Department of Biological Sciences, University of North Texas, Denton, TX 76203, USA.
Department of Wildlife and Fisheries, Grand Chenier, LA 70603, USA.
J Exp Biol. 2019 Apr 1;222(Pt 7):jeb201079. doi: 10.1242/jeb.201079.
Reptiles have the capacity to differentially perfuse the systemic and pulmonary vascular circuits via autonomic regulation of the heart and the vascular trees. While this aptitude is widely recognized, the role of 'shunting' as a homeostatic mechanism to match convective transport with tissue demand remains unknown. In crocodilians, it has been hypothesized that a pulmonary vascular bypass of systemic venous blood - a right-to-left (R-L) shunt - serves to deliver CO-rich blood with protons needed for gastric acid secretion during digestion. This hypothesis is partially based on the unique crocodilian vascular anatomy where a left aorta (LAo) arises from the right ventricle, and appears to preferentially supply the gastrointestinal system, whereas the right aorta emerges from the left ventricle. Recent theoretical considerations imply that a R-L shunt would have minuscule effects on , but direct measurements of blood gases in both the right and left aortae or both the right and left atria in fed animals have not been conducted. For this reason, we measured blood parameters including , , pH and [HCO] in the right and left aortae and atria following ingestion of a gavage-fed standardized meal (5% body mass). Blood samples were taken at 3, 6, 12, 24, 36 and 48 h into the digestive period to encompass the period of maximal gastric acid secretion. At no point did or pH differ between the left and right aortae, whereas was significantly lower in the left aorta at several time points during digestion. Our findings do not support the hypothesis that a R-L shunt serves to deliver CO for the gastrointestinal system after feeding in crocodilians.
爬行动物通过心脏和血管树的自主调节,具有将全身和肺循环血管系统区分灌注的能力。虽然这种能力已被广泛认可,但“分流”作为一种体内平衡机制,以匹配对流输送与组织需求的作用仍然未知。在鳄类中,有人假设,全身静脉血的肺侧支循环——右向左(R-L)分流——有助于在消化期间输送富含 CO 的血液以及用于胃酸分泌的质子。这一假设部分基于鳄类独特的血管解剖结构,即左主动脉(LAo)起源于右心室,似乎优先供应胃肠道系统,而右主动脉则起源于左心室。最近的理论考虑表明,R-L 分流对[HCO]3-的影响微乎其微,但尚未对进食动物的右主动脉和左主动脉或右心房和左心房中的血液气体进行直接测量。出于这个原因,我们在喂食标准化餐(5%体重)后,测量了右主动脉和左主动脉以及右心房和左心房中的血液参数,包括[HCO]3-、pH、[HCO]3-、pH 和[HCO]3-。在消化期的 3、6、12、24、36 和 48 小时采集血液样本,以涵盖最大胃酸分泌期。在任何时候,[HCO]3-或 pH 值都没有在左右主动脉之间存在差异,而在消化过程中的几个时间点,左主动脉中的[HCO]3-显著降低。我们的研究结果不支持这样一种假设,即 R-L 分流在鳄类进食后为胃肠道系统输送 CO。