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Mo, Q.

Publications and source records attributed to Mo, Q..

3 recordsLinked to original sources

Human Chrysomya bezziana myiasis: A systematic review

BackgroundMyiasis due to Old World screw-worm fly, Chrysomya bezziana, is an important obligate zoonotic disease in the OIE-list of diseases and is found throughout much of Africa, the Indian subcontinent, southeast and east Asia. C. bezziana myiases cause not only morbidity and death to animals and humans, but also economic losses in the livestock industries. Because of the aggressive and destructive nature of this disease in hosts, we initiated this study to provide a comprehensive understanding of human myiasis caused by C. bezziana.\n\nMethodsWe conducted a systematic search of the databases in English (PubMed, Embase and African Index Medicus) and Chinese (CNKI, Wanfang, and Duxiu), and international government online reports to 6th February, 2019, to identify studies concerning Chrysomya bezziana. Another ten human cases in China and Papua New Guinea that our team had recorded were also included.\n\nResultsWe retrieved 1,048 reports from which 202 studies were ultimately eligible for inclusion in the present descriptive analyses. Since the first human case due to C. bezziana was reported in 1909, we have summarized 291 cases and found that these cases often occurred in poor hygiene, low socio-economic conditions, old age, and underlying diseases including infections, age-related diseases, and noninfectious chronic diseases. But C. bezziana myiasis appears largely neglected as a serious medical or veterinary condition, with human and animal cases only reported in 16 and 24 countries respectively, despite this fly species recorded as present in 44 countries worldwide.\n\nConclusionOur findings indicate that cryptic myiasis cases due to the obligate parasite, C. bezziana, are under-recognized. Through this in-depth study to clarify the knowledge of human C. bezziana myiasis including its etiology, clinical features, diagnosis, treatment, epidemiology, prevention and control, we call for more vigilance and awareness of the disease from governments, health authorities, clinicians, veterinary workers, nursing homes, and also the general public.\n\nAuthor summaryChrysomya bezziana larvae are characterized by feeding aggressively on the living tissues and body fluids of the host. The nightmare-like feelings of patients suffering from this myiasis, severe tissues and bones destruction, even death, and enormous economic loss in the livestock industries have been described in the previous reports. But our findings indicate that C. bezziana myiases still appear to be under-recognized as a serious medical or veterinary condition throughout the world. Both in China and the world at large, it is probable that C. bezziana distribution could be greater than currently reported. For the first time, we have therefore systematically investigated human myiasis caused by C. bezziana. Our study provides an opportunity for clinicians and health authorities to gain a better understanding of this disease from its etiology, pathology, clinical features, diagnosis, treatment, epidemiology, prevention and control. In addition, our findings will hopefully engage governments, health staff, veterinary workers, the elderly homes, and also the general public in efforts to recognize, prevent and control such infestations.

epidemiology

Composition variation of agarwood-associated microbial communities from Aquilaria sinensis

Agarwood, derived from Aquilaria sinensis and Aquilaria malaccensis, is of medicinal and ecological value and religious importance as incense. The existing imbalance between short supply and increasing demand of this product remains to be solved. Thus, the biologically artificial agarwood-inducing methods commonly called whole-tree agarwood-inducing techniques (agar-wit) have been established to dramatically improve agarwood yield within a short period. However, several studies reported a lower content of ethanol-soluble extractive in the agar-wit agarwood than in the natural agarwood. To further understand the role of microorganisms in agarwood formation, we investigated and contrasted the endophytic bacteria and fungi between different types of agarwood from A. sinensis through high-throughput sequencing. Results showed that the same dominant phyla of bacteria consisting of Proteobacteria, Actinobacteria, and Acidobacteria were shared by the natural agarwood and agar-wit agarwood. Meanwhile, Ascomycota and Basidiomycota constituted the similar dominant fungal phyla of these two kinds of agarwood. However, the principal microbial communities at the genus or order level evidently varied from natural agarwood to agar-wit agarwood. Moreover, the bacterial communities are closely connected with terpenoid and carbohydrate metabolism, which indicated that the bacterial communities also play a vital role in agarwood formation. In conclusion, the higher concentrated abundance of the dominant microbial communities in agar-wit agarwood than in natural agarwood may promote agarwood formation, however, the low evenness of microbial communities also lowers the content of ethanol-soluble extractive.\n\nIMPORTANCEAgarwood has become an indispensable product in modern life because of medicinal value, ecological and religious importance as incense. Nevertheless, the enormous demand for agarwood markedly exceeds the supply because of the dramatically declining population of genus Aquilaria. Agarwood formation occurring slowly and infrequently in a natural environment, so various artificial techniques were developed to promote the formation of agarwood, such as the physical methods and chemical methods. However, these techniques still are insufficient to compensate for the agarwood shortage. In this case, a novel biological method called the whole-tree agarwood-inducing technique (Agar-wit) induces agarwood production. However, several studies have shown that agarwood harvested from biological technology contains lower content of ethanol-soluble extractive compared with natural agarwood. So to further expose and understand the endophytic bacteria and fungi in agarwood formation is important for the improvement of biological method.

plant biology

The consensus molecular classification of muscle-invasive bladder cancer

Muscle-Invasive Bladder Cancer (MIBC) is a molecularly diverse disease with heterogeneous clinical outcomes. Several molecular classifications have been proposed, yielding diverse sets of subtypes, which hampers the clinical implications of such knowledge. Here, we report the results of a large international effort to reach a consensus on MIBC molecular subtypes. Using 1750 MIBC transcriptomes and a network-based analysis of six independent MIBC classification systems, we identified a consensus set of six molecular classes: Luminal Papillary (24%), Luminal Non-Specified (8%), Luminal Unstable (15%), Stroma-rich (15%), Basal/Squamous (35%), and Neuroendocrine-like (3%). These consensus classes differ regarding underlying oncogenic mechanisms, infiltration by immune and stromal cells, and histological and clinical characteristics. This consensus system offers a robust framework that will enable testing and validating predictive biomarkers in future clinical trials.

cancer biology