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18篇 您的检索式:作者名="Samuel TA"
    题名 作者 年代 出处 被引量
1Second-trimester rudimentary uterine horn pregnancy: rupture after labor induction with misoprostol显示文摘Samuels TA Awonuga A 2005Obstet Gyneeol2005,106,5:1
2Effect ofstromal-cell-derived factor 1 on stem-cell homing and tissue regeneration in ischaemic cardiomyopathy显示文摘Arman TA Samuel U Zoran BP 2003Lancet2003,362,9385:1
3Recent develop- ments of metal oxide semiconductors as photocatalysts in ad- vanced oxidation processes (AOPs) t'or treatment of dye waste-water显示文摘Samuel H S C Ta Y W Joon C J 2011J Chem Techn Biotechn2011,86,9:1
4Warm heart surgery and results of operation for recent myocardialinfarction显示文摘Samuel VI Abel JG Salerrno TA 1991Ann Thorac Surg1991,52,:1
5Is the era of HER2over?Pertuzumab in the neoadjuvant treatment of early HER2-positive breast cancer显示文摘Samuel TA Stone E 2014J Community Support Oncol2014,12,3:1
6Recent developments of metal oxide semiconductors as photocatalysts in advanced oxidation processes(AOPs) for treatment of dye waste-water显示文摘Samuel H S C Ta Y W Joon C J 2011Journal of Chemical Technology & Biotechnology2011,86,9:1
7Management of cancer pain 显示文摘Levy MH Samuel TA Semi- nars in Oncology0,32,1:1
8Increased whole body protein breakdown predominates over increased whole body protein synthesis in multiple organ failure显示文摘Arnold J Campbell IT Samuels TA 0,,06:1
9Second-trimester rudimentary uterine horn pregnancy:rupture after labor induction with misoprostol显示文摘SAMUELS TA AWONUGA A 2005Obstet Gynecol2005,106,52:1
10AUY922, a novel Hsp90 inhibitor:final results of a first - in - human study in patients with advanced solid malignancies 显示文摘Samuel TA Sessa C Britten C 2010J Clin Oncol2010,28,5:1
11The role of extrae- scophageal r-eflux in medicllay and surgically refractory rhinosinus- tis显示文摘Loehrl TA Samuels TL Portker DM 2012Laryngscope2012,122,7:1
12Management of cancer pain 显示文摘Levy MH Samuel TA 2005Sere inars in Oncology2005,32,1:1
13The role of extraesophageal reflux in medically and surgically refractory rhinosinusitis显示文摘Loehrl TA Samuels TL Poetker DM 2012Laryngoscope2012,122,7:1
14Current applications and future trends of lactic acid bacteria and their bacteriocins for the biopreservation of aquatic food product显示文摘Pilar Calo-Ma ta Samuel Arlindo Karola Boehme 2008Food Bioprocess Technology2008,1,1:1
15Management of cancer pain显示文摘Levy MH Samuel TA 2005Seminars in Oncology2005,32,1:1
16Nanoparticles functionalized with ampicillin destroy multiple-antibiotic-resistant isolates of Pseudomonas aeruginosa and Enterobacter aerogenes and methicillin-resistant Staphylococcu saureus显示文摘Brown AN Smith K Samuels TA 2012Appl Environ Microbiol2012,78,8:1
17Management of cancer pain 显示文摘Levy MH Samuel TA 2005Seminars in Oncology2005,32,1:1
18A novel approach for the prevention of ionizing radiation-induced bone loss using a designer multifunctional cerium oxide nanozyme显示文摘The disability,mortality and costs due to ionizing radiation(IR)-induced osteoporotic bone fractures are sub-stantial and no effective therapy exists.Ionizing radiation increases cellular oxidative damage,causing an imbalance in bone turnover that is primarily driven via heightened activity of the bone-resorbing osteoclast.We demonstrate that rats exposed to sublethal levels of IR develop fragile,osteoporotic bone.At reactive surface sites,cerium ions have the ability to easily undergo redox cycling:drastically adjusting their electronic con-figurations and versatile catalytic activities.These properties make cerium oxide nanomaterials fascinating.We show that an engineered artificial nanozyme composed of cerium oxide,and designed to possess a higher fraction of trivalent(Ce^(3+))surface sites,mitigates the IR-induced loss in bone area,bone architecture,and strength.These investigations also demonstrate that our nanozyme furnishes several mechanistic avenues of protection and selectively targets highly damaging reactive oxygen species,protecting the rats against IR-induced DNA damage,cellular senescence,and elevated osteoclastic activity in vitro and in vivo.Further,we reveal that our nanozyme is a previously unreported key regulator of osteoclast formation derived from macrophages while also directly targeting bone progenitor cells,favoring new bone formation despite its exposure to harmful levels of IR in vitro.These findings open a new approach for the specific prevention of IR-induced bone loss using synthesis-mediated designer multifunctional nanomaterials.Fei Wei Craig J.Neal Tamil Selvan Sakthivel Yifei Fu Mahmoud Omer Amitava Adhikary Samuel Ward Khoa Minh Ta Samuel Moxon Marco Molinari Jackson Asiatico Michael Kinzel Sergey N.Yarmolenko Vee San Cheong Nina Orlovskaya Ranajay Ghosh Sudipta Seal Melanie Coathup 2023Bioactive Materials2023,,3:0
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