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Pharmacology / Toxicology (antimicrobial) PhD Projects, Programs & Scholarships

We have 9 Pharmacology / Toxicology (antimicrobial) PhD Projects, Programs & Scholarships

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  Protease-resistant antimicrobial peptides to target bacterial and fungal pathogens
  Dr J Bella, Dr L Tabernero
Applications accepted all year round

Funding Type

PhD Type

Antimicrobial resistance is quickly becoming a serious global health problem. The emergence of multidrug-resistant microbial strains combined with the drying up of the antibiotic pipeline in the pharmaceutical industry has significantly worsened the situation in recent years.
  (MRC DTP) Insulin-mediated antimicrobial secretion from pancreatic acinar cells regulates the gut microbiome and barrier function: Link between diabetes and severity of acute pancreatitis
  Dr J Bruce, Prof I Roberts, Dr J Pennock
Application Deadline: 15 November 2019

Funding Type

PhD Type

Acute pancreatitis is a serious and sometimes fatal inflammatory disease of the pancreas. Severe cases are characterised by infected pancreatic necrosis, sepsis and multiple organ failure, which increases mortality and prolongs critical care occupancy.
  GW4 BioMed MRC DTP PhD studentship: Defining the role of efflux in bacterial biofilm formation and antimicrobial resistance to develop new treatments for infection
  Dr B V Jones
Application Deadline: 25 November 2019

Funding Type

PhD Type

This project is one of a number that are in competition for funding from the ‘GW4 BioMed MRC Doctoral Training Partnership’ which is offering up to 18 studentships for entry in September 2020.
  GW4 BioMed MRC DTP PhD studentship: Making Broken Bones Antimicrobial - Preventing Osteomyelitis Using a Targeted and Mineralising Liposomal Delivery System
  Dr WN Nishio Ayre, Prof J Birchall
Application Deadline: 25 November 2019

Funding Type

PhD Type

This project is one of a number that are in competition for funding from the ‘GW4 BioMed MRC Doctoral Training Partnership’ which is offering up to 18 studentships for entry in September/October 2019.
  Biodegradable composite materials (Bio-PolyMOFs) for applications in targeted delivery of drugs to improve healthcare and reduce antimicrobial resistance in developing countries and worldwide
  Research Group: Chemistry and Biosciences
  Dr S Nayak, Dr A L Kelly, Dr M Katsikogianni
Applications accepted all year round

Funding Type

PhD Type

Growing antimicrobial resistance (AMR) is one of the major global challenges and is linked to the use of unnecessarily high doses of orally administered antibiotics following medical surgery and infections.
  Development of a three dimensional in vitro model of the human cornea to dissect the inflammatory events associated with sight-threatening ocular pathogens
  Dr C Dobson, Dr C Maldonado-Codina, Prof P Morgan
Applications accepted all year round

Funding Type

PhD Type

The presence of microbes at the corneal surface may trigger low grade discomfort through to acute eye infection and permanent loss of vision.
  Using synthetic biology to understand the evolution of antibiotic resistance
  Dr M Lagator, Dr C Knight
Applications accepted all year round

Funding Type

PhD Type

Imagine an architect, tasked with converting an old stadium into a building with a different function, without demolishing it.
  Characterisation of novel inhibitors of vascular injury due to inflammation
  Dr V Ralevic
Applications accepted all year round

Funding Type

PhD Type

Myeloperoxidase (MPO) is a haemoprotein that is highly expressed in neutrophils and is secreted during injury and inflammation to assist in host defence reactions by producing antimicrobial reactive oxygen species.
  Neuropeptide Research - PhD Opportunity at a World Class Institution
  Assoc Prof M Muttenthaler, Assoc Prof C Schroeder, Assoc Prof I Vetter
Applications accepted all year round

Funding Type

PhD Type

We are seeking talented and highly motivated PhD candidates for the following multidisciplinary project. Neuropeptides are key mediators in many biological functions and understanding their interaction with target proteins is fundamental to unravel the underlying mechanism of diseases.
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