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Isolation, Cryopreservation and Culture of Human Amnion Epithelial Cells for Clinical Applications
Published on: December 21, 2014
Human amnion cells for the prevention of bronchopulmonary dysplasia: a protocol for a phase I dose escalation study
Elizabeth Kate Baker1,2, Atul Malhotra3,4, Rebecca Lim5,6
1Newborn Research Centre, The Royal Women's Hospital, Melbourne, Victoria, Australia.
Insights
This study investigates the safety of human amnion epithelial cells (hAECs) for preterm infants at risk of bronchopulmonary dysplasia (BPD). The findings suggest hAECs may offer a novel therapeutic approach for this condition.
Area of Science:
- Neonatology
- Pulmonology
- Stem Cell Therapy
Background:
- Bronchopulmonary dysplasia (BPD) is a chronic lung disease in preterm infants, linked to inflammation and abnormal lung development.
- Human amnion epithelial cells (hAECs) show potential in preclinical models to reduce inflammation and repair lung injury.
- Allogeneic hAECs are being explored as a potential preventative and reparative therapy for BPD.
Purpose of the Study:
- To evaluate the safety and tolerability of intravenous infusions of human amnion epithelial cells (hAECs) in preterm infants.
- To assess the dose-escalation effects of hAECs in infants at high risk for severe bronchopulmonary dysplasia (BPD).
- To explore secondary outcomes including cytokine profiles, respiratory health, and neurodevelopmental assessments.
Main Methods:
- A two-center, phase I, dose-escalation study involving 24 preterm infants (<29 weeks' gestation).
- Intravenous hAEC infusions administered from day 14 of life, with escalating doses from 2 to 10 million cells/kg per infusion.
- Maximum total dose of 30 million cells/kg across three infusions, with follow-up to 2 years corrected age.
Main Results:
- This section is for results, which are not yet available as the trial is registered as 'Pre-results'. Future results will detail the safety profile and clinical outcomes of hAEC therapy in this cohort.
Conclusions:
- Human amnion epithelial cells (hAECs) represent a promising stem-cell-based therapeutic candidate for bronchopulmonary dysplasia (BPD).
- Further research and clinical trials are warranted to confirm the efficacy and long-term benefits of hAEC therapy in preterm infants.
Introduction:
Bronchopulmonary dysplasia (BPD), an important sequela of preterm birth, is associated with long-term abnormalities of lung function and adverse neurodevelopmental outcomes. Inflammation, inhibition of secondary septation and vascular maldevelopment play key roles in the pathogenesis of BPD. Human amnion epithelial cells (hAECs), stem-like cells, derived from placental tissues are able to modulate the inflammatory milieu and, in preclinical studies of BPD-like injury, restore lung architecture and function. Allogeneic hAECs may present a new preventative and reparative therapy for BPD.
Methods And Analysis:
In this two centre, phase I cell dose escalation study we will evaluate the safety of intravenous hAEC infusions in preterm infants at high risk of severe BPD. Twenty-four infants born at less than 29 weeks' gestation will each receive intravenous hAECs beginning day 14 of life. We will escalate the dose of cells contained in a single intravenous hAEC infusion in increments from 2 million cells/kg to 10 million cells/kg. Further dose escalation will be achieved with repeat infusions given at 5 day intervals to a maximum total dose of 30 million cells/kg (three infusions). Safety is the primary outcome. Infants will be followed-up until 2 years corrected age. Additional outcome measures include a description of infants' cytokine profile following hAEC infusion, respiratory outcomes including BPD and pulmonary hypertension and other neonatal morbidities including neurodevelopmental assessment at 2 years.
Ethics And Dissemination:
This study was approved on the June12th, 2018 by the Human Research Ethics Committee of Monash Health and Monash University. Recruitment commenced in August 2018 and is expected to take 18 months. Accordingly, follow-up will be completed mid-2022. The findings of this study will be disseminated via peer-reviewed journals and at conferences.
Protocol Version:
5, 21 May 2018.
Trial Registration Number:
ACTRN12618000920291; Pre-results.
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