Sensitive and specific target sequences selected from retrotransposons of Schistosoma japonicum for the diagnosis of schistosomiasis.
TL;DR: The key factors based on the bioinformatic analysis for selecting target sequence from S. japonicum genome provide basis for establishing powerful molecular diagnostic techniques that can be used for monitoring early infection and therapy efficacy to support schistosomiasis control programs.
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Abstract: Background
Schistosomiasis japonica is a serious debilitating and sometimes fatal disease. Accurate diagnostic tests play a key role in patient management and control of the disease. However, currently available diagnostic methods are not ideal, and the detection of the parasite DNA in blood samples has turned out to be one of the most promising tools for the diagnosis of schistosomiasis. In our previous investigations, a 230-bp sequence from the highly repetitive retrotransposon SjR2 was identified and it showed high sensitivity and specificity for detecting Schistosoma japonicum DNA in the sera of rabbit model and patients. Recently, 29 retrotransposons were found in S. japonicum genome by our group. The present study highlighted the key factors for selecting a new perspective sensitive target DNA sequence for the diagnosis of schistosomiasis, which can serve as example for other parasitic pathogens.
Methodology/Principal Findings
In this study, we demonstrated that the key factors based on the bioinformatic analysis for selecting target sequence are the higher genome proportion, repetitive complete copies and partial copies, and active ESTs than the others in the chromosome genome. New primers based on 25 novel retrotransposons and SjR2 were designed and their sensitivity and specificity for detecting S. japonicum DNA were compared. The results showed that a new 303-bp sequence from non-long terminal repeat (LTR) retrotransposon (SjCHGCS19) had high sensitivity and specificity. The 303-bp target sequence was amplified from the sera of rabbit model at 3 d post-infection by nested-PCR and it became negative at 17 weeks post-treatment. Furthermore, the percentage sensitivity of the nested-PCR was 97.67% in 43 serum samples of S. japonicum-infected patients.
Conclusions/Significance
Our findings highlighted the key factors based on the bioinformatic analysis for selecting target sequence from S. japonicum genome, which provide basis for establishing powerful molecular diagnostic techniques that can be used for monitoring early infection and therapy efficacy to support schistosomiasis control programs.
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Citations
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References
The global status of schistosomiasis and its control.
TL;DR: There is need for increased support for schistosomiasis control in the most severely affected countries, which are among the least developed whose health systems face difficulties to provide basic care at the primary health level.
1.4K
Effects of environmental change on emerging parasitic diseases.
TL;DR: The combined effects of environmentally detrimental changes in local land use and alterations in global climate disrupt the natural ecosystem and can increase the risk of transmission of parasitic diseases to the human population.
1.2K
Reassessment of the cost of chronic helmintic infection: a meta-analysis of disability-related outcomes in endemic schistosomiasis
TL;DR: A raised estimate of 2-15% disability seems evident in different functional domains of a person with schistosomiasis, if confirmed in formal patient-preference studies, indicates a need to reassess the authors' priorities for treating this silent pandemic of schistOSomiasis.
915
Current concepts - Schistosomiasis
Allen G. Ross,Paul B. Bartley,Adrian Sleigh,G. Richard Olds,Yuesheng Li,Gail M. Williams,Donald P. McManus +6 more
TL;DR: In 1851, Theodor Bilharz described a parasitic infection (bilharzia) that would later be termed schistosomiasis, which is caused by parasitic trematode worms that reside in the abdominal veins of their vertebrate definitive hosts.
The Schistosoma japonicum genome reveals features of host-parasite interplay
Yan Zhou,Huajun Zheng,Yangyi Chen,Lei Zhang,Kai Wang,Jing Guo,Zhen Huang,Bo Zhang,Wei Huang,Ke Jin,Tonghai Dou,Masami Hasegawa,Li Wang,Yuan Zhang,Jie Zhou,Lin Tao,Zhiwei Cao,Yixue Li,Tomas Vinar,Brona Brejová,Daniel G. Brown,Ming Li,David J. Miller,David Blair,Yang Zhong,Zhu Chen,Feng Liu,Wei Hu,Zhi-Qin Wang,Qin-Hua Zhang,Huai-Dong Song,Sai-Juan Chen,Xue-Nian Xu,Bin Xu,Chuan Ju,Yucheng Huang,Paul J. Brindley,Donald P. McManus,Zheng Feng,Ze-Guang Han,Gang Lu,Shuang-Xi Ren,Y.S. Wang,Wenyi Gu,Hui Kang,Jie Chen,Xiaoyun Chen,Shuting Chen,Lijun Wang,Jie Yan,Biyun Wang,Xinyan Lv,Lei Jin,Bofei Wang,Shiyin Pu,Xiang-Lin Zhang,Wei Zhang,Qiuping Hu,Genfeng Zhu,Jun Wang,Jun Yu,Jing Wang,Huanming Yang,Zemin Ning,Matthew Beriman,Chia-Lin Wei,Yijun Ruan,Guoping Zhao,Shengyue Wang +68 more
TL;DR: The genome provides a global insight into the molecular architecture and host interaction of this complex metazoan pathogen, revealing that it can exploit host nutrients, neuroendocrine hormones and signalling pathways for growth, development and maturation.