16 research outputs found
Downstream optimization of fungal-based simultaneous saccharification and fermentation relevant to lignocellulosic ethanol production
- Author
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Antiinflammatory Therapy with Canakinumab for Atherosclerotic Disease
- Author
- A Abbate
- A Abhyankar
- A Adams
- A Agafina
- A Akyea-Djamson
- A Alan
- A Alfieri
- A Alfrey
- A Alvarisqueta
- A Amos
- A Anadiotis
- A Anneveldt
- A Antolick
- A Arthur
- A Aslam
- Abaci F
- Abdullakutty J
- Abhaichand R
- Abib E Jr
- Aboufakher R
- Abrantes J
- Abreu M
- Abulencia K
- Acampora D
- Acampora M
- Accini Mendoza Jl
- Aceto L
- Acevedo B
- Acevedo L
- Acheatel R
- Actis Mv
- Adams M
- Adjic Nc
- Affaki Gs
- Agarwal Dk
- Aggarwal Rk
- Agosta Gf
- Aguilar M
- Aguilar M
- Ahire N
- Ahmad I
- Ahmed Sh
- Ahn Y
- Aish B
- Aiub F
- Aiub J
- Ajax K
- Ajioka M
- Akai Y
- Akatova E
- Akrap B
- Al Joundi T
- Al-Khalili F
- Albisu J
- Alcalde Jm
- Alcide P
- Alfonso T
- Allen J
- Alllison Dc
- Almaliky T
- Amerena J
- Andersen K
- Andor M
- Angelova I
- Angiolillo D
- Anita S
- Anker Sd
- Antalik L
- Antonicelli R
- Aparicio Cv
- Apel T
- Apostolovic S
- Ara M
- Aragorn L
- Arango Jl
- Araujo Fonseca M
- Ardissino D
- Arenas Leon Jl
- Arevalo S
- Argiolas G
- Arif I
- Armas E
- Aron G
- Arora S
- Asafu-Adjaye N
- Ashcom T
- Ashford M
- Ashino K
- Asim Oktay Ao
- Assarsson E
- Ata B
- Ather N
- Atieh M
- Aull L
- Avalos V
- Avdonina N
- Awasthi Ak
- Axthelm C
- Ayala M
- Ayasse D
- Ayasse M
- Azizad M
- Azize Gm
- B Becker
- Baar M
- Babu R
- Backer T
- Badea C
- Baden M
- Baehl S
- Baek C
- Baeumer A
- Bagi Es
- Bai A
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- Bakhai A
- Bakker H
- Baksi A
- Baldin Mg
- Bali Hk
- Ballantyne C
- Ballmajo M
- Balode A
- Balukova E
- Bang Sa
- Banker D
- Banker K
- Baquero A
- Barbarash Ol
- Barbato E
- Barbosa E
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- Barreto M
- Barroso A
- Barroso W
- Bartkowiak A
- Bartosh L
- Bartuseviciene S
- Bashir K
- Baszak J
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- Bayram E
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- Diago M
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- Dickstein K
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- Dorogova I
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- Zieve F
- Zineldine A.
- Zirlik A
- Zucchetti C
- Publication venue
- 'Massachusetts Medical Society'
- Publication date
- 01/01/2017
- Field of study
Background: Experimental and clinical data suggest that reducing inflammation without affecting lipid levels may reduce the risk of cardiovascular disease. Yet, the inflammatory hypothesis of atherothrombosis has remained unproved. Methods: We conducted a randomized, double-blind trial of canakinumab, a therapeutic monoclonal antibody targeting interleukin-1β, involving 10,061 patients with previous myocardial infarction and a high-sensitivity C-reactive protein level of 2 mg or more per liter. The trial compared three doses of canakinumab (50 mg, 150 mg, and 300 mg, administered subcutaneously every 3 months) with placebo. The primary efficacy end point was nonfatal myocardial infarction, nonfatal stroke, or cardiovascular death. RESULTS: At 48 months, the median reduction from baseline in the high-sensitivity C-reactive protein level was 26 percentage points greater in the group that received the 50-mg dose of canakinumab, 37 percentage points greater in the 150-mg group, and 41 percentage points greater in the 300-mg group than in the placebo group. Canakinumab did not reduce lipid levels from baseline. At a median follow-up of 3.7 years, the incidence rate for the primary end point was 4.50 events per 100 person-years in the placebo group, 4.11 events per 100 person-years in the 50-mg group, 3.86 events per 100 person-years in the 150-mg group, and 3.90 events per 100 person-years in the 300-mg group. The hazard ratios as compared with placebo were as follows: in the 50-mg group, 0.93 (95% confidence interval [CI], 0.80 to 1.07; P = 0.30); in the 150-mg group, 0.85 (95% CI, 0.74 to 0.98; P = 0.021); and in the 300-mg group, 0.86 (95% CI, 0.75 to 0.99; P = 0.031). The 150-mg dose, but not the other doses, met the prespecified multiplicity-adjusted threshold for statistical significance for the primary end point and the secondary end point that additionally included hospitalization for unstable angina that led to urgent revascularization (hazard ratio vs. placebo, 0.83; 95% CI, 0.73 to 0.95; P = 0.005). Canakinumab was associated with a higher incidence of fatal infection than was placebo. There was no significant difference in all-cause mortality (hazard ratio for all canakinumab doses vs. placebo, 0.94; 95% CI, 0.83 to 1.06; P = 0.31). Conclusions: Antiinflammatory therapy targeting the interleukin-1β innate immunity pathway with canakinumab at a dose of 150 mg every 3 months led to a significantly lower rate of recurrent cardiovascular events than placebo, independent of lipid-level lowering. (Funded by Novartis; CANTOS ClinicalTrials.gov number, NCT01327846.
