Adekunle Adeshina I, Meehan Michael T, McBryde Emma S
Australian Institute of Tropical Health and Medicine, James Cook University, Australia.
Infect Dis Model. 2019 Oct 19;4:265-285. doi: 10.1016/j.idm.2019.10.001. eCollection 2019.
Arboviral infections, especially dengue, continue to cause significant health burden in their endemic regions. One of the strategies to tackle these infections is to replace the main vector agent, , with the ones incapable of transmitting the virus. , an intracellular bacterium, has shown promise in achieving this goal. However, key factors such as imperfect maternal transmission, loss of infection, reduced reproductive capacity and shortened life-span affect the dynamics of in different forms in the population. In this study, we developed a transmission dynamic model adjusting for imperfect maternal transmission and loss of infection. The invasive reproductive number that determines the likelihood of replacement of the -uninfected (WU) population is derived and with it, we established the local and global stability of the equilibrium points. This analysis clearly shows that cytoplasmic incompatibility (CI) does not guarantee establishment of the -infected (WI) mosquitoes as imperfect maternal transmission and loss of infection could outweigh the gains from CI. Optimal release programs depending on the level of imperfect maternal transmission and loss of infection are shown. Hence, it is left to decision makers to either aim for replacement or co-existence of both populations.
虫媒病毒感染,尤其是登革热,在其流行地区继续造成重大的健康负担。应对这些感染的策略之一是用无法传播病毒的媒介取代主要病媒。沃尔巴克氏体,一种细胞内细菌,在实现这一目标方面已显示出前景。然而,诸如母体传播不完善、沃尔巴克氏体感染丧失、繁殖能力降低和寿命缩短等关键因素以不同形式影响着沃尔巴克氏体在蚊子种群中的动态。在本研究中,我们建立了一个调整了母体传播不完善和沃尔巴克氏体感染丧失情况的沃尔巴克氏体传播动力学模型。推导了决定未感染沃尔巴克氏体(WU)种群被取代可能性的入侵繁殖数,并据此建立了平衡点的局部和全局稳定性。该分析清楚地表明,细胞质不亲和(CI)并不能保证感染沃尔巴克氏体(WI)的蚊子得以确立,因为母体传播不完善和沃尔巴克氏体感染丧失可能超过细胞质不亲和带来的益处。展示了根据母体传播不完善和沃尔巴克氏体感染丧失程度制定的最优释放方案。因此,决策者需要决定是致力于取代还是让两种蚊子种群共存。