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| 1 | 显示文摘 | Dashtdar H avva MuraliMailiga Raman Abbas Azlina Amir | | Knee Surg Sports Traumatol Arthrosc0,23,5: | 1 |
| 2 | Treatment outcomes of alginate-embedded allogenic mesenchymal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rabbit model 显示文摘 | Tay LX Ahmad RE Dashtdar H | 2012 | American Journal of Sports Medicine2012,40,1: | 1 |
| 3 | Treatment out- comes of alginate-embedded allongenic mescnchymal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rabbit model 显示文摘 | Tay LX Ahmad RE Dashtdar H | 2012 | Am J of Sports Med2012,40,1: | 1 |
| 4 | A preliminary studycomparing the use of allogenic chondrogenicpre-differentiated and undifferentiated mesenchymal stemcells for the repair of full thickness articular cartilage defectsin rabbits显示文摘 | Dashtdar H Rothan HA Tay T | | 0,,09: | 1 |
| 5 | Treatment outcomes of alginate-embedded allogenic mesenchymal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rabbit model 显示文摘 | Tay LX Ahmad RE Dashtdar H | 2010 | American Journal of Sports Medicine2010,31,26: | 1 |
| 6 | Treatment outcomes of alginate-embedded allogenic mesen chymalstem cells versus auto logous chond rocytes for the repair of focal articular cartilage de- fectsin a rabbit model 显示文摘 | Tay LX Ahmad RE Dashtdar H | 2011 | Am J Sports Med2011,40,1: | 1 |
| 7 | Treatment outcomes of algi- nate- embedded allogenic mesenchyrnal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rab- bit model显示文摘 | Tay LX Ahmad RE Dashtdar H | 2011 | Am J Sports Med2011,1,: | 1 |
| 8 | Treatment outcomes of alginate-embedded allogenic mesenchymal stem cells versus autologous chondrocytes for the repair of focal articular cartilage defects in a rabbit model显示文摘 | Tay LX Ahmad RE Dashtdar H | | 0,,01: | 1 |
| 9 | Outcome of intracytoplasmic injection of epididymal and testicular sperm obtained from patients with obstructive and non-obstructive azoospermia显示文摘 | Mehrafza M Tavakotnia R Dashtdar H | 2004 | International Congress Series2004,1271,: | 1 |
| 10 | Benefits of Gum Arabic, for a Solitary Kidney Under Adverse Conditions:A Case Study显示文摘Gum Arabic(GA,called E-414 in the EU food industry),a natural biopolymer resin is a dried exudation obtained from the stems and branches of natural strains of Acacia Senegal(L)Willdenow.It consists mainly of high molecular weight polysaccharides and their calcium,potassium,and magnesium,which on hydrolysis yield arabinose,galactose,rhamnose,and glucuronic acid.Fermentable natural fiber of gum Arabic act as probiotics improves the absorption of minerals,especially calcium and helps to maintain a healthy balance of bacteria in the gastrointestinal(GI)tract.Extraction,transformation,or reprocessing of nitrogenous wastes(ammonia,urea,and uric acid)by the GI tract is a potentially low-cost means of switching for missing renal function.Binding of nitrogen compounds to be inert orally by administration of gum Arabic is the safe solution either in normal renal function or renal failures.In this study,clinically,we observed a case of solitary kidney under adverse condition long‑term treating with gum Arabic the vast potential of bioactive phytochemicals as a nontoxic,efficient with uric acid and bilirubin lowering agent and anti‑inflammatory effects,considering the gum Arabic as a potential therapeutic supplement,beneficial in chronic renal failure,cardiovascular disease,pain management,and dental health.Despite the nonexistent background concerning the benefits of gum Arabic,for a solitary kidney under adverse conditions,our study has confirmed that long‑term consumption of gum Arabic not only has no side effect but also protects multi-organs damage from drug adverse reactions and consequences of baseline disease,including renal,vascular,dental and inflammatory diseases. | Mehrab Dashtdar Karima Kardi | 2018 | Chinese Medicine and Culture2018,1,2: | 0 |
| 11 | 3D-printed scaffolds with 2D hetero-nanostructures and immunomodulatory cytokines provide pro-healing microenvironment for enhanced bone regeneration显示文摘Three-dimensional (3D) printing technology is driving forward the progresses of various engineering fields, including tissue engineering. However, the pristine 3D-printed scaffolds usually lack robust functions in stimulating desired activity for varied regeneration applications. In this study, we combined the two-dimensional (2D) hetero-nanostructures and immuno-regulative interleukin-4 (IL-4) cytokines for the functionalization of 3D-printed scaffolds to achieve a pro-healing immuno-microenvironment for optimized bone injury repair. The 2D hetero-nanostructure consists of graphene oxide (GO) layers, for improved cell adhesion, and black phosphorous (BP) nanosheets, for the continuous release of phosphate ions to stimulate cell growth and osteogenesis. In addition, the 2D hetero-nanolayers facilitated the adsorption of large content of immuno-regulative IL-4 cytokines, which modulated the polarization of macrophages into M2 phenotype. After in vivo implantation in rat, the immuno-functioned 3D-scaffolds achieved in vivo osteo-immunomodulation by building a pro-healing immunological microenvironment for better angiogenesis and osteogenesis in the defect area and thus facilitated bone regeneration. These results demonstrated that the immuno-functionalization of 3D-scaffolds with 2D hetero-nanostructures with secondary loading of immuno-regulative cytokines is an encouraging strategy for improving bone regeneration. | Xifeng Liu Bipin Gaihre Sungjo Park Linli Li Babak Dashtdar Maria D.Astudillo Potes Andre Terzic Benjamin D.Elder Lichun Lu | 2023 | Bioactive Materials2023,,9: | 0 |