8588 modules
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BIOL3064 2030-31
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how metabolism is altered, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL3064 2028-29
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how metabolism is altered, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL3064 2027-28
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how the immune system influences tumour development, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL3064 2031-32
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how metabolism is altered, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL6071 2026-27
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how metabolism is altered, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL6071 2030-31
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how metabolism is altered, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
BIOL6071 2028-29
Cancer Chromosome Biology
This module will deliver a comprehensive analysis of selected topics associated with the cellular and molecular mechanisms that drive cancer development and lead to tumour progression. This will involve exploring the genetic drivers of disease, the mechanisms of aneuploidy, how the immune system influences tumour development, the impact of disrupted cellular signalling pathways on cancer progression, and the mechanisms of tumour metastasis and invasion. In addition, genomic and proteomic research methods utilised to probe the underlying mechanisms of cancer will be discussed. -
MEDI6251 2029-30
Cancer Genomics
This module will provide a comprehensive understanding of the fundamental principles of genomics and the high throughput technologies used in cancer genomics research. We will explore the structure and organisation of the human genome, the concepts of germline and somatic variants, coding and non coding variants and their effect on the cancer cell, regulation of gene expression and epigenetic modifications in cancer. Students gain practical experience of basic bioinformatics data analysis and interpretation preparing them for careers in cancer genomics. Students are not expected to have prior bioinformatics or computational biology expertise prior to this module. -
MEDI6251 2026-27
Cancer Genomics
This module will provide a comprehensive understanding of the fundamental principles of genomics and the high throughput technologies used in cancer genomics research. We will explore the structure and organisation of the human genome, the concepts of germline and somatic variants, coding and non coding variants and their effect on the cancer cell, regulation of gene expression and epigenetic modifications in cancer. Students gain practical experience of basic bioinformatics data analysis and interpretation preparing them for careers in cancer genomics. Students are not expected to have prior bioinformatics or computational biology expertise prior to this module. -
MEDI6251 2025-26
Cancer Genomics
This module will provide a comprehensive understanding of the fundamental principles of genomics and the high throughput technologies used in cancer genomics research. We will explore the structure and organisation of the human genome, the concepts of germline and somatic variants, coding and non coding variants and their effect on the cancer cell, regulation of gene expression and epigenetic modifications in cancer. Students gain practical experience of basic bioinformatics data analysis and interpretation preparing them for careers in cancer genomics. Students are not expected to have prior bioinformatics or computational biology expertise prior to this module.