Some Aspects of Reparative Osteogenesis Optimization in Long Bone Fractures

Evgeniy Yul'evich Maslennikov , I I Taranov , T M Al'-Naddzhar , I B Vovchenko , E Yu Maclennikov , I I Taranov , T M Al-Naddzhar , I B Vovchenko

N.N. Priorov Journal of Traumatology and Orthopedics ›› 2010, Vol. 17 ›› Issue (3) : 51 -54.

PDF
N.N. Priorov Journal of Traumatology and Orthopedics ›› 2010, Vol. 17 ›› Issue (3) : 51 -54. DOI: 10.17816/vto201017351-54
Articles
other

Some Aspects of Reparative Osteogenesis Optimization in Long Bone Fractures

Author information +
History +
PDF

Abstract

The aim of the examination was to study the influence of some proteolytic enzymes (cathepcin-D, neutral proteinaze of serine group) upon formation of bone regenerate in fractures. There were 138 patients with bone fractures: 80 fractures were fresh, 38 - nonunited, 20 - nonconsolidated. Periosteal and transfragmental tissues were studied. Those materials were obtained during osteosynthesis that was performed at different terms after trauma. Results obtained allowed to make a suggestion that acid and neutral peptide-hydrolases influence the osteosynthesis and degradation of macromolecular components of bone organic matrix during reparative osteogenesis. That allowed detecting the new ways for optimization of reparative processes in fractures.

Keywords

fractures / regeneration / proteolysis

Cite this article

Download citation ▾
Evgeniy Yul'evich Maslennikov, I I Taranov, T M Al'-Naddzhar, I B Vovchenko, E Yu Maclennikov, I I Taranov, T M Al-Naddzhar, I B Vovchenko. Some Aspects of Reparative Osteogenesis Optimization in Long Bone Fractures. N.N. Priorov Journal of Traumatology and Orthopedics, 2010, 17(3): 51-54 DOI:10.17816/vto201017351-54

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Абдулхаков Н.Т. Лечение ложных суставов костей голени методом внеочагового остеосинтеза с применением химотрипсина //Травма. - 2008. - Т. 9, N 1. -С. 52-54.

[2]

Белик Я.В., Гриненко А.В., Смерчинская Л.С. Определение протеолитической активности тканей с использованием протамина в качестве субстрата //Укр. биохим. журн. - 1968. - Т. 40, N 5. - С. 533-537.

[3]

Зоря В.И., Ярыгин Н.В., Склянчук Е.Д., Васильев А.П. Ферментная стимуляция остеогенеза при лечении несросшихся переломов и ложных суставов костей конечности //Вестн. травматол. ортопед. - 2007. - N 2. - С. 80-85.

[4]

Паладин А.В., Белик Я.В., Поляков Н.М. Белки головного мозга и их обмен. - Киев, 1972.

[5]

Саркисов Д.С. Структурные основы адаптации и компенсации нарушенных функций. - М., 1987.

[6]

Слуцкий Л.И. Биохимия регенерата кости как специфической разновидности грануляционно-фиброзной ткани //Механизмы регенерации костной ткани. - М., 1972. - С. 172-189.

[7]

Торбенко В.П., Касавина Б.С. Функциональная биохимия костной ткани. - М., 1977.

[8]

Akamatsy S., Vatanaba G. The quantitative determination of arginine //J. Biochem. - 1961. - Vol. 11, N 3. - P. 457-460.

[9]

Barrett A.W. Catepsin D. //Meth. Enzymol. - 1981. - Vol. 80. - P. 561-565.

[10]

Lutwak L., Singer F.P., Urist M.R. Current concepts of bone metabolism //Ann. Int. Med. - 1974. - Vol. 80. - P. 630-640.

[11]

Owen M., Triffitt S.T., Melick R.A. Hard tissue growth, repair and remineralization. - Philadelphia, 1973. - P. 263-287.

[12]

Vaes G. Lysosomes and cellular physiology of bone reserption //Lysosomes inbio logy and pathology. - 1969. - Vol. 1. - P. 217-253.

RIGHTS & PERMISSIONS

Eco-Vector

AI Summary AI Mindmap
PDF

113

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/