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- W2071773448 abstract "When bone is fractured, a sequence of dynamic events ensue to restore form and therefore function. Many key biologic cell regulators for these events have been identified, expressed through recombinant technology, and their roles posited. Moreover, the availability of recombinantly engineered molecules, such as the bone morphogenetic proteins with their potential to benefit patient care, has ushered in an important era in clinical dentistry that may eliminate either autografting or bank bone allografts. Therefore, in this review article, we have highlighted some of the exciting biologic regulators relevant to bone fracture healing and outlined the dynamic elements in this process. When bone is fractured, a sequence of dynamic events ensue to restore form and therefore function. Many key biologic cell regulators for these events have been identified, expressed through recombinant technology, and their roles posited. Moreover, the availability of recombinantly engineered molecules, such as the bone morphogenetic proteins with their potential to benefit patient care, has ushered in an important era in clinical dentistry that may eliminate either autografting or bank bone allografts. Therefore, in this review article, we have highlighted some of the exciting biologic regulators relevant to bone fracture healing and outlined the dynamic elements in this process." @default.
- W2071773448 created "2016-06-24" @default.
- W2071773448 creator A5002877422 @default.
- W2071773448 creator A5080557105 @default.
- W2071773448 date "1996-12-01" @default.
- W2071773448 modified "2023-09-23" @default.
- W2071773448 title "The integrated processes of hard tissue regeneration with special emphasis on fracture healing" @default.
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- W2071773448 doi "https://doi.org/10.1016/s1079-2104(96)80431-8" @default.
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