Παρασκευή 15 Φεβρουαρίου 2019

Ticks (Acari: Ixodida) on birds (Aves) migrating through the Polish Baltic coast

Abstract

Seasonal bird (Aves) migration between breeding and wintering areas, often located on different continents, can facilitate the spreading of tick species (Acari: Ixodida) and of tick-borne pathogens. The aim of the study was to analyse the occurrence of ticks dispersed by birds migrating along the Polish Baltic coast during spring and autumn migration. Field research was conducted at the bird ringing station in Wicie, located on the middle of the Polish Baltic coast, in 2011 and 2012 during spring and autumn migration. A total of 2657 birds from 45 species was examined. The most common species inspected were European robin (Erithacus rubecula) (63.3%), song thrush (Turdus philomelos) (5.13%), and goldcrest (Regulus regulus) (4.5%). Overall, 3129 ticks belonging to six species were collected: Ixodes ricinus (1650 larvae, 1390 nymphs and 1 male), Ixodes frontalis (20 larvae, 20 nymphs), Ixodes arboricola (35 larvae), Dermacentor reticulatus (1 larva), and Haemaphysalis punctata (1 nymph). Ten larvae and one nymph could only be identified to the genus level Ixodes. Ticks were located on various parts of the head: on the corner of the beak (75.0%), near the eyes (14.6%), on the chin (4.4%), near the ears (4.4%), on the neck (1.1%), and in the beak (0.5%). The overall tick prevalence was 40.5%. The highest prevalence was for bird species feeding on the ground, covering a medium distance to wintering grounds and migrating at night. Statistically significant differences between the number of ticks and the sex of the host species were detected in blackbirds: males carried more parasites than females, both, during spring and autumn migration. The fact that I. ricinus and other ticks parasitize birds migrating through Poland extends the possibility of the spread of tick-borne diseases.



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A Summary of 2018 and What Lies Ahead for Dermatology and Therapy in 2019



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Synthesis and characterization of maleic anhydride grafted SEBS modified with ethanolamine, 2-amino-2-methyl-1-propanol or glycerine

Abstract

First, styrene-ethylene-butylene-styrene (SEBS) was grafted using maleic anhydride (MA) to form SEBS-g-MA. Thereafter, SEBS-g-MA was modified with ethanolamine (EA), 2-Amino-2-methyl-1-propanol (AMP) or glycerine (Gly). The properties of the various copolymers were investigated. From FT-IR, the modified SEBS-g-MA was synthesized successfully. SEBS-g-MA modified with EA consists imide structure with a hydroxyl group and SEBS-g-MA modified with Gly consists ester structure with a hydroxyl group. SEBS-g-MA modified with AMP possess imide, ester and amide structures with hydroxyl or amine group. The results showed that the thermal stability of SEBS-g-MA was better than that of SEBS, and SEBS-g-MA modified with EA showed the best thermal stability among them. The Young's modulus of SEBS-g-MA was better than that of SEBS, and SEBS-g-MA modified with EA showed higher Young's modulus than SEBS-g-MA. Overall, SEBS-g-MA modified with EA showed enhanced thermal stability, tensile strength, and Young's modulus.



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Photochemical properties of metalloporphyrin-silver nanoparticle stabilized by polymeric micelle

Abstract

Inspired by the chlorophyll-protein complex in photosynthesis, a core–shell hybrid micelle was prepared from poly(ethylene glycol)-block-poly(4-vinylpyridine) (PEG-b-P4VP), zinc tetrakis(4-sulfonatophenyl) porphyrin (ZnTPPS), and silver nanoparticles (AgNPs). In the micellar core, AgNPs and ZnTPPS were dispersed through axial coordination. Structural and morphological characterizations of the complex micelle were carried out by transmission electron microscopy, laser light scatting, and ultraviolet–visible spectroscopy. In the micellar solutions, ZnTPPS showed increased photostability due to a decrease in the generation of singlet oxygen. Furthermore, electron transfer from ZnTPPS to AgNPs was observed by photoreduction of methylviologen hydrate. These results promote a greater understanding of the appealing properties of the natural chlorophyll-protein complex, which has important implications in artificial photosynthetic reactions and antibacterial therapy.



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Endovascular therapy for acute ischemic stroke: which role for neurologists?



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Human Babesiosis in China: a systematic review

Abstract

Human babesiosis, a worldwide emerging tick-borne disease, is caused by the intraerythrocytic apicomplexan parasite, babesia. In recent years, the number of infected patients globally has continued to rise, and thus human babesiosis poses a significant public health threat. Therefore, stronger initiatives should be undertaken to prevent further spread and development of this disease. In the present review, we summarize the epidemiology of reported human babesiosis cases in China from 1993 until now. The data show that Babesia microti is the dominant species causing human babesiosis in China and has led to more than 100 human infections thus far, where Babesia crassa-like is the second-most common. Moreover, Guangxi province is the second-most infected area after the Heilongjiang province. We also review the babesia life cycle, manifestation, diagnosis, and treatment. Additionally, we discuss babesiosis prevention strategies to raise public awareness, and also provide suggestions for improved babesiosis control.



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Can Our Guts Tell Us Anything About MS?



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