Effects of alirocumab on types of myocardial infarction: insights from the ODYSSEY OUTCOMES trial
- Author
- Abbas J
- Abbate A
- Abdullakutty J
- Abhyanakar AD
- Aboyans V
- Abrantes JAM
- Abu-Fadel M
- Acevedo M
- Adamkova V
- Adhyapak S
- Agarwal H
- Aggarwal R
- Aggarwal RK
- Aguirre A
- Ahmed H
- Ahremark U
- Ahuad Guerrero RA
- Aidar Ayoub JC
- Airaksinen JK
- Aitken D
- Akatova E
- Akhter F
- Ako J
- Akright L
- Akyea-Djamson A
- Al Joundi T
- Al-Windy NYY
- Alan D
- Alcocer Gamba MA
- Alexander JH
- Alexander K
- Alexandru TM
- Alings M
- Alonso Martin JJ
- Alvarisqueta AF
- Alves De Lima AE
- Amarasekera S
- Amarasena N
- Amir O
- Amlani M
- Amosova E
- Amuchastegui M
- Andersen K
- Andersen R
- Anderson J
- Ando K
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- Annam S
- Anscombe R
- Apostolovic SR
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- Arstall MA
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- Dahl C
- Dai K
- Dalby AJ
- Dalby AJ
- Danchin N
- Dandillaya R
- Daniels C
- Das S
- Davidovic G
- Davidsen F
- Davies R
- Davis W
- De Berrazueta Fernandez JR
- De Cesare NB
- De Leo A
- De Luca G
- De Mora Martin M
- De Pellegrin A
- De Salazar DIM
- de Santos MON
- de Silva HA
- de Souza JA
- De Wolf L
- Delarche N
- Deloatch S
- Demirtas M
- Denham D
- Devarapalli SK
- DeVore AD
- Diamantis S
- Diaz Fernandez JF
- Diaz A
- Diaz R
- Dickey S
- Dilic M
- Dimkovic S
- Dimov BI
- Dincic DV
- Ding C
- Dion D
- Dodic S
- Dombrowski K
- Doncovska S
- Dong S
- Dong Y
- Dorobantu M
- Dorsel T
- Dran RD
- Drexel H
- Drzewiecka A
- Ducas J
- Ducrocq G
- Duda N
- Dujardin K
- Dukat A
- Dulak E
- Dupuis R
- Durak-Nalbantic A
- Duronto EA
- Dzupina A
- Dzyak G
- Eagerton D
- Eapen Z
- East C
- Eaton C
- Ebrahim IO
- Edelberg JM
- Edes I
- Egorova L
- Eisenberg S
- Ekanayaka R
- El Shahawy M
- El-Ahdab F
- Elias M
- Eliaschewitz FG
- Elliott J
- Endsley P
- Eppinger A
- Erglis A
- Erglis A
- Ersanli M
- Fadlallah H
- Faes D
- Faggiano P
- Fairlamb J
- Fajardo Campos P
- Falukozy J
- Fang C-Y
- Fang W
- Fanghanel Salmon G
- Farhat N
- Farrar M
- Fausto Ovando SR
- Fazekas F
- Fazlibegovic E
- Feitosa GS
- Fell D
- Feng Y
- Fernandes Manenti ERF
- Fernandez Portales J
- Fernandez AM
- Fernandez M
- Fernando N
- Ferrari E
- Ferratini M
- Ferrolino A
- Filardi PP
- Fischer S
- Fishberg R
- Fisher D
- Fisher N
- Fisher R
- Florenzano F
- Flores E
- Flores REO
- Fong P
- Forgosh L
- Foster M
- Foster R
- Francis A
- Franek E
- Fras Z
- French WJ
- Friedman D
- Frost L
- Fu G
- Fuchs S
- Fuentes Jimenez F
- Fujii K
- Fujimoto K
- Fujinaga H
- Fulop P
- Fulwani MC
- Furukawa Y
- Galski T
- Galvani M
- Gapon L
- Garcia Brasca DF
- Garcia Castillo A
- Garcia Duran RO
- Garcia Lledo JA
- Garcia-Dorado D
- Gardner G
- Garrahy PJ
- Garrido M
- Garza Ruiz JA
- Gavish D
- Ge J
- Gelormini J
- Gerber J
- Gerber R
- Ghitis A
- Ghlonti R
- Gibson P
- Gielen S
- Giesler G
- Gil-Extremera B
- Gilbert JM
- Gillespie E
- Gilmore R
- Gimple L
- Giordano JA
- Giorgeto FE
- Gislason G
- Giuliano ME
- Gniot J
- Goch A
- Goloborodko B
- Gomez Vilamajo OA
- Gonsorcik J
- Gonzales RJV
- Gonzalez Diaz B
- Gonzalez Salas LG
- Gonzalez-Juanatey C
- Gonzalez-Juanatey JR
- Goodman SG
- Goodman SG
- Gordeev I
- Gordienko A
- Gorny J
