Chan John D, Zarowiecki Magdalena, Marchant Jonathan S
Department of Pharmacology, University of Minnesota Medical School, MN 55455, USA; The Stem Cell Institute, University of Minnesota Medical School, MN 55455, USA.
Parasitol Int. 2013 Dec;62(6):619-28. doi: 10.1016/j.parint.2012.12.001. Epub 2012 Dec 16.
Targeting the cellular Ca(2+) channels and pumps that underpin parasite Ca(2+) homeostasis may realize novel antihelmintic agents. Indeed, the antischistosomal drug praziquantel (PZQ) is a key clinical agent that has been proposed to work in this manner. Heterologous expression data has implicated an action of PZQ on voltage-operated Ca(2+) channels, although the relevant in vivo target of this drug has remained undefined over three decades of clinical use. The purpose of this review is to bring new perspective to this issue by discussing the potential utility of free-living planarian flatworms for providing new insight into the mechanism of PZQ action. First, we discuss in vivo functional genetic data from the planarian system that broadly supports the molecular data collected in heterologous systems and the 'Ca(2+) hypothesis' of PZQ action. On the basis of these similarities we highlight our current knowledge of platyhelminth voltage operated Ca(2+) channels, their unique molecular pharmacology and the downstream functional PZQ interactome engaged by dysregulation of Ca(2+) influx that has potential to yield novel antischistosomal targets. Overall the broad dataset underscores a common theme of PZQ-evoked disruptions of Ca(2+) homeostasis in trematodes, cestodes and turbellarians, and showcases the utility of the planarian model for deriving insight into drug action and targets in parasitic flatworms.
靶向支撑寄生虫钙稳态的细胞钙通道和泵可能会产生新型抗蠕虫药物。事实上,抗血吸虫药物吡喹酮(PZQ)是一种关键的临床药物,有人提出它就是以这种方式发挥作用的。异源表达数据表明PZQ对电压门控钙通道有作用,尽管在三十多年的临床应用中,这种药物的相关体内靶点一直未明确。这篇综述的目的是通过讨论自由生活的涡虫扁虫在为深入了解PZQ作用机制提供新见解方面的潜在用途,为这个问题带来新的视角。首先,我们讨论来自涡虫系统的体内功能遗传学数据,这些数据广泛支持在异源系统中收集的分子数据以及PZQ作用的“钙假说”。基于这些相似性,我们强调了目前对扁形动物电压门控钙通道的了解、它们独特的分子药理学以及因钙内流失调而参与的下游功能性PZQ相互作用组,这有可能产生新的抗血吸虫靶点。总体而言,广泛的数据集强调了PZQ诱发吸虫、绦虫和涡虫钙稳态破坏的共同主题,并展示了涡虫模型在深入了解寄生扁虫药物作用和靶点方面的实用性。