0000000000823720

AUTHOR

Pilvi Ruotsalainen

showing 5 related works from this author

Conjugative ESBL plasmids differ in their potential to rescue susceptible bacteria via horizontal gene transfer in lethal antibiotic concentrations.

2017

Conjugative ESBL plasmids differ in their potential to rescue susceptible bacteria via horizontal gene transfer in lethal antibiotic concentrations

0301 basic medicineGene Transfer Horizontalmedicine.drug_classAntiparasitic030106 microbiologyAntibioticsGene transferDrug resistanceBiologybeta-LactamasesMicrobiology03 medical and health sciencesplasmiditPlasmidDrug DiscoveryDrug Resistance Bacterialpolycyclic compoundsmedicineEscherichia coliHumansantimicrobial resistanceEscherichia coli InfectionsPharmacologyta1182biochemical phenomena metabolism and nutritionbacterial infections and mycosesbiology.organism_classificationGlycopeptide3. Good healthAnti-Bacterial Agentsbacterial conjugationHorizontal gene transferhorizontal gene transferhorisontaalinen geeninsiirtoBacteriaPlasmidsThe Journal of antibiotics
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On-Demand Isolation of Bacteriophages Against Drug-Resistant Bacteria for Personalized Phage Therapy

2015

Bacteriophages are bacterial viruses, capable of killing even multi-drug resistant bacterial cells. For this reason, therapeutic use of phages is considered as a possible alternative to conventional antibiotics. However, phages are very host specific in comparison to wide-spectrum antibiotics and thus preparation of phage-cocktails beforehand against pathogens can be difficult. In this study, we evaluate whether it may be possible to isolate phages on-demand from environmental reservoir. We attempted to enrich infectious bacteriophages from sewage against nosocomial drug-resistant bacterial strains of different medically important species in order to evaluate the probability of discovering …

Microbiology (medical)Phage cocktailsantibiotic resistancephage therapyPhage therapyKlebsiella pneumoniaevirusesmedicine.medical_treatmentlcsh:QR1-502MRSABiologyta3111medicine.disease_causeMicrobiologybakteriofagitlcsh:MicrobiologyMicrobiologyAntibiotic resistancephage cocktailsmedicineBacteriophagesVancomycin-resistant EnterococcusOriginal ResearchPseudomonas aeruginosata1183biology.organism_classificationVirologyMethicillin-resistant Staphylococcus aureusfagiterapia3. Good healthAcinetobacter baumanniiESBLBacterial virusantibioottiresistenssiFrontiers in Microbiology
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Beta-Lactam Sensitive Bacteria Can Acquire ESBL-Resistance via Conjugation after Long-Term Exposure to Lethal Antibiotic Concentration

2020

Beta-lactams are commonly used antibiotics that prevent cell-wall biosynthesis. Beta-lactam sensitive bacteria can acquire conjugative resistance elements and hence become resistant even after being exposed to lethal (above minimum inhibitory) antibiotic concentrations. Here we show that neither the length of antibiotic exposure (1 to 16 h) nor the beta-lactam type (penam or cephem) have a major impact on the rescue of sensitive bacteria. We demonstrate that an evolutionary rescue can occur between different clinically relevant bacterial species (Klebsiella pneumoniae and Escherichia coli) by plasmids that are commonly associated with extended-spectrum beta-lactamase (ESBL) positive hospita…

Microbiology (medical)antibiotic resistancemedicine.drug_classKlebsiella pneumoniaeAntibioticsextended-spectrum beta-lactamaseBiologymedicine.disease_causeBiochemistryMicrobiologyArticleMicrobiologybakteerit03 medical and health sciencesplasmiditPlasmidAntibiotic resistancemedicineCRISPRPharmacology (medical)Klebsiella-bakteeritGeneral Pharmacology Toxicology and PharmaceuticsEscherichia coli030304 developmental biology0303 health sciencesCephemconjugative plasmid.030306 microbiologylcsh:RM1-950antibiootitbiology.organism_classification3. Good healthExtended-spectrum beta-lactamaseInfectious Diseaseslcsh:Therapeutics. Pharmacologyconjugative plasmidevolutionary rescuehorisontaalinen geeninsiirtoBacteriakolibakteeritantibioottiresistenssi
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Midbiotics : conjugative plasmids for genetic engineering of natural gut flora

2019

ABSTRACTThe possibility to modify gut bacterial flora has become an important goal, and various approaches are used to achieve desirable communities. However, the genetic engineering of existing microbes in the gut, which are already compatible with the rest of the community and host immune system, has not received much attention. Here, we discuss and experimentally evaluate the possibility to use modified and mobilizable CRISPR-Cas9-endocing plasmid as a tool to induce changes in bacterial communities. This plasmid system (briefly midbiotic) is delivered from bacterial vector into target bacteria via conjugation. Compared to, for example, bacteriophage-based applications, the benefits of c…

genetic engineeringantibiotic resistanceTRANSPLANTATIONsuolistomikrobistogeenitekniikkaTHERAPYplasmiditENTEROBACTERIACEAEconjugative plasmidNUCLEOTIDE-SEQUENCECARRIAGEGenetic engineeringRISK-FACTORSenterobakteeritESBL carriageCRISPR editing1183 Plant biology microbiology virologyenterobacteriaantibioottiresistenssi
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Protein interactions of GTP-ase of immunity associated protein 3

2014

geenitGimapproteiinitT-solut
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