- Gosselin G
- Gosselink ATM
- Gotcheva NN
- Gotcheva NN
- Govinda RA
- Goyal NK
- Gremmler U
- Grewal JS
- Griffiths H
- Gring C
- Groenemeijer BE
- Groutars RGEJ
- Guardigli G
- Guerrero De Leon M
- Guha S
- Gullestad L
- Guneri S
- Guneri S
- Guo Y
- Gurevich V
- Gusi Tragant G
- Guzman PN
- Haddad T
- Hagstrom E
- Hagstrom E
- Hahalis PIG
- Halabi M
- Halcox J
- Hald F
- Haldis T
- Hall J
- Halvorsen S
- Hameed A
- Haniffa R
- Hanotin C
- Hansen O
- Haraguchi T
- Harding S
- Harkut P
- Harrington RA
- Harris B
- Harris B
- Hart H
- Hata Y
- Hattler B
- Hedman A
- Heidenreich L
- Heinc P
- Heitzer T
- Hemetsberger R
- Henderson D
- Henkin Y
- Herath JI
- Herazo AS
- Hermans K
- Hermans WRM
- Hernandez HAA
- Herrman JPR
- Hersbach FMRJ
- Hess CN
- Higashikata T
- Higuera JD
- Hii CLS
- Hirayama A
- Hirooka K
- Hlatky MA
- Hoag G
- Hodes Z
- Hoffer E
- Hoffman D
- Hong T
- Hoogslag PAM
- Hoppe U
- Horak D
- Horowitz J
- Horvath I
- Horwitz P
- Hove JD
- Hrabar AD
- Hranai M
- Hsieh I-C
- Huang L
- Huang S
- Huang T-Y
- Huang W
- Huber K
- Huidobro L
- Huikuri H
- Hunter J
- Hurtig U
- Hussein O
- Huynh T
- Hwang J-J
- II TC
- III DG
- III KG
- Ilic S
- Ilieva-Pandeva KA
- Ince C
- Iniguez A
- Investigators ODYSSEYOUTCOMES
- Iqbal SMR
- Irimpen A
- Istratoaie O
- Ito K
- Ivanov IG
- Ivanova R
- Ivanovic N
- Iyengar SS
- Izzo M
- Jacoby D
- Jafar Z
- Jaffrani N
- Jain D
- Janik M
- Janosik D
- Jaramillo N
- Jatin FGM
- Jaworska K
- Jayawardena J
- Jensen SA
- Jensen SA
- Jeong MH
- Jeppesen J
- Jeserich M
- Jiang W
- Jintapakorn W
- Johansen PB
- Jonas M
- Jones WS
- Jordan JD
- Jortveit J
- Joshi AB
- Joshi P
- Jovin I
- Jr CE
- Jr HW
- Jr LC
- Jr MJ
- Jr PW
- Jr RW
- Jr SJ
- Jr SJF
- Jr WD
- Jujjuru S
- Jukema JW
- Juonala M
- Jure HO
- Jurgaitiene R
- Kadr H
- Kaewsuwanna P
- Kahali D
- Kaikkonen K
- Kaiser S
- Kalashetti S
- Kalil R
- Kamensky G
- Kamiya H
- Kandasamy B
- Kapin T
- Kaplan R
- Kapp IE
- Karalis I
- Karlsberg R
- Karna S
- Karpenko O
- Karpenko Y
- Karpov Y
- Karpov Y
- Kartalis A
- Kasim S
- Katona A
- Katsuda Y
- Katz A
- Kaucak V
- Kavaliauskiene R
- Kawasaki T
- Ke Y
- Keating F
- Kedev S
- Keen W
- Kehasukcharoen W
- Kelsey SF
- Kerkar P
- Khabeishvili G
- Khaira AS
- Khaisheva L
- Khan A
- Khan A
- Khan M
- Khasanov N
- Khintibidze I
- Khurana S
- Kibarskis A
- Kichukov KN
- Killat H
- Kim C
- Kim HS
- Kim MH
- Kim S-H
- Kimmelstiel C
- Kimura K
- Kimura T
- King M
- Kirma C
- Kishi K
- Kiss RG
- Kiss RG
- Kiviniemi T
- Kjovkaroski A
- Klancke K
- Klantsa A
- Klausen IC
- Kline G
- Klutstein M
- Knickelbine T
- Knowles JW
- Knutson T
- Koba S
- Kobalava Z
- Kobayashi J
- Koike A
- Koldas L
- Kolls BJ
- Kondo NI
- Kong DF
- Kopytsya M
- Koren M
- Kormann A
- Kornder J
- Kornowski R
- Korol M
- Kosinski E
- Kosmachova E
- Kostarska-Srokosz E
- Kostis J
- Kotha P
- Kouz S
- Kovalskyi I
- Kozuma K
- Krasowski W
- Krawczyk J
- Krichmar P
- Kristensen KS
- Kubica J
- Kubilius R
- Kuchar J
- Kuhlman P
- Kultursay H
- Kumar A
- Kumar P
- Kumbla M
- Kumkumian G
- Kuo J-Y
- Kurian J
- Kushnir M
- Kutniy O
- Kyiak Y
- Labroo A
- Lai C
- Lai W-T
- Landzberg J
- Larry J
- Larsen J
- Laucevicius A
- Laufs U
- Laxson D
- Lazov PV
- Leaes PE
- Leclercq F
- Lee K
- Lee K
- Lefevre T
- Leggewie S
- Lehman SJ
