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Pharma Tech Outlook | Wednesday, September 30, 2020
Regenerative medicine is gaining popularity due to its personalized treatment capabilities. However, there are certain supply chain challenges while delivering them from the lab to the clinic.
FREMONT, CA: Regenerative medicine is one of the most promising advances in medical science. It is an interdisciplinary area that can help in repairing or replacing damaged and diseased human cells or tissues to reestablish normal function.
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The liver is the only organ in the human body capable of spontaneously regenerating itself, even after severe injury. However, it is expected that any portion of the human body may be capable of doing so in the future.Human cells will also be able to treat blood and immune system disorders, as well as rebuild the blood system following complex cancer treatments.
What was once thought impossible is now being conceived and developed on a daily basis. The latest applications include engineered skin tissue for the treatment of burn victims, custom-grown bones for implants and joint replacements, and customized dietary therapies using gut bacteria. Recently, using the patient's own cells and biological materials, the world's first 3D vascularized engineered heart was developed.
For regenerative medicine to succeed, it is important to take into consideration the entire product lifecycle, including the creation of an effective distribution network.Regulatory approval for any medication depends on it serving its medical function safely and successfully. Hence, on the completion of phase three clinical trials, information on supply chain management needs to be provided to the regulator, including details about including packaging, marking, storage, and delivery.
The clinical supply chains that are needed deliver these therapies are undoubtedly the most complex, perhaps more so than for biological medicine, that the industry has seen so far. This is because regenerative medicine is either customized or tailored to a particular donor-recipient, unlike many mass-market medicines.
The delivery of therapies for regenerative medicine becomes more complex since they can be highly susceptible to exogenous factors, such as time and temperature. Strict guidelines under which they are appropriate to transport and undergo these therapies have been put in place.To ensure end-to-end traceability across the pharma supply chain, the latest IT solutions and tracking systems are being adopted. These provide access for clinicians to monitor the progress of therapies and their real-time delivery and allow users to schedule or change inventory collections to match the manufacturing ability and help keep the supply chain as flexible and cost-effective as possible.
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