Artificial Cell Encapsulation for Biomaterials and Tissue Bio-Nanoengineering: History, Achievements, Limitations, and Future Work for Potential Clinical Applications and Transplantation.
Armin MooranianMelissa A JonesCorina Mihaela IonescuDaniel WalkerSusbin Raj WagleBožica KovacevicJacqueline ChesterThomas FosterEdan JohnstonJafri KuthubutheenDaniel J BrownMomir MikovHani-Al SalamiPublished in: Journal of functional biomaterials (2021)
Pancreatic β-cell loss and failure with subsequent deficiency of insulin production is the hallmark of type 1 diabetes (T1D) and late-stage type 2 diabetes (T2D). Despite the availability of parental insulin, serious complications of both types are profound and endemic. One approach to therapy and a potential cure is the immunoisolation of β cells via artificial cell microencapsulation (ACM), with ongoing promising results in human and animal studies that do not depend on immunosuppressive regimens. However, significant challenges remain in the formulation and delivery platforms and potential immunogenicity issues. Additionally, the level of impact on key metabolic and disease biomarkers and long-term benefits from human and animal studies stemming from the encapsulation and delivery of these cells is a subject of continuing debate. The purpose of this review is to summarise key advances in this field of islet transplantation using ACM and to explore future strategies, limitations, and hurdles as well as upcoming developments utilising bioengineering and current clinical trials.
Keyphrases
- type diabetes
- cell therapy
- single cell
- endothelial cells
- induced apoptosis
- clinical trial
- cell cycle arrest
- glycemic control
- human health
- stem cells
- cardiovascular disease
- current status
- risk factors
- cell death
- risk assessment
- insulin resistance
- metabolic syndrome
- intellectual disability
- autism spectrum disorder
- cell proliferation
- weight loss