- Leimbach W
- Lekakis J
- Leon RPC
- Leonardi S
- Leone A
- Lepage S
- Lepor N
- Leshchuk O
- Lester FM
- Leung R
- Levy T
- Li H
- Li J
- Li X
- Li Y
- Lianopoulos E
- Liberman A
- Liberopoulos E
- Liberopoulos E
- Libov I
- Licciardello G
- Lieber I
- Liem AAH
- Liew HB
- Lillis L
- Lin J
- Lin W
- Lin WH
- Lin X
- Lindsey J
- Linhart A
- Link C
- Lip GYH
- Lipar L
- Lipko JA
- Liu M-E
- Liu S
- Llamas Esperon GA
- Loma-Osorio Rincon P
- Lomakin NV
- Lomholdt JD
- Lominadze Z
- Lopes RD
- Lopes RD
- Lopes RD
- Lopes RD
- Lopez Rosas E
- Lopez RB
- Lopez-Jaramillo P
- Lorenzatti AJ
- Lotan C
- Lottering H
- Lotun K
- Loussararian A
- Love M
- Lozada HJG
- Lozance N
- Lubinski A
- Luciardi HL
- Lui H
- Luis Zamorano J
- Luo Z
- Lupkovics G
- Lupovitch S
- Luquez HA
- Lyamina N
- Lysek R
- M Escudier J
- MacDonald P
- Macdonell A
- Mach F
- Machado L
- Machova V
- Mackinnon IJ
- Mahaffey KW
- Mahajan A
- Mahal S
- Maia LN
- Majercak I
- Makotoko EM
- Malhotra V
- Malik A
- Malozzi C
- Malynovsky Y
- Manakshe GV
- Mannucci JEB
- Mano T
- Manolis A
- Mansourati J
- Marais HJ
- Marcus J
- Marin Neto JA
- Marin F
- Markov DT
- Markov V
- Maron DJ
- Martinez Sanchez CR
- Martins D
- Martsin K
- Marusincova I
- Marx N
- Marx N
- Marx R
- Maskon O
- Matas Pericas L
- Matei AV
- Mathews R
- Mathur A
- Mathur R
- Matiga G
- May O
- May W
- Mayurathan G
- Mazur J
- Mcclure S
- Mcgough M
- Mclaurin B
- Medrano Allende JC
- Mehta RH
- Mehta S
- Meloni C
- Mendis S
- Mendonca C
- Mendoza JLA
- Mentz RJ
- Merkely B
- Michalaros YL
- Michaud N
- Michishita I
- Micko K
- Midzic Z
- Miguel SAN
- Miklaszewicz B
- Militaru C
- Mincheva VM
- Minescu B
- Mintale I
- Mirek-Bryniarska E
- Misonis N
- Moccetti T
- Mody F
- Mohamed WMIW
- Mohart AE
- Molchanova O
- Mollov MN
- Montalescot G
- Montana OR
- Monteiro MR
- Monteiro P
- Montenegro Valdovinos PC
- Montenegro Valdovinos PC
- Moodley R
- Morais J
- Morales DD
- Moran J
- Moreira HG
- Morel O
- Moriarty A
- Moriarty PM
- Moriarty PM
- Morino Y
- Moris De La Tassa C
- Morisset A
- Moryusef A
- Mosseri M
- Mostovoy Y
- Motovska Z
- Moura Jorge JC
- Mourtzinis G
- Mudawi T
- Mueller C
- Muenzel T
- Mulkay A
- Muller C
- Muller G
- Munk PS
- Munusamy V
- Murin J
- Muslibegovic A
- Musumeci G
- Muthusamy R
- Mutlu B
- Mynhardt JH
- Myshanych H
- Nacoud Ackar A
- Nager P
- Nagy L
- Nahhas A
- Nani S
- Naplava R
- Natour M
- Navarro NCL
- Nelson W
- Neuenschwander F
- Nicol P
- Nicolau JC
- Nielsen PK
- Nielsen T
- Nieminen MS
- Nigro F
- Nijmeijer R
- Nikolaev K
- Nikolov FP
- Nikolsky E
- Nishibe A
- Nociar J
- Nogareda G
- Norkiene S
- Novaretto LP
- Novo S
- Novoa F
- Novotny V
- Nowins R
- Nunez Fragoso JC
- Nunez CAZ
- Nygard O
- O'Donnell PJ
- Oklukar J
- Olivares C
- Oliver R
- Olsson AG
- Omran H
- Ong HY
- Ong TK
- Ono Y
- Oomen A
- Oomman A
- Orlikova O
- Osokina N
- Ostadal P
- Paganelli F
- Pagava Z
- Palimkar P
- Palka J
- Palmer B
- Palvarini M
- Panchal V
- Pancholy S
- Pandey A
- Pandurangi U
- Parada JC
- Parepa IR
- Park HS
- Park HT
- Parkhomenko A
- Parkhomenko A
- Parthenakis PIF
- Pasquini J
- Patange A
- Patel CB
- Paterlini GA
- Patil SN
- Patki N
- Patocchi CA
- Patsilinakos S
- Pawlowicz L
- Pearce S
- Pecin I
- Pella D
- Peng D
- Pepine C
- Pereira E
- Pereira HH
- Pereira SB
