Search results for "Porcine"

showing 8 items of 48 documents

SARS-CoV-2 RNA in wastewater anticipated COVID-19 occurrence in a low prevalence area

2020

Preprint disponible en http://hdl.handle.net/10261/209125

Veterinary medicineEnvironmental EngineeringRNA virusSwine0208 environmental biotechnologyPneumonia Viral02 engineering and technology010501 environmental sciencesWastewatermedicine.disease_cause01 natural sciencesVirusArticleBetacoronavirusConcentration protocolmedicinePrevalenceAnimalsHumansEffluentWaste Management and DisposalPandemics0105 earth and related environmental sciencesCoronavirusWater Science and TechnologyCivil and Structural EngineeringbiologySARS-CoV-2Ecological ModelingCOVID-19RNA virusReclaimed waterbiology.organism_classificationPollutionReclaimed water020801 environmental engineeringCoronavirusEcological ModellingWastewaterSevere acute respiratory syndrome-related coronavirusSpainRNAInfluent waterPorcine epidemic diarrhea virusCoronavirus InfectionsEnvironmental surveillanceBetacoronavirus
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Comment on "Epidemiological Survey on Porcine Cysticercosis in Nay Pyi Taw Area, Myanmar".

2015

We have read with interest the paper by Khaing et al. [1], in which first data on Taenia solium cysticercosis in pigs from Myanmar are published. The authors found a porcine cysticercosis prevalence of 23.67% in slaughtered pigs, which, as they mention, indicates the presence of human taeniasis and also the risk of acquiring human cysticercosis and, therefore, neurocysticercosis. The high porcine cysticercosis prevalence detected by the authors means, obviously, that there has to be a high prevalence of human T. solium taeniasis among the inhabitants of Myanmar leading to a high presence of infective eggs in the environment. However, as far as we know, the presence of T. solium taeniasis, a…

Veterinary medicinemedicine.medical_specialtylcsh:Veterinary medicinebiologyNeurocysticercosisCysticercosismedicine.diseasebiology.organism_classificationhumanitiesPorcine cysticercosisSerologymedicine.drug_formulation_ingredientGeographyparasitic diseasesTaenia soliumEpidemiologymedicineTaeniaTaeniasislcsh:SF600-1100Letter to the EditorJournal of veterinary medicine
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Nanofibrillar scaffold resists to bile and urine action: experiences in pigs

2020

Biomaterial-based-scaffolds’ functions are to replace anatomical and functional features loss of an injured tissue. They can replace native tissue after their reabsorption. Material and methods. In our experimental procedures we utilized the PHEA-PLA+PCL scaffold in 2 female pigs to assess its resistance to bile and urine. Results. Both pigs survived to surgical procedures. After a month fibres appeared unchanged in term of form and dimension at electronic microscopy. Cells and ECM factors were founded inside the scaffold in a microscopical evaluation. Conclusion. Planar and tubular scaffolds were colonized by cells and extracellular matrix elements. The study conducted on pig suggested tha…

bile duct injury bladder injury gallbladder repair 3D matrix porcine models PHEA-PLA+PCLSettore MED/18 - Chirurgia GeneraleScaffoldAction (philosophy)Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoChemistrySurgeryUrinePharmacologyClinical and Experimental Surgery. Petrovsky journal
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SARS-CoV-2 RNA titers in wastewater anticipated COVID-19 occurrence in a low prevalence area

2020

Postprint disponible en http://hdl.handle.net/10261/211707

education.field_of_studyVeterinary medicinebiologyPopulationRNAbiology.organism_classificationmedicine.disease_causeVirusTiterWastewatermedicinePorcine epidemic diarrhea viruseducationEffluentCoronavirus
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Long-term function of porcine islets and single cells embedded in barium-alginate matrix.

