Suppr超能文献

兰尼碱对完整长度钳制乳头肌收缩性能的影响。

Effects of ryanodine on contractile performance of intact length-clamped papillary muscle.

作者信息

Urthaler F, Walker A A, Reeves R C, Hefner L L

机构信息

Department of Medicine, University of Alabama, Birmingham, AL 35294.

出版信息

Circ Res. 1989 Nov;65(5):1270-82. doi: 10.1161/01.res.65.5.1270.

Abstract

Extent, time course, and underlying mechanisms of the negative inotropic effect of ryanodine were examined in 22 length-clamped ferret right ventricular papillary muscles paced 12/min at 25 degrees C. After 60 minutes of exposure to 5 microM ryanodine a new steady state was attained with developed forces averaging 10-15% of maximum twitch force. Ryanodine does not pharmacologically excise the sarcoplasmic reticulum (SR) in this preparation. Ryanodine does not appreciably inhibit the ability of the SR to take up Ca2+ as evidenced by the potentiated beats obtained after a short pause that are nearly as large after ryanodine as before. On comparing equipotent beats before and after ryanodine, we found that ryanodine actually increases the rate at which Ca2+ is released during the twitch if the SR Ca2+ stores are equal or similar. The evidence for this conclusion is a larger maximum rate of tension rise and briefer time to peak tension after ryanodine. Since ryanodine increases the time that SR Ca2+ release channels are open and decreases their conductivity, it must follow that the former effect predominates over the latter in our experiments. Ryanodine increases the leakiness of the SR during diastole probably by inhibiting closure of SR Ca2+ release channels. The evidence for this conclusion is as follows: the early peak of the restitution curves after ryanodine, the brevity of the time required for a rested state contraction after ryanodine, and the small amplitude of the steady-state contraction at a rate of 12/min. The SR leaks even in the absence of ryanodine, but if external Ca2+ is so high that Ca2+ loss from the cell is slowed or a Ca2+ leak into the cell through the sarcolemma cancels the SR leak, then the effects of the SR leak are minimized. The evidence for this conclusion is the time required for rested-state contraction to occur or the slope of the descending limb of restitution curve; however, in presence of ryanodine even high external Ca2+ cannot prevent rapid depletion of SR Ca2+ stores. Even though we have presented evidence for a mechanism whereby ryanodine increases the number of open SR Ca2+ release channels in both systole and diastole, we do not mean to imply that most of them stay open in diastole; the SR would leak too fast to accumulate any Ca2+ for the potentiated beat. Thus, probably most channels close after being open a certain length of time, even in the presence of ryanodine.

摘要

在22条长度固定的雪貂右心室乳头肌中,于25℃下以每分钟12次的频率进行起搏,研究了ryanodine负性肌力作用的程度、时程及潜在机制。在暴露于5微摩尔ryanodine 60分钟后,达到了一个新的稳态,此时所产生的力量平均为最大收缩力的10% - 15%。在该实验准备中,ryanodine并未从药理学上切除肌浆网(SR)。ryanodine并未明显抑制SR摄取Ca2+的能力,这一点可由短暂停顿后出现的增强搏动得到证明,ryanodine处理后的搏动几乎与处理前一样大。在比较ryanodine处理前后等效的搏动时,我们发现,如果SR Ca2+储备相等或相似,ryanodine实际上会增加收缩期Ca2+释放的速率。支持这一结论的证据是ryanodine处理后张力上升的最大速率更大,达到峰值张力的时间更短。由于ryanodine增加了SR Ca2+释放通道开放的时间并降低了其电导率,因此在我们的实验中,前者的作用必定超过后者。ryanodine可能通过抑制SR Ca2+释放通道的关闭而增加舒张期SR的渗漏。支持这一结论的证据如下:ryanodine处理后恢复曲线的早期峰值、ryanodine处理后静息状态收缩所需时间的短暂性以及在每分钟12次频率下稳态收缩的小幅度。即使在没有ryanodine的情况下,SR也会渗漏,但如果细胞外Ca2+浓度过高,以至于细胞内Ca2+流失减缓,或者通过肌膜的Ca2+漏入抵消了SR的渗漏,那么SR渗漏的影响就会最小化。支持这一结论的证据是静息状态收缩发生所需的时间或恢复曲线下降支的斜率;然而,在存在ryanodine的情况下,即使细胞外Ca2+浓度很高也无法阻止SR Ca2+储备的快速耗尽。尽管我们已经提出了ryanodine在收缩期和舒张期增加开放的SR Ca2+释放通道数量的机制的证据,但我们并非意味着暗示它们中的大多数在舒张期保持开放;否则SR渗漏会太快以至于无法为增强的搏动积累任何Ca2+。因此,即使在存在ryanodine的情况下,可能大多数通道在开放一定时间后就会关闭。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验