- Perez Rios JA
- Perez ESS
- Perez L
- Perkins L
- Perlmutter N
- Pesant Y
- Petranov SL
- Petrulioniene Z
- Piatti P
- Picone M
- Piepiorka M
- Pillay T
- Pimentel Filho P
- Pincetti C
- Piovaccari G
- Pirenne B
- Piyayotai D
- Plaza Perez I
- Podoleanu CGC
- Podpera I
- Poh K-K
- Pojskic B
- Pollock S
- Pontaga N
- Pope T
- Pordy R
- Porthan K
- Porwal S
- Posio P
- Pothineni RB
- Potthoff S
- Poulsen SH
- Povolny P
- Povsic TJ
- Povzun A
- Precoma DB
- Premchand RK
- Prieto J-C
- Probst V
- Proddutur NR
- Prokhorov A
- Puccioni E
- Puri S
- Purow J
- Putnikovic B
- Puymirat E
- Qu B
- Radin M
- Radovanovic S
- Raev DH
- Raffel O
- Raffo CA
- Raghuraman B
- Rahman A
- Raisinghani A
- Rajapaksha A
- Ramos Lopez GA
- Ranadive N
- Ranjith N
- Rao S
- Rasmanis G
- Rauch-Kroehnert U
- Raungaard B
- Ray KK
- Ray M
- Rech R
- Reiner Z
- Reis G
- Reis HJL
- Rensing BJWM
- Reshetko O
- Reshotko D
- Reuter H
- Reynolds T
- Rha S
- Rider J
- Rishko M
- Ristic AD
- Ritt LEF
- Roberts-Thomson P
- Robinson S
- Rodes-Cabau J
- Rodriguez De Leon ER
- Roe MT
- Rogelio G
- Rogers JF
- Rokyta R
- Romeo S
- Ronner E
- Roosen J
- Rosenberg M
- Rosenschein U
- Rosenson R
- Rossi P
- Rossi PRF
- Rosu D
- Rouleau J-L
- Rozenman Y
- Rubenstein H
- Rudenko A
- Rudenko L
- Ruiz RLF
- Saaiman JA
- Saathe S
- Saavedra SS
- Sabatino K
- Sabbah E
- Sader M
- Sakagami S
- Sakalyte G
- Sakamoto T
- Salcido Vazquez E
- Salvioni A
- Saminski K
- Sandhu M
- Sansanayudh N
- Santharaj W
- Saporito W
- Sarkar D
- Sarvan M
- Sassone SA
- Sastravaha K
- Savard D
- Sawhney J
- Schaeufele T
- Schellenberg D
- Schiavi LB
- Schiele F
- Schifferdecker B
- Schmalfuss C
- Schmidberg JM
- Schmidt E
- Schuchard T
- Schwartz GG
- Schwartz M
- Schwartz S
- Sciborski R
- Scott D
- Sebastian PJ
- Seferovic P
- Seixo F
- Selecky J
- Senaratne M
- Senaratne V
- Sethi S
- Shaburishvili T
- Shah AV
- Shah BR
- Shah V
- Shalaev S
- Sharman D
- Shaw J
- Shechter M
- Shehova-Yankova NS
- Sheldon W
- Sherwood MW
- Shetty S
- Shi X
- Shimizu M
- Shinde R
- Shinke T
- Shogenov Z
- Shou X
- Shoukfeh M
- Shustov S
- Shvarts Y
- Sijbrands EJG
- Silva PGMDB
- Silva RP
- Silva SIB
- Silveira JA
- Silver K
- Simaitis A
- Sime I
- Simic D
- Simonis G
- Simoons ML
- Singal D
- Singh N
- Sinha D
- Sinnaeve P
- Sionis D
- Sirisena T
- Siu DCW
- Skonieczny G
- Skorski M
- Skoumas I
- Slapikas R
- Smik R
- Soggia AP
- Soonfuang W
- Soopold S
- Soots M
- Soran H
- Soroka E
- Sotnikova T
- Sousa L
- Souza WKSB
- Soward A
- Sparby JA
- Speirs S
- Spinar J
- Sporn D
- Spriggs D
- Sritara P
- Sritara P
- Sritara P
- Staneta P
- Stanislavchuk M
- Stankovic A
- Starmer G
- Stasek J
- Stasiewski A
- Steg PG
- Steg PG
- Steiner S
- Stellbrink C
- Stewart R
- Stojic S
- Stone J
- Storey R
- Strain J
- Stratmann M
- Strbova J
- Strelnieks A
- Striekwold H
- Stringfellow K
- Stryuk R
- Su G
- Su X
- Suarez Otero R
- Subkovas E
- Sudnik W
- Sugino H
- Suh D
- Sujjavanich D
- Sukonthasarn A
- Suligoj NC
- Sumner A
- Sun Y
- Sundelin T
- Sundram PS
- Suryapranata H
- Sussex B
- Svab P
- Sy RAG
- Sy RG
- Sydow K
- Szarek M
- Szpajer M
- Taguchi S
- Takahashi T
- Takata T
- Takeda Y
- Tan E
- Tashchuk V
- Tasic N
- Taskinen M-R
- Taurio J
- Ternouth I
- Terzic I
- Tesloianu DN
- Tespili M
- Teufel E
