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| 1 | Bioactive extracellular matrix scaffolds engineered with proangiogenic proteoglycan mimetics and loaded with endothelial progenitor cells promote neovascularization and diabetic wound healing显示文摘Diabetic ischemic wound treatment remains a critical clinical challenge.Neovascularization plays a significant role in wound healing during all stages of the tissue repair process.Strategies that enhance angiogenesis and neovascularization and improve ischemic pathology may promote the healing of poor wounds,particularly diabetic wounds in highly ischemic conditions.We previously identified a cyclic peptide LXW7 that specifically binds to integrinαvβ3 on endothelial progenitor cells(EPCs)and endothelial cells(ECs),activates vascular endothelial growth factor(VEGF)receptors,and promotes EC growth and maturation.In this study,we designed and synthesized a multi-functional pro-angiogenic molecule by grafting LXW7 and collagen-binding peptides(SILY)to a dermatan sulfate(DS)glycosaminoglycan backbone,named LXW7-DS-SILY,and further employed this multi-functional molecule to functionalize collagen-based extracellular matrix(ECM)scaffolds.We confirmed that LXW7-DS-SILY modification significantly promoted EPC attachment and growth on the ECM scaffolds in vitro and supported EPC survival in vivo in the ischemic environment.When applied in an established Zucker Diabetic Fatty(ZDF)rat ischemic skin flap model,LXW7-DS-SILY-functionalized ECM scaffolds loaded with EPCs significantly improved wound healing,enhanced neovascularization and modulated collagen fibrillogenesis in the ischemic environment.Altogether,this study provides a promising novel treatment to accelerate diabetic ischemic wound healing,thereby reducing limb amputation and mortality of diabetic patients. | Siqi He Tanaya Walimbe Hongyuan Chen Kewa Gao Priyadarsini Kumar Yifan Wei Dake Hao Ruiwu Liu Diana L.Farmer Kit S.Lam Jianda Zhou Alyssa Panitch Aijun Wang | 2022 | Bioactive Materials2022,7,4: | 2 |
| 2 | The use of finite state machines for task-based machine tool control 显示文摘 | KRUTH J P VAN GINDERACHTER T TANAYA PI | 2001 | Computers in Industry2001,46,: | 1 |
| 3 | The use of finite state machines for task - based machine tool control 显示文摘 | Kruth J P Van Ginderachter T Tanaya P I | 2001 | Computers in Industry2001,46,3: | 1 |
| 4 | The use of finite state machines for task-based machine tool control显示文摘 | KRUTH J P VAN GINDERACHTER T TANAYA PI el al | 2001 | Computers in Industry2001,46,: | 1 |
| 5 | The use of finite state machines for task-based machine tool control 显示文摘 | Kruth J P Ginderachter T V Tanaya P I Valckenaers P | 2001 | Computers in Industry2001,46,3: | 1 |
| 6 | Learning Sparse Rep- resentations for Human Action Recognition显示文摘 | Tanaya G Rahab K W | 2012 | Pattern Analysis & Machine Intelligence IEEE Transactions on2012,34,8: | 1 |
| 7 | Cytotoxic and antioxidant property of a purified fraction (NN-32) of Indian Naja naja venom on Ehrlich ascites carcinoma in BALB/c mice显示文摘 | Tanaya Das Shamik Bhattacharya Babli Halder Archita Biswas Shubho Das Gupta Antony Gomes Aparna Gomes | 2011 | Toxicon2011,,7: | 1 |
| 8 | Expression of human telomerase subunits and correlation with telomerase activity in cervical cancer 显示文摘 | Takakura M Kyo S Tanaya M | 1998 | Cancer Res1998,58,7: | 1 |
| 9 | The short- and long-term frequency stabilization of an injection-locked Nd : YAG laser in reference to a Fabry-Perot cavity and an iodine saturated absorption line显示文摘 | MUSHA M TANAYA T KAKAGAWA K | 2000 | Opt Commun2000,183,14: | 1 |
| 10 | The use of finite state machines for task-based machine tool control显示文摘 | Kruth J P van Ginderachter T Tanaya P I | 2001 | Computers in Industry2001,46,3: | 1 |
| 11 | Curvelet Based Face Recognition via Dimension Reduction显示文摘 | Tanaya M Q M Jonathan W Yuan Yuan | 2009 | Signal Processing2009,89,12: | 1 |
| 12 | Face recognition by Curvelet based feature extraction显示文摘 | M Tanaya M Angshul Q M Jonathan Wu | | 0,,: | 1 |
| 13 | The use of finite state machines for task-basod machine tool control显示文摘 | Kruth J P Van Ginderachter T Tanaya P I | 2001 | Computers in Industry2001,46,3: | 1 |
| 14 | Antibacterial effect of silver nanoparticles and the modeling of bacterial growth kinetics using a modified Gompertz model显示文摘 | Tanaya Chatterjee Barun K. Chatterjee Dipanwita Majumdar Pinak Chakrabarti | 2014 | BBA - General Subjects2014,,: | 1 |
| 15 | Application of Lipopeptide Biosurfactant Isolated from a Halophile: Bacillus tequilensis CH for Inhibition of Biofilm显示文摘 | Arun Kumar Pradhan Nilotpala Pradhan Gangotri Mall Himadri Tanaya Panda Lala Behari Sukla Prasanna Kumar Panda Barada Kanta Mishra | 2013 | Applied Biochemistry and Biotechnology2013,,6: | 1 |
| 16 | 汇丰银行 人工智能构建个性化忠诚度计划显示文摘汇丰银行正利用人工智能预测客户如何最大化利用其信用卡积分,以便更积极有效地推进顾客忠诚度计划。 | Tanaya Machee 骆佳(译) | 2018 | 国际品牌观察2018,0,4: | 0 |
| 17 | MXene-based nanomaterials as adsorbents for wastewater treatment:a review on recent trends显示文摘The wastewater treatment is a challenging research area to reduce the increasing pressure on limited fresh water resources.Amongst several techniques adopted and practiced,adsorption is one of the most effective and sustainable ecofriendly processes.In recent years,MXene nanomaterials,a new family of transition metal carbides,have gained increasing attention as the potential adsorbent for pollutants due to their unique features such as large surface area with abundant active sites and hydrophilicity.A wide range of pollutants viz.heavy metal ions,organic dyes,radionuclides,and toxic gas molecules have been sensed by 2D MXenes.An inclusive understanding on the adsorptive behavior of MXene-based materials is needed to explain the removal mechanism and effects of different adsorption parameters.This review gives a general overview on recent research progress on MXene materials with special reference to their applications for the adsorptive removal of different pollutants.The general trends in the synthesis of MXenes,their stability and different factors affecting the adsorption process along with the main challenges in understanding the full potential of MXenes for environmental applications are discussed. | Rajesh K.JENA Himadri Tanaya DAS Braja N.PATRA Nigamananda DAS | 2022 | Frontiers of Materials Science2022,16,1: | 0 |