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Technology enables scientists to create tissue with customized shape.
November 12, 2021
By: Charlie Sternberg
Associate Editor
In the case of serious soft tissue injuries, tissue transplantation is sometimes unavoidable. For the patient, however, this means a serious intervention. In the future, the missing tissue could grow directly in the patient’s body – in isolation chambers that can be implanted under the skin and individually adapted to the wound geometry. The 3D-printed chambers developed by the research team from the Fraunhofer Institutes for Applied Polymer Research IAP and for Laser Technology ILT as well as the BG Klinik Ludwigshafen will be presented at the MEDICA medical technology trade fair in Düsseldorf from November 15 to 18 in Hall 3, Booth E74. If structures such as bones, vessels or tendons are exposed in the patient, tissue transplantation with perfused tissue is often the only option. For the patient, this is associated with an operation lasting several hours and with injury to the body’s own healthy tissue. Scientists are therefore developing tissue-conserving methods for generating perfused tissue grafts to replace skin and other tissue in a targeted manner. For example, collagen-lined isolation chambers made of teflon could be sewn under the skin and an artery or vein could be looped into them. Through cell migration and ingrowth of vessels, the collagen is finally transformed into transplantable tissue within two to four weeks. This is a minor procedure for which local anesthesia is sufficient. In contrast to tissue grown in a petri dish, the tissue created in the chamber is fully vascularized – i.e., interspersed with capillaries – and thus supplied with blood. This means that a lively connective tissue is created that adopts the shape of the isolation chamber and is suitable for transplantation without having to sacrifice healthy donor tissue. Another advantage: since the tissue is produced by the patient’s body, rejection reactions are avoided.
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