As world become closer and many people travel around the world, infectious diseases are likely to be prevalent, Dengue, chikungunya, Zika virus would become endemic diseases in many places in the world as climate is more likely to be fit to mosquito vectors than before. As a matter of fact, Aedes albopictus mediating these diseases became endemic species in Japan and France recently. One of the things that we employ is that we need to apply the Internet of Things concept in disease vector control soon to increase the accuracy of vector species in time as they are present unexpectedly. Here in this presentation, many lines of current state-of-the-art technologies to control the disease vectors using big data informatics application and machine learning strategies. With this trend, this presentation will add future directions of integrated vector management with new research endeavors to monitor the population of disease vectors concisely and precisely, Application of internet of things (IoT) in disease vector management will be addressed in this presentation. This will change future research and development of apparatus to monitor and control disease vectors.
모기는 말라리아, 황열, 뎅기열, 웨스트나일열, 사상충, 치쿤구냐, 일본뇌염, 지카 등의 여러 질병을 매개하고 있고 자연적 요인과 인위적 요인에 의한 지구의 기후변화는 이들 병원성 매개모기들이 점점 더 번성하게 만드는 요인이 되고 있다. 현재 우리나라에서 주목해야 될 감염성 매개질병으로 말라리아와 뎅기열은 기후변화에 의한 기온 상승 요인으로 매개모기의 분포지역 확대와 함께 교통수단의 발달 및 국가 간 빈번한 교류에 의해서 유럽을 비롯한 오세아니아, 동아시아의 온대 지역에서도 감염자의 발생빈도 수가 최근 지속적으로 증가 추세를 보이고 있다. 따라서 기후변화 요인과 인간 활동 등에 의한 요인으로 감염 지역과 매개모기 분포가 미래 예측 불확실성과 복잡성을 가지고 있지만 국내 침입을 막기 위한 해외 유입 방지에 대한 지속적인 모니터링과 방제뿐만 아니라 국가 간 방제 프로그램 공조를 통한 모기에 의해 매개되는 질병 확산에 대비하는 것이 중요할 것으로 생각된다.
As the malaria surveillance agency, the Korean Center for Control and Prevention (KCDC) has been monitoring malaria vector mosquito density and Plasmodium vivax infection since 2009. Anopheline mosquitoes were collected at 35 sites in Incheon, northern Gyeonggi and northern Gangwon Province using black light trap daily from April to October 2015. P. vivax infection of malaria vector mosquitoes tested by polymerase chain reaction (PCR). In 2015, a total of 57,926 malaria vector mosquitoes were collected among 138,119 mosquitoes. Three P. vivax positive pools were detected among 1,556 pools (13,745 individuals) and its minimum infection rate was 0.22. According to the monitoring result of malaria vector mosquitoes, early summer (June-July) could be an appropriate time for a malaria elimination campaign until September.
There are over 3,000 different species of mosquitoes throughout the world; currently 56 species are reported in Korea. Mosquitoes can act as vectors for many disease-causing viruses and parasites during blood sucking. Various species of mosquitoes are estimated to transmit various types of disease to more than 700 million people annually in Africa, South America, Central America, Mexico, Russia, and much of Asia, with millions of resultant deaths. At least two million people annually die of these diseases, and the morbidity rates are many times higher still. To prevent the spread of diseases, KNIH (Korea National Institute of Health) used three categorized methods; identifying or taxonomic analysis of mosquitoes, detecting virus caring mosquitoes, and detecting malaria from Anopheline mosquitoes. We have proved that taxonomic analysis using DNA barcording method (COI gene) is useful to complement identification of mosquito species. In detecting virus, we have reported Cx. orientalis as a new potential Japanese encephalitis virus (JEV) vector. We also reported that the Anopheline mosquito species composition and Plasmodium vivax infection rates in malaria hot spot in Korea.
Vector mosquitoes are related with various diseases on human, such as malaria (Anopheles sinensis (L.), An. sinensis), Japanese encephalitis (Culex tritaeniorhynchus (L.), Cx. tritaeniorhynchus), yellow fever (Aedes albopictus (L.)), dengue hemorrhagic fever (Ae. albopictus) and filariasis (Ae. albopictus), as well as nuisance insect pests (Culex pipiens pallens Foskal, Cx. p. pallens). Continued and repeated use of conventional insecticides such as organophosphorus and carbamates, pyrethroids has often resulted in the widespread development of resistance and has undesirable effects on non-target organisms and environment. Particularly, widespread insecticide resistance has been a major obstacle in the cost-effective integrated vector management program.
