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Hepatocytes Encapsulated with mesenchymal stromal cells in alginate microbeads for the treatment of acute Liver failure in Paediatric patients (HELP)

In plain English

AI plain-English summary

A gel capsule filled with liver cells could buy a child’s failing liver enough time to heal itself, without the need for a transplant or lifelong immune-suppressing drugs. Acute liver failure in children carries an 80–90% mortality risk for those who meet transplant criteria, but donor organs are scarce—especially for infants—and transplantation requires major surgery and dangerous lifelong immunosuppression. The liver can regenerate if supported, yet no proven liver support device currently exists. This clinical trial tests a refined version of the researchers’ earlier prototype, which already allowed 4 of 8 treated children to avoid transplantation entirely and remain healthy up to 8 years later. If the new microbeads—which combine liver cells with supporting stromal cells in an improved gel—prove safe and effective in a formal trial, they could transform paediatric liver failure care. Patients would receive a temporary, off-the-shelf cell therapy that eliminates the wait for a donor organ, avoids immunosuppression, and could be scaled from a single donated liver to treat multiple children. The immediate impact is on hospital intensive care and transplant waiting lists, not daily life outside the clinic.

View original technical description
Acute liver failure (ALF) is a medical emergency that carries mortality of 80-90% in patients who fulfill liver transplant criteria. Liver transplantation depends on the timely availability of a suitable donor organ and requires life-long immunosuppression with life-threatening complications. Alternatively, the liver has a tremendous regenerative potential: if the failing liver could be supported until regeneration occurs, organ replacement and its associated complications can be avoided. Currently there is no proven liver support device available that can bridge the patient to native liver recovery or to transplant. It has been demonstrated that partial replacement of a patient's liver with a healthy donor liver (called an auxiliary transplantation) can allow clinical stability during native liver regeneration, eventually making the transplanted liver redundant, in up to 70% of the patients. For this, only a small mass of liver tissue is necessary to support the patient. Auxiliary transplant still requires availability of a suitably sized organ, major surgery, and immunosuppression, however. Transplantation of hepatocytes (cells rather than an organ) has been shown to improve synthetic and detoxification function in small animal models with subsequent human application in patients with ALF. The advantages of hepatocyte transplantation in this context are considerable. For example, (i) hepatocytes may be derived from livers which are unsuitable for transplantation; (ii) isolated cells can be frozen for years and used off-the-shelf, something that is impossible with entire organs, thereby eliminating the wait for an appropriate organ; (iii) cells isolated from one liver could treat more than one patient, thereby reducing the need for donor organs; and (iv) this provides options to infants and small children for whom the wait for an appropriately sized organ may be extremely prolonged. Earlier clinical experiences with human hepatocytes in ALF have been only partly successful when cells were injected either in the liver, or the peritoneal cavity, mainly because of rejection and use of immunosuppression in extremely sick patients, which increases the risk of infections. We have developed a technique using liver cells encapsulated in a bio-compatible gel (hepatocyte microbeads - HMB001) that can be infused temporarily in the peritoneal cavity of the patient, to replace the failing liver until regeneration. Importantly, the gel protects the cells from the immune system. The patients therefore do not require immunosuppression. We have previously treated 8 children and infants with HMB001 on a named patient basis (compassionate use). The technique proved to be safe and, importantly, displayed some efficacy: though all children met eligibility for organ transplantation, 4 children recovered with the treatment while awaiting transplant thus entirely avoiding the need for liver transplantation and are still well, up to 8 years after the procedure. We have refined our prototype of hepatocyte microbeads, which now involves multiple cell types and an improved gel that better supports the cell function (HMB002). The new microbeads have shown superior function and longevity in vitro as well as in vivo, in preclinical studies. The aim of this project is to run a clinical trial to test these new microbeads.

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Researchers

Abdel Douiri (Co-Investigator)Anil Dhawan (Principal Investigator)Celine Filippi (Co-Investigator)Emer Fitzpatrick (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

Hepatocyte and mesenchymal stromal cell co-encapsulation in alginate microbeads as therapy of acute liver failure.
Alpha-1 antitrypsin to improve the efficacy of hepatocyte transplantation in children with liver-based metabolic disease
19DS09 - Development of an implantable and removable liver patch to provide ectopic liver support to patients with non-ketotic hyperglycemia
Development of an implantable and removable liver patch to provide ectopic liver support to patients with non-ketotic hyperglycemia
Induced pluripotent stem cell derived hepatocytes for liver failure (iPUSH for LIFE)

Original classification

Research Grant

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