- Thakkar M
- Thew S
- Ticona JRC
- Tirador L
- Tissera N
- Todorov GV
- Toma M
- Tomala T
- Tonnessen G
- Torstensson I
- Toursarkissian N
- Tov N
- Tretyakova TV
- Trevelyan J
- Triana MAU
- Tricoci P
- Troquay RPT
- Trotter C
- Tsai W-C
- Tse H-F
- Tseluyko V
- Tumbev HS
- Tunon Fernandez J
- Tunon J
- Turgeman Y
- Turi T
- Turk S
- Tyrenko VV
- Tzekova ML
- Ueda Y
- Uehara H
- Ueng K-C
- Ungi I
- Ural E
- Ushakov O
- Utsu N
- Vahula V
- Vakaluyk I
- Valgimigli M
- Vallejo GS
- Vallejos JA
- Van Der Wal RMA
- Van Der Zwaan CC
- van Diepen SFP
- Van Huysduynen-Monraats PSH
- Van Zyl LJ
- Vardi G
- Varleta P
- Vatutin M
- Vedere A
- Vejar M
- Velasquez JRD
- Velcheva ES
- Verdel GJE
- Vered Z
- Vervoort G
- Vico ML
- Vida M
- Videbaek L
- Vidotti MH
- Vidovich M
- Viergever EP
- Viigimaa M
- Vijay N
- Vijayaraghavan R
- Vikman S
- Viktorova I
- Violini R
- Vishnevsky AY
- Vizel S
- Vo A
- Voeller H
- Voevoda MI
- Vogel R
- Vohra R
- Vora K
- Voyce S
- Vrolix MCM
- Vulic D
- Vuurmans T
- Wada A
- Waider W
- Waisman GD
- Waites JH
- Wali A
- Walichiewicz PM
- Waltenberger J
- Waltman J
- Wang J
- Wang J
- Wang J
- Wattanakit K
- Wei M
- Weidinger F
- Weil J
- Weintraub H
- Weissbrodt M
- Welka S
- Welker J
- Wells T
- Werner N
- Whitaker J
- White HD
- White L
- White M
- Wiersma JJ
- Wilkins G
- Wilkinson P
- Willems FF
- Wilson MD
- Winkelmann B
- Wiseman A
- Witt N
- Wlodarczak A
- Wojewoda P
- Wollaert B
- Wong Y-K
- Wongpraparut N
- Worner Diz F
- Wright S
- Xatzitolios A
- Xavier D
- Xenakis M
- Xu B
- Xu D
- Xu X
- Yagensky A
- Yakushin S
- Yan AT-K
- Yan BPY
- Yanez M
- Yang E
- Yang X
- Yang X
- Yao Z
- Yazdani S
- Yerra SK
- Yin W-H
- Yong H
- Yoon JH
- Younis L
- Yu Y
- Yuan Z
- Yusoff K
- Zahger D
- Zaidman CJ
- Zainea M
- Zaman A
- Zeiher AM
- Zhang W
- Zhang X
- Zhang Z
- Zhao X
- Zheng Y
- Zheng Z
- Zhou Y
- Zhu H
- Zirlik A
- Zizka J
- Zong W
- Zrazhevsky K
- Zuniga JDH
- Zurakowski A
- Zuran I
- Zweiker R
- Publication venue
- 'Oxford University Press (OUP)'
- Publication date
- 01/01/2019
- Field of study
Aims The third Universal Definition of Myocardial Infarction (MI) Task Force classified MIs into five types: Type 1, spontaneous; Type 2, related to oxygen supply/demand imbalance; Type 3, fatal without ascertainment of cardiac biomarkers; Type 4, related to percutaneous coronary intervention; and Type 5, related to coronary artery bypass surgery. Low-density lipoprotein cholesterol (LDL-C) reduction with statins and proprotein convertase subtilisin–kexin Type 9 (PCSK9) inhibitors reduces risk of MI, but less is known about effects on types of MI. ODYSSEY OUTCOMES compared the PCSK9 inhibitor alirocumab with placebo in 18 924 patients with recent acute coronary syndrome (ACS) and elevated LDL-C (≥1.8 mmol/L) despite intensive statin therapy. In a pre-specified analysis, we assessed the effects of alirocumab on types of MI. Methods and results Median follow-up was 2.8 years. Myocardial infarction types were prospectively adjudicated and classified. Of 1860 total MIs, 1223 (65.8%) were adjudicated as Type 1, 386 (20.8%) as Type 2, and 244 (13.1%) as Type 4. Few events were Type 3 (n = 2) or Type 5 (n = 5). Alirocumab reduced first MIs [hazard ratio (HR) 0.85, 95% confidence interval (CI) 0.77–0.95; P = 