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1.
Astrobiology ; 17(5): 459-469, 2017 05.
Artigo em Inglês | MEDLINE | ID: mdl-28520475

RESUMO

Kombucha microbial community (KMC) produces a cellulose-based biopolymer of industrial importance and a probiotic beverage. KMC-derived cellulose-based pellicle film is known as a highly adaptive microbial macrocolony-a stratified community of prokaryotes and eukaryotes. In the framework of the multipurpose international astrobiological project "BIOlogy and Mars Experiment (BIOMEX)," which aims to study the vitality of prokaryotic and eukaryotic organisms and the stability of selected biomarkers in low Earth orbit and in a Mars-like environment, a cellulose polymer structural integrity will be assessed as a biomarker and biotechnological nanomaterial. In a preflight assessment program for BIOMEX, the mineralized bacterial cellulose did not exhibit significant changes in the structure under all types of tests. KMC members that inhabit the cellulose-based pellicle exhibited a high survival rate; however, the survival capacity depended on a variety of stressors such as the vacuum of space, a Mars-like atmosphere, UVC radiation, and temperature fluctuations. The critical limiting factor for microbial survival was high-dose UV irradiation. In the tests that simulated a 1-year mission of exposure outside the International Space Station, the core populations of bacteria and yeasts survived and provided protection against UV; however, the microbial density of the populations overall was reduced, which was revealed by implementation of culture-dependent and culture-independent methods. Reduction of microbial richness was also associated with a lower accumulation of chemical elements in the cellulose-based pellicle film, produced by microbiota that survived in the post-test experiments, as compared to untreated cultures that populated the film. Key Words: BIOlogy and Mars Experiment (BIOMEX)-Kombucha multimicrobial community-Biosignature-Biofilm-Bacterial cellulose. Astrobiology 17, 459-469.


Assuntos
Meio Ambiente Extraterreno , Microbiota , Exobiologia , Marte , Voo Espacial , Simulação de Ambiente Espacial , Astronave , Raios Ultravioleta
2.
Orig Life Evol Biosph ; 47(2): 169-185, 2017 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-27025932

RESUMO

Biofilm-forming microbial communities are known as the most robust assemblages that can survive in harsh environments. Biofilm-associated microorganisms display greatly increased resistance to physical and chemical adverse conditions, and they are expected to be the first form of life on Earth or anywhere else. Biological molecules synthesized by biofilm -protected microbiomes may serve as markers of the nucleoprotein life. We offer a new experimental model, a kombucha multimicrobial culture (KMC), to assess a structural integrity of a widespread microbial polymer - cellulose - as a biosignature of bacteria-producers for the multipurpose international project "BIOlogical and Mars Experiment (BIOMEX)", which aims to study the vitality of pro- and eukaryotic organisms and the stability of organic biomolecules in contact with minerals to analyze the detectability of life markers in the context of a planetary background. In this study, we aimed to substantiate the detectability of mineralized cellulose with spectroscopy and to study the KMC macrocolony phenotype stability under adverse conditions (UV, excess of inorganics etc.). Cellulose matrix of the KMC macrocolony has been mineralized in the mineral-water interface under assistance of KMC-members. Effect of bioleached ions on the cellulose matrix has been visible, and the FT-IR spectrum proved changes in cellulose structure. However, the specific cellulose band vibration, confirming the presence of ß(1,4)-linkages between monomers, has not been quenched by secondary minerals formed on the surface of pellicle. The cellulose-based KMC macrocolony phenotype was in a dependence on extracellular matrix components (ionome, viriome, extracellular membrane vesicles), which provided its integrity and rigidness in a certain extent under impact of stressful factors.


Assuntos
Bactérias , Biofilmes , Microbiota , Celulose , Meio Ambiente Extraterreno , Espectroscopia de Infravermelho com Transformada de Fourier
3.
Klin Khir ; (11): 62-4, 2012 Nov.
Artigo em Ucraniano | MEDLINE | ID: mdl-23272390

RESUMO

The experience of clinical application of harmonic scalpels of various type while performing laparoscopic interventions was summarized. The advantages and disadvantages of instruments of various manufactures were estimated. The procedure of ultrasonic scissors application, depending on clinical situation present, was adduced.


Assuntos
Cavidade Abdominal/cirurgia , Laparoscopia/instrumentação , Procedimentos Cirúrgicos Ultrassônicos/instrumentação , Cavidade Abdominal/patologia , Humanos , Laparoscopia/métodos , Instrumentos Cirúrgicos , Vibração
4.
Aust Fam Physician ; 18(3): 233-4, 236, 238, 1989 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-2735857

RESUMO

An analysis of 373 emergency ambulance calls within the Broadmeadows municipality of Melbourne showed that eighty-seven per cent were handled by standard road car (RC) ambulance, and 13 per cent by mobile intensive care ambulance (MICA). Calls most commonly were associated with cardiorespiratory episodes, loss of consciousness and trauma. Twenty-three per cent of calls did not result in a patient being transferred to hospital mainly because of patient refusal or the absence of a medical need. Forty-two per cent of calls were categorised "not urgent" or eventually the ambulance was not required. This review highlights important topics for further study of ambulance services.


Assuntos
Ambulâncias/estatística & dados numéricos , Revisão da Utilização de Recursos de Saúde/estatística & dados numéricos , Fatores Etários , Área Programática de Saúde , Coleta de Dados , Emergências/classificação , Humanos , Pessoa de Meia-Idade , Médicos , Estudos de Tempo e Movimento , Vitória
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