Active Cancer Digestion, Kidneys & Other Organs

Improving outcomes for patients with hepatocellular carcinoma (HCC)

In plain English

AI plain-English summary

Liver cancer cells grown on fatty human liver tissue in the lab are revealing why immunotherapy often fails in patients with NASH, a common liver condition caused by fat buildup. This matters because hepatocellular carcinoma (HCC) is the third most common cause of cancer death globally—906,000 new cases and 830,000 deaths in 2020 alone—and NASH-related HCC is rising. Immunotherapy works well for some cancers like melanoma but appears less effective in NASH patients, and no one knows why. The researcher will use a lab-grown model of human liver tissue treated with fat to observe how immune cells interact with tumour cells and test why the immune system fails to attack the cancer. They will also investigate whether liver resection, the best treatment for early HCC, inadvertently triggers hidden tumours to grow in the remaining liver tissue, and whether immunotherapy affects the liver’s ability to heal after surgery. If successful, this work could help design immunotherapies that work specifically for NASH-related HCC, potentially shrinking advanced tumours enough to allow more patients to undergo curative surgery. The findings may also apply to other cancers treated with surgery and immunotherapy.

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Hepatocellular carcinoma (HCC) is a cancer arising from the liver and the third commonest cause of death from cancer globally, with 906,000 new cases and 830,000 deaths in 2020 alone. Non-alcohol-related steatohepatitis ('NASH', fat within the liver causing dysfunction) is also becoming increasingly common, and HCC commonly occurs in patients with NASH. One requirement for the development of cancer (and HCC) is for tumour cells to gain the ability to 'hide' from the immune system. There is evidence that the immune system promotes survival and evolution of cancer by creating an ideal environment for tumour cells to grow (known as the tumour microenvironment). New treatments have been developed that 'switch on' the tumour immune system, resulting in immune-mediated killing of tumour cells. This is broadly known as 'immunotherapy' and has been particularly successful in treating patients with melanoma. However there is evidence that it may be less effective in patients with NASH for unknown reasons. The best treatment for patients with HCC is surgery to either remove the HCC from the liver (liver resection) or a liver transplant (which removes the tumour and the whole diseased liver, replacing it with a liver usually from a deceased donor). However, in most patients, the HCC is too advanced for resection or transplantation, therefore the majority are treated with chemotherapy. Immunotherapies may help reduce the size and number of tumours in patients with advanced HCC, and allow more patients to undergo liver resection or transplantation. I aim to experimentally recapitulate features of the human HCC tumour microenvironment using HCC cells obtained from patients (with permission) and grown on 'slices' of human liver tissue that have been treated with fat to cause NASH. Our research group has developed this model, which allows us to observe the impact different conditions have on the liver and tumour tissue, and model novel HCC treatments. I will use this model to observe how immune cells in the liver tissue interact with the tumour, and why these conditions make immunotherapy less effective. I also plan to find out what impact the presence of fat in the liver tissue has on immune cell functions and immunotherapy. I will investigate what effect liver resection has on tumour growth in the liver tissue left behind using a mouse model of HCC. Although liver resection removes the tumour, there may be more 'hidden' tumours in the liver tissue left behind that were not known about. Liver resection switches on growth signals, which may drive HCC growth as an unwanted side effect. Determining whether this happens may help us understand why some patients develop disease recurrence very early after resection. Finally I will determine what effect immunotherapy has on the ability of the liver to heal after liver resection, and how it impacts the behaviour of immune cells in tumour tissue left behind in the remnant liver. This PhD project will establish a strong foundation for my future career as an academic liver surgeon focussed on HCC research, and provide insights that will help cancer researchers design improved HCC immunotherapies that reduce the risk of tumour recurrence. The research will have wider applications, as surgery is used for other types of cancer (in the liver and other organs), and will develop our understanding of how the immune system affects cancer behaviour/growth in general.

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Researchers

Abdullah Malik (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Establishing cancer associated fibroblasts as immunotherapeutic targets in liver cancer
Utilising Imaging Mass Cytometry to study the HCC tumour immune microenvironment in human precision cut liver slices engrafted with HCC spheroids
Targeting oncogene induced anti-apoptotic pathways for precision prevention in liver cancer
Spatially resolved analysis of immunosuppressive mechanisms in the HCC tumour microenvironment
Endothelial scavenger receptors shape the immune microenvironment in hepatocellular carcinoma

Original classification

Fellowship

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