COMING SOON

Induced Pluripotent Stem Cell Banking (IPSC)

Preserve personalised induced pluripotent stem cells as a renewable platform for future research and regulated medical applications.

What Is IPSC?

Pluripotent Stem Cells Have Broader Potential

Stem cells can replicate themselves and develop into specialized cell types, though their potential varies. For example, blood-forming stem cells mainly develop into blood cells, while neural stem cells produce nerve tissue. Pluripotent stem cells have broader potential, capable of developing into nearly any tissue type in the human body. Induced pluripotent stem cells (iPSCs) are created by reprogramming adult cells, such as blood or skin cells, into this pluripotent state.

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How is IPSC different?

Reprogrammed From Adult Cells Without Using Embryo

Unlike embryonic stem cells, which are derived from early-stage embryos and raise ethical considerations, or donor-derived cells, which carry compatibility risks, iPSCs are produced in a laboratory by reprogramming an individual’s own adult cells, such as blood or skin cells, without using an embryo. Once established, an iPSC line can be expanded and studied as a renewable cell source. Being genetically related to the patient doesn’t guarantee every iPSC-derived product is safe or immune-compatible. Any inherited genetic condition will be carried into the iPSCs, so additional assessment or genetic correction may be needed before therapeutic use.

How are iPSCs generated?

Pluripotent Cell Generation and Banking Process

Adult cells can be collected from sources such as blood or skin. Selected cells are then exposed to specific reprogramming factors under controlled laboratory conditions. These factors return the cells to a pluripotent state. Successfully reprogrammed cells are expanded to establish an iPSC line. The iPSC line can then be cryopreserved for future research or regulated therapies.

Step 1

Consultation and Consent

The intended service details, source-cell collection process, permitted uses, storage period and consent requirements are reviewed with the customer.

Step 2
Source Cell Collection

Adult cells are collected from an agreed source, such as a peripheral blood sample or skin cells.

Step 3
Cell Reprogramming

The selected adult cells are reprogrammed in the laboratory to generate candidate iPSC colonies.

Step 4
Expansion and Quality Assessment

Candidate colonies are expanded and assessed to confirm their identity, pluripotent characteristics, sterility and genetic quality.

Step 5
Cryopreservation

Qualified iPSC lines are frozen under controlled conditions, assigned a unique identifier and transferred into monitored cryogenic storage.

Step 6
Storage confirmation

The customer receives documentation identifying what was generated, tested and placed into storage.

Why consider IPSC banking?

A Renewable Personalised Cell Platform

iPSCs can develop into many specialised cell types, researchers are studying their potential to generate cells associated with the heart, nervous system, blood, immune system and other tissues. 

Generated from your own cells

iPSCs can be created from adult cells collected from an individual.

Self-renewing in the laboratory

Once an iPSC line is established, the cells may be expanded to create additional research or therapeutic material.

Broad developmental potential

Under controlled conditions, iPSCs may be directed to develop into different specialised cell types.

Relevant to personalised research and therapy

Patient-specific iPSCs may be used in areas such as disease modelling, drug research and the development of future personalised cell technologies.

Potential applications

Future Possibilities in Cell Replacement

Undifferentiated iPSCs are not injected directly as a general treatment. Cells intended for clinical use must be differentiated, purified, characterised and tested before administration. Important risks include genetic abnormalities, contamination, unintended cell development and tumour formation. These risks must be addressed through regulated research and manufacturing. 

Disease modelling

Patient-derived iPSCs may be developed into relevant cell types so researchers can study how a disease develops.

Drug discovery and testing

Researchers may use iPSC-derived cells to investigate how cells respond to potential medicines.

Personalised research

Because iPSCs can be generated from an individual’s cells, they may help researchers study differences between patients.

Regenerative medicine research

Scientists are exploring whether iPSC-derived cells could eventually replace or repair damaged cells and tissues.

Immune-cell development

iPSCs are also being investigated as a renewable starting material for producing immune cells such as natural killer cells and specialised T cells.

Frequently Asked questions

You might want to ask

Reach us for banking enquiries, sample retrieval, or inherited custody transfers.

What are iPSCs?

iPSCs are adult cells that have been reprogrammed in a laboratory into a pluripotent state. They can self-renew and may be directed to develop into many specialised cell types.

No. Adult cells, such as blood or skin cells, are collected first. These cells are then reprogrammed in a laboratory to generate iPSCs.

No. iPSC banking is a cell-generation and storage service. Any future treatment derived from those cells would require separate manufacturing, medical assessment and regulatory approval. 

No. Reprogramming may be unsuccessful, or a generated line may not meet the required quality criteria. For further information about our cell banking guarantees, feel free to reach out to us.