Главная Назад


Авторизация
Идентификатор пользователя / читателя
Пароль (для удалённых пользователей)
 

Вид поиска

Область поиска
в найденном
Найдено в других БД
Формат представления найденных документов:
библиографическое описание краткийполный
Отсортировать найденные документы по:
авторузаглавиюгоду изданиятипу документа
Поисковый запрос: (<.>S=ОСТЕОГЕННЫЕ<.>)
Общее количество найденных документов : 98
Показаны документы с 1 по 20
 1-20    21-40   41-60   61-80   81-98 
1.
11 kGy gamma irradiated demineralized bone matrix enhances osteoclast activity // Eur. J. Orthop. Surg. and Traumatol., 2014. Vol. 24, N 5.-С.655-661

2.
5-Azacytidine facilitates osteogenic gene expression and differentiation of mesenchymal stem cells by alteration in DNA methylation // Cytotechnology, 2009. Vol. 60, N 1-3.-С.11-22

3.
A recombinant human TGF-'бета'1 fusion protein with collagen-binding domain promotes migration, growth, and differentiation of bone marrow mesenchymal cells // Exp. Cell Res., 1999. Vol. 250, N 2.-С.485-498

4.
Age-associated changes in the stimulatory effect of transforming growth factor beta on human osteogenic colony formation // Mech. Ageing and Dev., 1999. Vol. 110, N 1-2.-С.73-85

5.
Age-associated changes in the stimulatory effect of transforming growth factor beta on human osteogenic colony formation // Mech. Ageing and Dev., 1999. Vol. 110, N 1-2.-С.73-85

6.
Amagai A voltagedependent calcium current in mouse MC3Т3-ЕI osteogenic cells // Jap. J. Physiol., 1989. Vol. 39, N 5.-С.773-777

7.
Antosz Mark E. Effects of transforming growth factor 'бета' and epidermal growth factor on cell proliferation and the formation of bone nodules in isolated fetal rat calvaria cells // J. Cell. physiol., 1989. Vol. 140, N 2.-С.386-395

8.
Artificial pyramid

9.
Beta-tricalcium phosphate particles as a controlled release carrier of osteogenic proteins for bone tissue engineering // J. Biomed. Mater. Res. A, 2012. Vol. 100, N 7.-С.1680-1686

10.
Beta-tricalcium phosphate particles as a controlled release carrier of osteogenic proteins for bone tissue engineering // J. Biomed. Mater. Res. A, 2012. Vol. 100, N 7.-С.1680-1686

11.
Biglycan induces the expression of osteogenic factors in human aortic valve interstitial cells via toll-like receptor-2 // Arteriosclerosis, Thrombosis, and Vasc. Biol., 2012. Vol. 32, N 11.-С.2711-2720

12.
Bruder Scott P. Distinct cellular and molecular transitions during the differentiation of osteogenic cells characterize a unique cell lineage // Calcified Tissue Int., 1989. Vol. 44, Suppl..-С.38

13.
Cell coupling and expression of connexin43 in bone cell networks // J. Cell Biol, 1991. Vol. 115, N 3.-С.191

14.
Cheng S.-L. Paradoxical effects of glucocorticoids and cytokines on bone cell activity // J. Cell. Biol., 1991. Vol. 115, N 3.-С.423

15.
Chu George H. Implant fixation

16.
Development of an injectable two-phase drug delivery system for sequential release of antiresorptive and osteogenic-drugs // J. Biomed. Mater. Res. B, 2012. Vol. 100, N 1.-С.155-162

17.
Effects of osteogenesis on dermal fibroblasts cultured in vitro // Chin. Med. J., 1993. Vol. 106, N 11.-С.825-829

18.
Evidence for an inverse relationship between the differentiation of adipocytic and osteogenic cells in rat marrow stromal cell cultures // J. Cell Sci., 1992. Vol. 102, N 2.-С.341-351

19.
Fluid flow increases mineralized matrix deposition in 3D perfusion culture of marrow stromal osteoblasts in a dose-dependent manner // Proc. Nat. Acad. Sci. USA, 2002. Vol. 99, N 20.-С.12600-12605

20.
Formulations for delivery of osteogenic proteins

 1-20    21-40   41-60   61-80   81-98 
 




© Международная Ассоциация пользователей и разработчиков электронных библиотек и новых информационных технологий
(Ассоциация ЭБНИТ)