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首页> 外文期刊>Calcified Tissue International >Treatment with Parathyroid Hormone hPTH(1-34), hPTH(1-31), and Monocyclic hPTH(1-31) Enhances Fracture Strength and Callus Amount After Withdrawal Fracture Strength and Callus Mechanical Quality Continue to Increase
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Treatment with Parathyroid Hormone hPTH(1-34), hPTH(1-31), and Monocyclic hPTH(1-31) Enhances Fracture Strength and Callus Amount After Withdrawal Fracture Strength and Callus Mechanical Quality Continue to Increase

机译:甲状旁腺激素hPTH(1-34),hPTH(1-31)和单环hPTH(1-31)的治疗在拔除骨折强度和愈伤组织机械质量后继续提高骨折强度和愈伤组织数量

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The influence of intermittent hPTH(l-34)NH2, hPTH(1-31)NH2, and monocyclic [Leu27]cyclo(Glu22-Lys26)hPTH(1-31)NH2 treatment on callus formation, mechanical strength, and callus tissue mechanical quality of tibial fractures in rats was investigated after 8 and 16 weeks of healing. In the 8 weeks of healing animals, the PTH-peptides were injected subcutaneously during the entire observation period (15 nmol/kg/day [hPTH(1-34)NH2: 15 nmol = 60 µg]), and control animals with fractures were given vehicle. In the 16 weeks of healing animals, the PTH-peptides were injected only during the first 8 weeks of healing (15 nmol/kg/day), after which the animals were left untreated during the rest of the healing period. After the first 8 weeks of healing, increased fracture strength and callus volume were seen in the PTH-treated rats (ultimate load 66%, ultimate stiffness 58%, callus volume 28%), and the three peptides were equally effective. No difference in callus tissue mechanical quality was found between PTH and vehicle animals. After 16 weeks of healing, no differences in fracture strength, callus volume, or callus tissue mechanical quality were seen between PTH and vehicle. When comparing PTH-treated animals at 8 and 16 weeks, fracture strength and callus tissue mechanical quality continued to increase after the withdrawal of PTH (ultimate load 23%, ultimate stress 88%, elastic modulus 87%) and external callus volume declined during this period (27%).
机译:间歇性hPTH(1-34)NH2 ,hPTH(1-31)NH2 和单环[Leu27 ]环(Glu22 -Lys26 的影响愈合8、16周后,研究了hPTH(1-31)NH2 对大鼠胫骨骨折愈伤组织形成,机械强度和愈伤组织机械质量的影响。在康复动物的8周中,在整个观察期内皮下注射PTH肽(15 nmol / kg /天[hPTH(1-34)NH2 :15 nmol = 60 µg]),并进行对照给患有骨折的动物赋形剂。在愈合的16周动物中,仅在愈合的前8周(15 nmol / kg /天)注射PTH肽,此后在其余的愈合期间不进行治疗。在愈合的前8周后,在PTH处理的大鼠中观察到骨折强度和愈伤组织体积增加(最终负荷为66%,极限刚度为58%,愈伤组织体积为28%),并且三种肽同样有效。在PTH和媒介动物之间未发现愈伤组织机械质量的差异。愈合16周后,PTH和媒介物之间没有观察到断裂强度,愈伤组织体积或愈伤组织组织机械质量的差异。在比较第8周和第16周的经PTH处理的动物时,PTH撤除后,其骨折强度和愈伤组织机械质量持续提高(最终负荷23%,极限应力88%,弹性模量87%),在此期间外部愈伤组织体积下降期(27%)。

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