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Molecular Biology PhD Projects, Programs & Scholarships in Birmingham

We have 18 Molecular Biology PhD Projects, Programs & Scholarships in Birmingham

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Showing 1 to 18 of 18
  Application of a novel particle coating technology for paediatric formulation development
  Prof AR Mohammed
Application Deadline: 1 June 2020

Funding Type

PhD Type

Applications are invited for a three year Postgraduate studentship to be undertaken within the School of Life and Health Sciences at Aston University.
  The Importance of Dietary Protein Quality for Skeletal Muscle Anabolism in Older Adults
  Dr L Breen, Dr G Wallis
Application Deadline: 31 March 2020

Funding Type

PhD Type

BACKGROUND. Age-related muscle loss (sarcopenia) is associated with multiple comorbidities and mortality. Global population ageing will drive an unprecedented rise in sarcopenia prevalence and healthcare costs.
  Identifying the evolutionary origins of the MADS-box floral quartet mechanism in seedless vascular plants
  Dr A.R.G Plackett, Dr J C Coates
Application Deadline: 31 March 2020

Funding Type

PhD Type

Despite its commonplace occurrence in today’s environment, the reproduction of plants via flowers and seeds is a recent evolutionary innovation arising from an ancestral seedless reproductive system similar to that still found in a subset of today’s plants (e.g.
  Regulation of host cell DNA damage response pathways by adenovirus
  Dr A S Turnell, Dr C McCabe
Applications accepted all year round

Funding Type

PhD Type

Human adenoviruses are small non-enveloped viruses with a linear, double-stranded DNA genome. Adenovirus has long served as a faithful model for dissecting the molecular basis of key cellular signalling pathways that regulate fundamental biological processes such as cell growth, cell differentiation and cell death.
  Discovering molecular genetic mechanisms of central nervous system regeneration
  Dr A Hidalgo
Applications accepted all year round

Funding Type

PhD Type

Is it possible to promote regeneration of the central nervous system after injury, damage or disease? During normal development, neutrons and glia interact to coordinate the generations of neutrons and glia, and direct cell migration patterns, axonal navigation, dendritic arborisation and the emergence of neural circuits.
  Molecular and genetic mechanisms of brain structural plasticity and neurodegeneration in the fruit-fly Drosophila.
  Dr A Hidalgo
Applications accepted all year round

Funding Type

PhD Type

The brain changes throughout life. brain plasticity enables the brain to adjust in response to experience, whereas during aging natural neurodegeneration takes over.
  Genetic analysis of the bacterial translocation machinery
  Dr D Huber
Applications accepted all year round

Funding Type

PhD Type

Every subcellular compartment in a cell contains proteins, and yet all of these proteins are initially synthesised in the same compartment.
  Build and destroy: investigating targeted protein degradation in plant development and stress-response
  Dr D Gibbs
Applications accepted all year round

Funding Type

PhD Type

In order to effectively co-ordinate their growth and development, plants need to be able to respond to changes in their environment, whether it is adapting to the seasons or coping with stresses.
  Understanding signalling networks underpinning key developmental processes during plant evolution
  Research Group: BBSRC MIBTP
  Dr J C Coates
Applications accepted all year round

Funding Type

PhD Type

Plants first appeared on land almost half a billion years ago. All land plants likely evolved from a single aquatic green algal ancestor.
  Determining novel molecular regulators of necrosis controlling premature cell death
  Dr Y Fan
Applications accepted all year round

Funding Type

PhD Type

Necrosis, a form of premature cell death, is frequently caused by excessive insults such as trauma, infection and toxins. It has been implicated in many human diseases including cancer, neurodegenerative disorders and inflammatory diseases.
  Regulation of apoptosis-induced compensatory cell proliferation and its implications for cancer and tissue regeneration
  Dr Y Fan
Applications accepted all year round

Funding Type

PhD Type

In multi-cellular organisms, coordinated cell death (e.g. apoptosis) and cell replacement is critical for tissue recovery in response to stress or damage.
  Creating “super” regulatory T cells to combat rejection, GVHD and autoimmunity through retroviral gene manipulation
  Dr N Jones, Dr S Lee
Applications accepted all year round

Funding Type

PhD Type

Research interests/description of main research theme. Foxp3+CD25+CD4+ regulatory T cells (Treg) have been shown to be essential for the induction of tolerance to foreign organ transplants in experimental models.
  Analysing immune responses to metastatic ovarian tumours to identify therapeutic targets
  Dr J H Caamano, Dr D Withers
Applications accepted all year round

Funding Type

PhD Type

Research interests/description of main research theme. Ovarian cancer remains the most lethal gynaecological malignancy for women over 50 years old (1).
  Investigating how ovarian tumours avoid immune responses in cancer patients
  Dr J H Caamano, Dr D Withers
Applications accepted all year round

Funding Type

PhD Type

Research interests/description of main research theme. Ovarian cancer remains the most lethal gynaecological malignancy for women over 50 years old (1).
  Understanding and combatting antimicrobial resistance plasmids
  Dr M Buckner, Dr J Blair
Applications accepted all year round

Funding Type

PhD Type

Antimicrobial resistance (AMR) is a major crisis for human medicine. Globally, untreatable bacterial infections are rapidly increasing, leaving us with limited treatment options.
  The role of Efflux in Antibiotic Resistance of Clinically Relevant Pathogens
  Dr J Blair
Applications accepted all year round

Funding Type

PhD Type

Antibiotics underpin all of modern medicine; they are used to treat bacterial infections, and to prevent infections after surgery and in patients with a suppressed immune system such as those undergoing cancer chemotherapy or organ transplantation.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
  EPSRC Centre for Doctoral Training in Engineered Tissues for Discovery, Industry and Medicine (LifETIME)

Funding Type

PhD Type

The CDT will train the next generation of leaders in developing in vitro tissues, sensing and diagnostics to develop humanised in vitro systems to drive better drug screening.
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