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Bioinformatics (pharmaceutical analysis) PhD Projects, Programs & Scholarships

We have 10 Bioinformatics (pharmaceutical analysis) PhD Projects, Programs & Scholarships

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  MRC DiMeN Doctoral Training Partnership: Development of an automated analysis pipeline to study bacterial cell wall structure and resistance to beta-lactam antibiotics
  Dr S Mesnage, Dr M Collins
Application Deadline: 6 January 2020

Funding Type

PhD Type

The most widely used antibiotics ever discovered (beta-lactams) are targeting the enzymes that polymerize peptidoglycan (PG), the essential component of the bacterial cell wall.
  MRC DiMeN Doctoral Training Partnership: Development of an automated analysis pipeline to study bacterial cell wall structure and resistance to beta-lactam antibiotics
  Dr S Mesnage, Dr M Collins
Application Deadline: 6 January 2020

Funding Type

PhD Type

The most widely used antibiotics ever discovered (beta-lactams) are targeting the enzymes that polymerize peptidoglycan (PG), the essential component of the bacterial cell wall.
  Comparative genomic analysis of variant features within the Neisseria spp.
  Dr L Snyder
Applications accepted all year round

Funding Type

PhD Type

The availability of rapid genome sequencing had generated an explosion of bacterial genome sequence data, much of which has not been fully explored and investigated.
  Computational Modelling of Biological Visual Processing Utilising MEA Electrode Arrays
  Prof TM McGinnity
Applications accepted all year round

Funding Type

PhD Type

Over 60 million people worldwide are blind and this number is rising as the global population ages. There are a number of major eye diseases, many of them associated with the retina and in addition many chronic diseases have manifestations in the eye.
  MRC DiMeN Doctoral Training Partnership: Liquid biopsy of the liver to improve molecular targeted cancer therapy
  Prof C Goldring, Prof F Falciani, Dr A Chadwick, Dr M Cross
Application Deadline: 6 January 2020

Funding Type

PhD Type

Molecular targeted therapies have revolutionised oncology. However, whilst patient life-expectancy is improving, these therapies carry a risk of causing damage to healthy tissues in the body, especially to the liver.
  Genome mining of novel antimicrobial natural products from new bacterial strains
  Dr H Deng, Prof M Jaspars
Applications accepted all year round

Funding Type

PhD Type

Antimicrobial resistance (AMR) is rising to dangerously high levels in all parts of the world. In Europe alone, drug-resistant bacteria are estimated to cause 25,000 deaths annually and cost more than US$1.5 billion every year in healthcare expenses and productivity losses.
  EPSRC Centre for Doctoral Training in Sustainable Approaches to Biomedical Science: Responsible and Reproducible Research - SABS

Funding Type

PhD Type

Good degree in the Physical or Life Sciences? Interested in biological or medical research? We offer fully-funded PhD places across the Oxford Doctoral Training Centre programmes.
  MRC DiMeN Doctoral Training Partnership: DUB-ing chronic inflammation: a drug repurposing approach to target deubiquitinases in inflammatory disease
  Dr H Ismail, Prof S Renshaw, Dr L Guo
Application Deadline: 6 January 2020

Funding Type

PhD Type

Background. Inflammation is an essential defence mechanism adapted by our bodies to eliminate damaged cells, irritants and pathogens.
  Development of hybrid machine learning based strategy for bioprocess online control
  Dr D Zhang
Application Deadline: 30 August 2020

Funding Type

PhD Type

The background of this research is to explore and integrate a range of mechanistic and machine learning based modelling strategies to develop a multilevel digital framework (digital twin) for industrial bioprocess dynamic simulation and prediction, online optimisation (online learning), and product quality control.
  BBSRC White Rose CASE studentship - Novel approaches for the identification of allosteric inhibitors of high value therapeutic targets
  Prof J P Waltho
Application Deadline: 6 January 2020

Funding Type

PhD Type

This study will develop a novel approach to identify allosteric inhibitor sites on a wide variety of high-value therapeutic targets, including protein kinases, protein phosphatases and small G-proteins.
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