0.003], with reductions in both Type 1 (HR 0.87, 95% CI 0.77–0.99; P = 0.032) and Type 2 (0.77, 0.61–0.97; P = 0.025), but not Type 4 MI. Conclusion After ACS, alirocumab added to intensive statin therapy favourably impacted on Type 1 and 2 MIs. The data indicate for the first time that a lipid-lowering therapy can attenuate the risk of Type 2 MI. Low-density lipoprotein cholesterol reduction below levels achievable with statins is an effective preventive strategy for both MI types.For complete list of authors see http://dx.doi.org/10.1093/eurheartj/ehz299</p
Effect of alirocumab on mortality after acute coronary syndromes. An analysis of the ODYSSEY OUTCOMES randomized clinical trial
- Author
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- Abbate A
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- Abhyanakar AD
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- Zong W
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- Zweiker R
- Publication venue
- 'Ovid Technologies (Wolters Kluwer Health)'
- Publication date
- 04/01/2019
- Field of study
Background: Previous trials of PCSK9 (proprotein convertase subtilisin-kexin type 9) inhibitors demonstrated reductions in major adverse cardiovascular events, but not death. We assessed the effects of alirocumab on death after index acute coronary syndrome. Methods: ODYSSEY OUTCOMES (Evaluation of Cardiovascular Outcomes After an Acute Coronary Syndrome During Treatment With Alirocumab) was a double-blind, randomized comparison of alirocumab or placebo in 18 924 patients who had an ACS 1 to 12 months previously and elevated atherogenic lipoproteins despite intensive statin therapy. Alirocumab dose was blindly titrated to target achieved low-density lipoprotein cholesterol (LDL-C) between 25 and 50 mg/dL. We examined the effects of treatment on all-cause death and its components, cardiovascular and noncardiovascular death, with log-rank testing. Joint semiparametric models tested associations between nonfatal cardiovascular events and cardiovascular or noncardiovascular death. Results: Median follow-up was 2.8 years. Death occurred in 334 (3.5%) and 392 (4.1%) patients, respectively, in the alirocumab and placebo groups (hazard ratio [HR], 0.85; 95% CI, 0.73 to 0.98; P=0.03, nominal P value). This resulted from nonsignificantly fewer cardiovascular (240 [2.5%] vs 271 [2.9%]; HR, 0.88; 95% CI, 0.74 to 1.05; P=0.15) and noncardiovascular (94 [1.0%] vs 121 [1.3%]; HR, 0.77; 95% CI, 0.59 to 1.01; P=0.06) deaths with alirocumab. In a prespecified analysis of 8242 patients eligible for ≥3 years follow-up, alirocumab reduced death (HR, 0.78; 95% CI, 0.65 to 0.94; P=0.01). Patients with nonfatal cardiovascular events were at increased risk for cardiovascular and noncardiovascular deaths (P<0.0001 for the associations). Alirocumab reduced total nonfatal cardiovascular events (P<0.001) and thereby may have attenuated the number of cardiovascular and noncardiovascular deaths. A post hoc analysis found that, compared to patients with lower LDL-C, patients with baseline LDL-C ≥100 mg/dL (2.59 mmol/L) had a greater absolute risk of death and a larger mortality benefit from alirocumab (HR, 0.71; 95% CI, 0.56 to 0.90; Pinteraction=0.007). In the alirocumab group, all-cause death declined wit h achieved LDL-C at 4 months of treatment, to a level of approximately 30 mg/dL (adjusted P=0.017 for linear trend). Conclusions: Alirocumab added to intensive statin therapy has the potential to reduce death after acute coronary syndrome, particularly if treatment is maintained for ≥3 years, if baseline LDL-C is ≥100 mg/dL, or if achieved LDL-C is low. Clinical Trial Registration: URL: https://www.clinicaltrials.gov. Unique identifier: NCT01663402
