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자료유형
학술저널
저자정보
Manish Anand (Department of Oral and Maxillofacial Surgery Boston Medical Center Boston University Boston MA USA) Manish Bhagania (Department of Oral and Maxillofacial Surgery Boston Medical Center Boston University Boston MA USA) Kiranmeet Kaur (Department of Oral and Maxillofacial Surgery Boston Medical Center Boston University Boston MA USA)
저널정보
대한미용성형외과학회 Archives of Aesthetic Plastic Surgery Archives of Aesthetic Plastic Surgery Vol.29 No.2
발행연도
2023.4
수록면
64 - 75 (12page)

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Tissue engineering is a subfield of regenerative medicine that has been hailed as the most cutting-edge medical and surgical achievement to date. Tissue engineering aims to restore or construct whole tissues that have been lost due to congenital disabilities, trauma, or surgery. Tissue engineering is based on the premise of obtaining mesenchy mal stem cells that can be used to create an embryologically comparable organ. To re generate an organ that resembles the intended tissue to be replaced, a complex syner gistic interplay between stem cells, signaling molecules, and scaffold, is required. Tis sue engineering in plastic surgery is expected to reduce surgical morbidity by integrat ing cell signals or bio-artificial components taken from the patient’s cells, which may re place damaged bodily tissue without the need for extensive reconstructive surgery. With the advent of 3-dimensional printers for modeling scaffolds and current tissue en gineering methods for the regeneration of muscle, bone, and cartilage in the laborato ry, the scope of tissue engineering is no longer confined to cells and scaffolds, but also encompasses growth factors and cytokines. Although these methods seem promising, clinical success has been limited to essential tissue regeneration, with considerable dif ficulties remaining to overcome. This paper aims to introduce readers to tissue engineer ing’s existing breadth, regeneration processes, limits, and prospects.

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