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For instance, in wound healing, P21 has been found to allow mammals to heal spontaneously. It even allows some mammals (like mice) to heal wounds without scars. [5] [6] The LIN28 gene also plays a role in wound healing. It is dormant in most mammals. [7] Also, the proteins MG53 and TGF beta 1 play important roles in wound healing. [8]
Timing is important to wound healing. Critically, the timing of wound re-epithelialization can decide the outcome of the healing. [11] If the epithelization of tissue over a denuded area is slow, a scar will form over many weeks, or months; [12] [13] If the epithelization of a wounded area is fast, the healing will result in regeneration.
A week after the injury, the edges of the wound are pulled together by contraction. Contraction is an important part of the healing process when damage has been extensive, and involves shrinking in size of underlying contractile connective tissue, which brings the wound margins toward one another. [1]
One of the major differences between embryonic scar-free healing wounds and adult scar-forming wounds is the role played by the cells of the immune system and the inflammatory response. Table 1: Summary of the major differences identified between fetal and adult wound healing. [10] [11]
“I have more than one moral injury and I used the easier one and not the bad ones that are really affecting me,” she said in December, eight months after she completed the program. What she told the group was “my small one,” about the Iraqi kids who would flock around U.S. troops and vehicles on patrol, begging for candy and cigarettes.
Regenerative medicine also includes the possibility of growing tissues and organs in the laboratory and implanting them when the body cannot heal itself. When the cell source for a regenerated organ is derived from the patient's own tissue or cells, [3] the challenge of organ transplant rejection via immunological mismatch is circumvented.
A wound is any disruption of or damage to living tissue, such as skin, mucous membranes, or organs. [1] [2] Wounds can either be the sudden result of direct trauma (mechanical, thermal, chemical), or can develop slowly over time due to underlying disease processes such as diabetes mellitus, venous/arterial insufficiency, or immunologic disease. [3]
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