Metabolism of d-xylose in Schizosaccharomyces pombe cloned with a xylose isomerase gene
- Author
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
In Vitro Manipulation of Slash Pine (Pinus Elliottii)
- Author
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/1988
- Field of study
Alternative splicing and genetic diversity of the white collar-1 (wc-1) gene in cereal Phaeosphaeria pathogens
- Author
- A Chini
- A Malkus
- A Nourani
- AE House
- AJ Lopez
- BM Cooke
- Chun-Chi Chou
- CJ Webb
- CL Wang
- CM Romfo
- DL Black
- DM Kupfer
- E Kim
- E Reszka
- Ericka Yen-Hsin Chiu
- GR Teakle
- HS Chung
- JR Fortwendel
- K Káldi
- K Lee
- K Ogura
- KW Tsai
- Ling-Yan Gao
- LR Devireddy
- M Aebi
- M Stankovich
- M Vidaud
- MJ Muñoz
- N Saitou
- P Ballario
- P Ballario
- P Cheng
- Peter P. Ueng
- Pi-Fang Linda Chang
- PP Ueng
- PS Solomon
- Qijian Song
- RA Prade
- SK Crosthwaite
- SM Mount
- Wei Wu
- Y Iida
- Ying-Hong Lin
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Fermentation of xylose and hemicellulose hydrolysates by an ethanol-adapted culture ofBacteroides polypragmatus
- Author
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Isolation of crystalline carbene-stabilized P2-radical cations and P2-dications
- Author
- A Armstrong
- A Igau
- A Schafer
- AE Reed
- AJ Arduengo III
- AJ Arduengo III
- B Tumanskii
- Bruno Donnadieu
- C Samojłowicz
- CA Dyker
- CA Dyker
- D Enders
- FE Hahn
- GD Frey
- Gernot Frenking
- Guy Bertrand
- JCY Lin
- JD Masuda
- JD Masuda
- M Alcarazo
- M Geoffroy
- M Scheer
- N Marion
- NE Kamber
- O Back
- Olivier Back
- P Agarwal
- Pattiyil Parameswaran
- PP Power
- PP Power
- R Tonner
- RH Grubbs
- S Díez-González
- S Ito
- S Loss
- S Marque
- SH Ueng
- SL Hinchley
- T Matsumoto
- T Sasamori
- V Lavallo
- V Lavallo
- X Zeng
- Y Zhao
- YZ Wang
- YZ Wang
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Isolation and characterization of the Pichia stipitis xylitol dehydrogenase gene, XYL2, and construction of a xylose-utilizing Saccharomyces cerevisiae transformant
- Author
- A Kotyk
- A Toivola
- AL Does
- AV Sarthy
- B Hohn
- C Verduyn
- C-S Gong
- C-S Gong
- CA Batt
- E Bernt
- F Sanger
- G Halliwell
- H Dellweg
- H Towbin
- H Zalkin
- H-O Beutler
- HU Bergmeyer
- J Hagedorn
- J Ramos
- JA Barnett
- JL Bennetzen
- JR Broach
- K Skoog
- KS Zaret
- LF Bisson
- M Ciriacy
- M Johnston
- M Kozak
- M Rizzi
- MJ Dobson
- MS Blake
- NJ Alexander
- NJ Proudfoot
- OH Wieland
- PM Bruinenberg
- PM Bruinenberg
- PM Bruinenberg
- PP Ueng
- PY Wang
- R Amore
- R Hamilton
- R Lagunas
- RC Mierendorf
- RK Wierenga
- RK Wierenga
- S Henikoff
- S Zamenhoff
- SG Kilian
- T Maniatis
- T Senac
- TV Huynh
- TW Jeffries
- TW Jeffries
- U Gubler
- UK Laemmli
- VP Cirillo
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/1990
- Field of study