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| 1 | Role of genotype-based approach in the cfinical management of adult acute myeloid leuke- mia with normal cytogenetics显示文摘 | Cagnetta A Adamia S Acharya C | 2014 | Leuk Res2014,38,6: | 1 |
| 2 | Nicotinamide phosphoribosyl transferase as a target in inflammation-relat- ed disorders显示文摘 | Montecucco F Cea M Cagnetta A | 2013 | Curr Top Med Chem2013,13,23: | 1 |
| 3 | New insights into the treatment of multiple myeloma with histone deacetylase inhibitors 显示文摘 | Cea M Cagnetta A Gobbi M | 2013 | Curr Pharm Des2013,19,4: | 1 |
| 4 | Intracellular NAD depletion enhances bortezomib-induced anti-myeloma activity 显示文摘 | CAGNETTA A CEA M ACHARYA C | 2013 | Blood2013,122,7: | 1 |
| 5 | New insights into the treatment of multiple myeloma with histone deacetylase inhibitors显示文摘 | Cea M Cagnetta A Gobbi M | 2013 | Curr Pharm Des2013,19,4: | 1 |
| 6 | WT1 overexpression at diagnosis may predict favorable outcome in patients with de novo non-M3 acute myeloid leukemia显示文摘 | Maurizio Miglino Nicoletta Colombo Gianmatteo Pica Raffaella Grasso Marino Clavio Micaela Bergamaschi Filippo Ballerini Anna Ghiso Chiara Ghiggi Laura Mitscheunig Germana Beltrami Antonia Cagnetta Luana Vignolo Maria Vita Lucchetti Sara Aquino Ivana Pierr | 2011 | Leukemia & Lymphoma2011,,10: | 1 |
| 7 | Nicotinamide phosphori- bosyhransferase as a target in inflammation -related disorders 显示文摘 | Montecueeo F Cea M Cagnetta A | 2013 | Curr Top Med Chem2013,13,23: | 1 |
| 8 | The role of the immune system in the physiopathology of osteoporosis 显示文摘 | Cagnetta V Patella V | 2012 | Clin Cases Miner Bone Metab2012,9,2: | 1 |
| 9 | The role of the immune system in the physiopathology of osteoporosis 显示文摘 | Cagnetta V Patella V | 2012 | Clin Cases Miner Bone Metab2012,9,2: | 1 |
| 10 | New insights into biology of chronic myeloid leukemia: implications in therapy显示文摘 | Cea M Cagnetta A Nencioni A | 2013 | Curr Cancer Drug Targets2013,13,7: | 1 |
| 11 | Evaluating treatment response of chronic myeloid leukemia:emerging science and technology显示文摘 | Cagnetta A Garuti A Marani C | 2013 | Curr Cancer Drug Targets2013,13,7: | 1 |
| 12 | Role of genotype-based approach in the clinical management of adult acute myeloid leukemia with normal cytogenetics显示文摘 | Antonia Cagnetta Sophia Adamia Chirag Acharya | 2014 | Leukemia Res2014,38,6: | 1 |
| 13 | Intracellular NAD+ depletion enhances bortezomib-induced anti-myeloma activity 显示文摘 | Cagnetta A Cea M Calimeri T | 2013 | Blood2013,122,7: | 1 |
| 14 | Construction of MoFs-based nanocomposite membranes for emerging organic contaminants abatement in water显示文摘Presence of emerging organic contaminants(EOCs)in water is one of the major threats to water safety.In recent decades,an increasing number of studies have investigated new approaches for their effective removal.Among them,metal-organic frameworks(MOFs)have_attracted increasing attention since their first development thanks to their tunable metal nodes and versatile,functional linkers.However,whether or not MOFs have a promising future for practical application in emerging contaminants-containing wastewater is debatabie.This review summarizes recent studies about the removal of EOCs using MOFs-related material.The synthesis strategies of both MOF particles and composites,including thin-film nanocomposite and mixed matrix membranes,are criticaily reviewed,as well as various characterization technologies.The application of the MOF-based composite membranes in adsorption,separation(nanofiltration and ultrafiltration),and catalytic degradation are discussed.Overall,literature survey shows that MOFs-based composite could play a crucial role in eliminating EOCs in the future.In particular,modified membranes that realize separation and degradation might be the most promising materials for such application. | Yuxin Lu Xiang Li Cagnetta Giovanni Bo Wang | 2023 | Frontiers of Environmental Science & Engineering2023,17,7: | 0 |
| 15 | Augmented hydrogen production by gasification of ball milled polyethylene with Ca(OH)2 and Ni(OH)2显示文摘Polymer thermal recycling for hydrogen production is a promising process to recover such precious element from plastic waste. In the present work a simple but efficacious high energy milling pretreatment is proposed to boost H2 generation during polyethylene gasification. The polymer is comilled with calcium and nickel hydroxides and then it is subjected to thermal treatment. Results demonstrate the key role played by the calcium hydroxide that significantly ameliorates hydrogen production. It reacts in solid state with the polyethylene to fonn directly carbonate and hydrogen. In this way, the CO2 is immediately captured in solid fonn, thus shifting the equilibrium toward H2 generation and obtaining high production rate (>25 L/mol CH2). In addition, high amounts of the hydroxide prevent excessive methane fonnation, so the gas product is almost pure hydrogen (~95%). | Giovanni Cagnetta Kunlun Zhang Qiwu Zhang Jun Huang Gang Yu | 2019 | Frontiers of Environmental Science & Engineering2019,13,1: | 0 |
| 16 | Solvent-free mechanochemical mild oxidation method to enhance adsorption properties of chitosan显示文摘Oxidation has been profitably utilized to improve some properties of chitosan.However,only solventbased oxidation procedures have been proposed so far,which are hardly feasible at industrial scale in an economic way because of product recovery cost.In this study,a solvent-free,rapid,and effective oxidation method is proposed.It is based on direct solid-state reaction between chitosan and oxidant powder in a mechanochemical reactor.Results prove that by short high energy ball milling(<3 h)it is possible to achieve diverse physicochemical modifications employing different reagents.Apart from polysaccharidic chain shortening,persulfate provokes high amorphization and induces formation of ketonic groups;percarbonate heightens deacetylation degree,preserving in part crystallinity;calcium peroxide merely deprotonates amino groups and increases amorphization degree.Adsorption tests with the azo-dye reactive red 2 show that adsorption capacity of chitosan co-milled with persulfate(974 mg/g milled product),which is the best performing adsorbent,is twice that of pristine chitosan,while adsorption rate is outstandingly boosted(125 times). | Mohammadtaghi Vakili Wen Qiu Giovanni Cagnetta Jun Huang Gang Yu | 2021 | Frontiers of Environmental Science & Engineering2021,15,6: | 0 |