1993

The influence of alginate-embedding on the maintenance of functioning and morphological integrity in long-term culture of isolated porcine islets and islet cells was studied. Free-floating islets and islet cells served for control. Function was tested after the 1st, 2nd and 4th week. Basal and glucose-stimulated insulin secretion of embedded islets decreased slightly, but significantly after the first week (from 4.39 +/- 0.64 to 2.87 +/- 0.47 at normal and from 11.96 +/- 1.44 to 4.76 +/- 0.78 microU pro 24 h pro islet at elevated glucose concentration, p < 0.05 and < 0.01, resp.) and remained unchanged thereafter. Glucose-stimulation resulted in significant increases in insulin secretion at…

endocrine systemmedicine.medical_specialtyAlginatesSwineEndocrinology Diabetes and Metabolismmedicine.medical_treatmentClinical BiochemistryCytological TechniquesBiologyMatrix (biology)BiochemistryBasal (phylogenetics)chemistry.chemical_compoundTissue cultureIslets of LangerhansEndocrinologyInternal medicineCulture TechniquesInsulin SecretionmedicineAnimalsInsulinPancreatic hormonegeographygeography.geographical_feature_categoryPorcine isletsInsulinBiochemistry (medical)General MedicineIsletImmunohistochemistryEndocrinologychemistryBariumTrypan blueHormone and metabolic research = Hormon- und Stoffwechselforschung = Hormones et metabolisme
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Isolation and colture of beta-like cells from porcine Wirsung duct

2009

We sought to develop a protocol to isolate and culture porcine Wirsung duct cells in order to determine their potency to differentiate into insulin-expressing beta-like cells. The porcine Wirsung duct isolated by a surgical microdissection was digested with collagenase P and trypsin to dissociate ductal cells. These elements were cultured in serum-free supplemented media: for 2 weeks. Thereafter the cells were exposed to varying concentrations of glucose (0, 5.6, 17.8, and 25 mmol/L) to induce a beta-like phenotype, as identified by immunohistochemical staining. Cell growth proceeded slowly for the first 2 weeks of culture. After glucose induction for 2 weeks, they formed pancreatic islet-l…

medicine.medical_specialtyDuctal cellsSwinemedicine.medical_treatmentBiologyGlucagonchemistry.chemical_compoundIslets of LangerhansInternal medicinemedicineAnimalsInsulinCells CulturedKeratin-19TransplantationInsulinPancreatic DuctsTrypsinGlucagonMolecular biologyStainingTransplantationSettore MED/18 - Chirurgia GeneraleEndocrinologyL-GlucosechemistryCollagenaseSurgeryBeta like cells pancreasporcine Wirsung ducttransdifferentiationBiomarkersmedicine.drug
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A regenerative 3D scaffold for inguinal hernia repair. MR imaging and histological cross evidence. Qualitative study

2021

Abstract Background Inguinal hernia is a degenerative disease occurring in a high motile surround. Stopping degeneration and promoting tissue regeneration should be the treatment goal. Groin hernias are conventionally managed with static flat meshes, mostly fixated to the delicate inguinal environment. Far from a regenerative effect, the biologic response of conventional hernia meshes is characterized by a foreign body reaction leading to a stiff/shrunken scar plate, which is often the source of unpleasant complications. Recently, a newly engineered 3D device for inguinal hernia repair – ProFlor-has been developed to produce a regenerative biological response. Unlike conventional hernia mes…

medicine.medical_specialtySwineAdipose tissueHernia InguinalGroinProsthesesDegenerative diseaseMagnetic resonance imagingmedicineAnimalsHerniaHerniorrhaphymedicine.diagnostic_testGroinbusiness.industryInguinal herniaMagnetic resonance imagingHistologyGeneral MedicineSurgical Meshmedicine.diseaseInguinal herniamedicine.anatomical_structureHernia genesisPorcine experimental modelSurgeryRadiologyForeign bodybusinessRegenerative scaffolds
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Porcine Model for Gluteal Artery Perforator Flap: Anatomy and Technique

2018

Although flap anatomy is well studied on cadavers and microsurgical techniques are well practiced on rats, still there are few training models for learning the techniques of perforator flap harvesting. The cadaver has no bloodstream, so accuracy of dissection cannot be evaluated and flap viability cannot be verified. Training on humans carries a high risk of flap damage. A living model for perforator flap harvest is needed to learn the technique before starting with its clinical application.

medicine.medical_specialtybusiness.industrymedicine.medical_treatmenteducationlcsh:Surgerylcsh:RD1-811030230 surgeryMicrosurgeryeye diseasesPorcine model gluteal artery perforator flap microsurgery breast reconstruction educational trainingSurgeryGluteal Artery Perforator Flap03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesismedicineSurgeryGluteal ArterybusinessBreast reconstructionSICPRE Abstracts
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