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17篇 您的检索式:作者名="Gefel D"
    题名 作者 年代 出处 被引量
1Expression of opioid receptors during heart ontogeny in normotensive and hypertensive rats显示文摘Zimlichman R Gefel D Eliahou H 1996Circulation1996,93,5:1
2Historic perspective and recent developments on the insulin-like actions of vanadium; toward developing vanadium-based drugs for diabetes显示文摘Shechter Y Goldwaser I Mironchik M Fridkin MT Gefel D 2003Coord Chem Rev2003,237,:1
3Prognostic factors in polymyositis/dermatomyositis:a computer associated analysis of ninety-two cases显示文摘Benbassat J Gefel D Larholt K 0,,03:1
4Insulin-like effects of vanadium: basic and clinical implications 显示文摘Goldwaser I Gefel D Gershonov E 2000J Inorg Biochem2000,80,12:1
5Insulin-like effects of vanadium: basic and clinical implications显示文摘Goldwaser I Gefel D Gershonov E 2000J Inorg Biochem2000,80,12:1
6Prognostic factors in polymyositis/dermatomyositis:a computer-assisted analysis of ninetytwocases显示文摘Benbassat J Gefel D Larholt K 1985Arthritis Rheum1985,28,3:1
7Prognostic factors in polymyositisder-matomyositis:a computer-assisted analysis of ninety-two eases显示文摘Benbassat J Gefel D Larholt K 0,,3:1
8Expression of opioid receptors during heart ontogeny in normotensive and hypertensive rats 显示文摘I Zimlichman R Gefel D Eliahou H 1996Circulation1996,93,3:1
9Glucagon-like peptide-Ⅰ analogs: effects on insulin secretion and adenosine 3', 5' monophosphate formation显示文摘Gefel D Hendrick GK Mojsov S 1990Endocrinology1990,126,4:1
10Expression of opioid receptors during heart ontogeny in normotensive and hypertensive rats显示文摘Zimlichman R Gefel D Eliahou H 0,,:1
11Insulin-like effects of vanadium:basic and clinical implications显示文摘 Gefel D Gershonov E 2000J InorgBiochem2000,80,12:1
12Expression of opioid receptors during heart ontogeny in normotensive and hypertensive rats 显示文摘 Gefel D Eliahou H 1996Circulation1996,93,5:1
13Matrix diffusion-derived plume attenuation in fractured bedrock 显示文摘LIPSON D KUEPER B H GEFELL M J 2005Ground Water2005,43,:1
14Degradation of 3D-printed magnesium phosphate ceramics in vitro and a prognosis on their bone regeneration potential显示文摘Regenerative bone implants promote new bone formation and ideally degrade simultaneously to osteogenesis.Although clinically established calcium phosphate bone grafts provide excellent osseointegration and osteoconductive efficacy,they are limited in terms of bioresorption.Magnesium phosphate(MP)based ceramics are a promising alternative,because they are biocompatible,mechanically extremely stable,and degrade much faster than calcium phosphates under physiological conditions.Bioresorption of an implant material can include both chemical dissolution as well as cellular resorption.We investigated the bioresorption of 3D powder printed struvite and newberyite based MP ceramics in vitro by a direct human osteoclast culture approach.The osteoclast response and cellular resorption was evaluated by means of fluorescence and TRAP staining,determination of osteoclast activities(CA II and TRAP),SEM imaging as well as by quantification of the ion release during cell culture.Furthermore,the bioactivity of the materials was investigated via SBF immersion,whereas hydroxyapatite precipitates were analyzed by SEM and EDX measurements.This bioactive coating was resorbed by osteoclasts.In contrast,only chemical dissolution contributed to bioresorption of MP,while no cellular resorption of the materials was observed.Based on our results,we expect an increased bone regeneration effect of MP compared to calcium phosphate based bone grafts and complete chemical degradation within a maximum of 1.5-3.1 years.Gefel Eugen Moseke Claus Schmitt Anna-Maria Dümmler Niklas Stahlhut Philipp Ewald Andrea Meyer-Lindenberg Andrea Vorndran Elke 2023Bioactive Materials2023,,1:1
15Insulin like effects of zinc ion in vitro and in vivo显示文摘Shisheva A Gefel D Shechter Y 1992Diabetes1992,41,:1
16Neutrophil elastase and acute pulmonary damage in neonates with severe respiratory distress syndrome显示文摘 Ruess D Harms K Herting E Gefeller O 1993Pediatrics1993,91,4:1
17Corrigendum to“Degradation of 3D-printed magnesium phosphate ceramics in vitro and a prognosis on their bone regeneration potential”[Bioact.Mater.19(2023)376-391/22]显示文摘The authors regret the reversal of the order of first and last names in the original article.The correct order of the authors’first and last names are Eugen Gefel,Claus Moseke,Anna-Maria Schmitt,Niklas Dümmler,Philipp Stahlhut,Andrea Ewald,Andrea Meyer-Lindenberg,Elke Vorndran.Eugen Gefel Claus Moseke Anna-Maria Schmitt Niklas Dümmler Philipp Stahlhut Andrea Ewald Andrea Meyer-Lindenberg Elke Vorndran 2023Bioactive Materials2023,,2:0
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