Jackson D W, Simon T M
Southern California Center for Sports Medicine, Long Beach, USA.
Clin Orthop Relat Res. 1999 Oct(367 Suppl):S31-45. doi: 10.1097/00003086-199910001-00005.
Advances in the fields of biotechnology and biomaterials offer the orthopaedic surgeon the exciting possibility of repair or regeneration of tissue lost to injury, disease, or aging. The promising area of tissue engineering represents a multidisciplinary approach aimed at solving some of the most perplexing biologic problems, namely, the creation of new tissues and organs similar to the original tissues and organs. In addition, strategies using new synthetic polymer formulations can facilitate tissue replacement and represent alternatives to tissue regeneration in certain conditions. Although biotechnology has broad application over many medical specialties, orthopaedics is receiving a large focus of the research effort devoted to techniques for developing bone, articular cartilage, ligaments, and tendons. Because bioengineered tissue and/or techniques to stimulate tissue regeneration soon may be used clinically, orthopaedic surgeons should have a working knowledge of the basic concepts involved. Terms, such as biomaterial, biotechnology, matrices of synthetic or biologic polymers or both, adhesion, cohesion, porosity, induction, conduction, stem cell, progenitor cell, mesenchymal cell, tissue growth factor, bone morphogenetic protein, mitogenic and chemotactic factors, and numerous other terms will become part of the working language of clinicians of the twenty-first century.
生物技术和生物材料领域的进展为骨科医生提供了令人兴奋的可能性,即修复或再生因损伤、疾病或衰老而丧失的组织。组织工程这一充满前景的领域代表了一种多学科方法,旨在解决一些最令人困惑的生物学问题,也就是创造与原始组织和器官相似的新组织和器官。此外,使用新型合成聚合物配方的策略能够促进组织替代,并在某些情况下成为组织再生的替代方法。尽管生物技术在许多医学专科领域都有广泛应用,但骨科正成为致力于开发骨骼、关节软骨、韧带和肌腱技术的研究工作的重点。由于生物工程组织和/或刺激组织再生的技术可能很快会应用于临床,骨科医生应该对所涉及的基本概念有实际的了解。诸如生物材料、生物技术、合成或生物聚合物或两者兼具的基质、黏附、内聚、孔隙率、诱导、传导、干细胞、祖细胞、间充质细胞、组织生长因子、骨形态发生蛋白、促有丝分裂和趋化因子等术语,将成为21世纪临床医生日常工作用语的一部分。