In theRepublic of Korea (ROK), studies on mass vector mosquito control using insecticides were mainly carried out until 1970’s such as a fuselage-mounted ULV spray system to C-46 aircraft, effectiveness of ground aerosols ULV premiumsumihtion, a helicopter application of ULV Dibrom and residual toxicity of organophosphates in animal shelters for Japanese Encephalitis (JE) and Plasmodium vivax malaria vector mosquito control.
Regional insecticide resistance of vector mosquitoes has been annually evaluated since ,early 1980’s, the first detailed study on susceptibility of seven mosquito species to 13 organophosphorus insecticides revealed the DDT and lindane resistance of Cx. tritaeniorhyunchus. Marked annual and regional variations of insecticide resistance have been observed. In comparative resistance, the resistance ratios of various insecticides were compared among each other using two strains of vector mosquitoes that were collected from same locality. An. sinensis from Koyang-si in 1992 and 1981 demonstrated >100 folds and >3000 folds of higher resistance to DDT and to bio-resmethrin. An. sinensis from Paju-si in 2008 demonstrated 30 folds of higher susceptibility to fenthion than those collected in seven years ago. Cx. tritaeniorhynchus from Gwanju in 2010 and in 1992 showed >100 folds of higher resistance to pyrethroids. In comparative regional resistance monitoring, Cx. p. pallens from six localities in the ROK in 2008 and six geospatially-distant field Cx. tritaeniorhynchus strains in 2011 showed marked regional resistance variations. Field populations of Cx. tritaeniorhynchus from agricultural areas demonstrated extremely higher insecticide resistance to pyrethroids than those from non-agricultural areas. Cx. tritaeniorhynchus populations from rice paddies had been under heavy selection pressure due to pyrethroids, which were used for a long time to control agricultural pests in the localities.
These results indicate that careful selection and rotational use of these insecticides may results in continued satisfactory control against field populations of vector mosquitoes
Density of malaria vector mosquito was monitored at 24 sites in Korea to estimate malaria epidemic from 2004 to 2009. Twenty four locations include six in Gwangwon province and nine in Kyonggi province and nine in Incheon metropolitan city. Mosquitoes collected by public health centers in 24 sites were sent to each RIPHE(Research Institute of Public Health & Environment) then the RIPHE identified the malaria vector mosquitoes. KCDC analysed the results. Number of malaria vector mosquito collected in 2009 shapely decreased over 33 % when compared with number of mosquito collected from 2004 to 2009. In 2009, malaria vector mosquitoes firstly were collected at Injegun on 2nd week of April (6-13, April) and the highest peak of collected mosquito was demonstrated on 3rd week of August. Number of collected mosquito sharply decreased below 10 at 3rd week of september and None of mosquito was collected 2nd week October. Decrease of number of malaria vector mosquito collected in 2009 seem to be related with lowest temperature around midnight and precipitation days per month.
1998년 7월부터 10월까지 약 4개월간 질병매개모기 및 뇌염다발지역인 전라남도 영암군 덕진면 소재 약 30,000M2의 자연수답을 선정, 이에 서식하는 질병매개모기인 중국얼룩날개모기(Anopheles sinensis)와 작은빨간집모기(Culex tritaeniorhynchus)를 대상으로 포식천적어송사리(Aplocheilus latipes) 및 왜몰개(Aphyocypris chinensis)방사와 미생물제제(Bacillus thuringensis H-14)를 병합처리하여 방제효과를 조사하였다. 포식천적어송사리가 0.6fish/TEXM2/TEX가 존재하는 논에서는 7월부터 8월까지 55.0~57.6%의 자연 방제가 이루어졌으며, 한 표본당 평균 10마리 이상으로 증가될 때 미생물제제(B.t. H-14)를 1Kg/ha의 농도로 처리한 결과, 24시간후 100%의 방제를 보였으며, 10월 11일 본 실험이 끝날 때까지 98%의 방제율을 유지하였다. 천적어가 존재하지 않는 논에서는 수면 1TEXM2/TEX 당 1.5마리의 비율로 포식어(Aphyocypris)를 방사한 결과 9월 21일(방사후 2주)까지 88.2~96.7%의 만족할 만한 방제율을 유지하였다. 천적어가 존재하지 않는 또 다른 논에서 미생물제제(B.t. H-14)를 1Kg/ha의 농도로 단독 처리한 결과, 24시간 후 100%의 방제율을 보였으나, 7일 후에는 개체군밀도의 회복현상을 나타내었으며 B.t.(H-14) 2차 처리후 모기유충의 개체군밀도를 억제할 수 있었다.