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We have 24 Immunology (molecular interactions) PhD Projects, Programmes & Scholarships

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Immunology (molecular interactions) PhD Projects, Programmes & Scholarships

We have 24 Immunology (molecular interactions) PhD Projects, Programmes & Scholarships

Investigation of host-virus interactions

The School of Molecular and Cellular Biology invites applications from prospective postgraduate researchers who wish to commence study for a PhD in the academic year 2024/25 in the area of molecular virology. Read more

Molecular Mechanisms of Receptor and Ion Channel Regulation in Pain and Inflammation

Are you ready to delve into the captivating world of molecular signaling and unravel the mysteries of the cardiovascular and nervous systems? We are thrilled to offer an exhilarating PhD opportunity at the forefront of scientific exploration. Read more

Discovery and functional investigation of the shared molecular mechanisms of host immunoregulation by the pathogens that cause malaria and sepsis.

Infectious diseases cause enormous humanitarian and economic burdens worldwide. Designing interventions that prevent, cure, or control many infections is difficult because pathogens have evolved sophisticated ways of subverting host immunity. Read more

Molecular Immunology of Malaria

An opportunity exists for a PhD position in the molecular immunology of malaria. The focus of this project will be to apply cutting-edge technologies to understand the molecular basis of protective immunity to malaria. Read more

Investigating the neuro-stromal-immune interactions in inflammageing and osteoarthritis.

Ageing is associated with a higher risk of developing multiple chronic conditions (multimorbidity) including osteoarthritis. Age-associated chronic low-grade inflammation (inflammageing) is a hallmark of osteoarthritis. Read more

The epigenomic, transcriptional and diagnostic architecture of neurodevelopmental disorders caused by exposure to maternal infection

A fundamental unknown in understanding mechanisms of disease, and therefore improving therapy, is how stressors experienced during critical developmental periods influence the genesis or ‘programming’ of adult disease (Estes & McAllister 2016). Read more

Investigating molecular drivers of cell invasion

The Wells laboratory focusses on exploring the molecular mechanisms that underlie cell invasion. We have interests in cancer cell invasion and hemopoietic cell invasion. Read more

Developing 3D models to understand how interactions between bacterial biofilm and the host environment impact antimicrobial efficacy in a chronic infected wound

2.8 million people in the UK have a chronic wound which persist for months or years, causing pain, isolation, odour, and decreased mobility; patients with chronic wounds regularly report a deterioration in quality of life. Polymicrobial biofilms are present in greater than 70% of chronic wounds, making effective treatment incredibly challenging. Read more

Unlocking immune cells with tick-borne pathogens

In this project we will use tick-borne pathogenic bacteria as a molecular tool-kit for unlocking immune cells. These discoveries will help us combat tick-borne disease and provide a basis for manipulating immune cells, impacting on a wide range of diseases. Read more

Understanding the link between EBV and Multiple Sclerosis

An opportunity exists for a PhD position in molecular immunology, where cutting-edge technologies will be applied to understand the molecular basis of the link between EBV and Multiple Sclerosis. Read more

Faculty of Medicine, Masaryk University

The Biomedical Sciences doctoral degree programme has been created through the merging Medical Biology, Anatomy, Histology, Embryology, and Molecular Medicine, which has been designed in the CEITEC MU research centre to be a robust singular study programme consisting of three disciplines (Cell and Tissue Morphology, Biochemistry and Molecular Biology, and Molecular Medicine). Read more

Vaccine Engineering

An opportunity exists for a PhD position in vaccine engineering. Vaccines are one of the most effective health care interventions but remain a challenge for many diseases, and in particular intracellular pathogens such as malaria where T cell responses are particularly desirable. Read more

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