.4mV(n = 52),Rte从29±2.8Ω·cm2降至21±2Ω·cm2(n = 23),FR1从0.96±0.005降至0.79±0.04(n = 9)。α细胞K+保持恒定(123±13mmol/L对128±17mmol/L,n = 6),但α细胞Cl-从48±4mmol/L显著降至41±3mmol/L(n = 7)。α细胞Na+从11±2.1mmol/L增加到29.5±6.6mmol/L(n = 4)。在系列2中,分别在NS和S状态下,通过快速改变基底外侧和管腔侧细胞的K+和Cl-浓度来检查电导率特性。在NS片段中,浴液K+的降低导致PDbl超极化,平均斜率为28±1.3mV/十倍(n = 9)(S状态下为19mV/十倍)。(摘要截断于250字)