107 research outputs found
Preventing germ cell death by inactivating aryl hydrocarbon receptor (AHR)
- Publication venue
- Digital Commons@Becker
- Publication date
- 01/01/2016
- Field of study
Mcl-1 is a key regulator of the ovarian reserve
- Author
- Publication venue
- Digital Commons@Becker
- Publication date
- 01/01/2015
- Field of study
A majority of ovarian follicles are lost to natural death, but the disruption of factors involved in maintenance of the oocyte pool results in a further untimely follicular depletion known as premature ovarian failure. The anti-apoptotic B-cell lymphoma 2 (Bcl-2) family member myeloid cell leukemia-1 (MCL-1) has a pro-survival role in various cell types; however, its contribution to oocyte survival is unconfirmed. We present a phenotypic characterization of oocytes deficient in Mcl-1, and establish its role in maintenance of the primordial follicle (PMF) pool, growing oocyte survival and oocyte quality. Mcl-1 depletion resulted in the premature exhaustion of the ovarian reserve, characterized by early PMF loss because of activation of apoptosis. The increasingly diminished surviving cohort of growing oocytes displayed elevated markers of autophagy and mitochondrial dysfunction. Mcl-1-deficient ovulated oocytes demonstrated an increased susceptibility to cellular fragmentation with activation of the apoptotic cascade. Concomitant deletion of the pro-apoptotic Bcl-2 member Bcl-2-associated X protein (Bax) rescued the PMF phenotype and ovulated oocyte death, but did not prevent the mitochondrial dysfunction associated with Mcl-1 deficiency and could not rescue long-term breeding performance. We thus recognize MCL-1 as the essential survival factor required for conservation of the postnatal PMF pool, growing follicle survival and effective oocyte mitochondrial function
Improved Insulin Sensitivity by GLUT12 Overexpression in Mice
- Author
- Publication venue
- American Diabetes Association
- Publication date
- Field of study
BRAF mutation is not predictive of long-term outcome in papillary thyroid carcinoma
- Author
- Publication venue
- Digital Commons@Becker
- Publication date
- 01/01/2015
- Field of study
The BRAF mutation occurs commonly in papillary thyroid carcinoma (PTC). Previous investigations of its utility to predict recurrence-free survival (RFS) and disease-specific survival (DSS) have reported conflicting results and its role remains unclear. The purpose of this retrospective study was to determine the incidence of the BRAF mutation and analyze its relationship to clinicopathologic risk factors and long-term outcomes in the largest, single-institution American cohort to date. BRAF mutational status was determined in 508 PTC patients using RFLP analysis. The relationships between BRAF mutation status, patient and tumor characteristics, RFS, and DSS were analyzed. The BRAF mutation was present in 67% of patients. On multivariate analysis, presence of the mutation predicted only for capsular invasion (HR, 1.7; 95% CI, 1.1â2.6), cervical lymph node involvement (HR, 1.7; 95% CI, 1.1â2.7), and classic papillary histology (HR, 1.8; 95% CI 1.1â2.9). There was no significant relationship between the BRAF mutation and RFS or DSS, an observation that was consistent across univariate, multivariate, and KaplanâMeier analyses. This is the most extensive study to date in the United States to demonstrate that BRAF mutation is of no predictive value for recurrence or survival in PTC. We found correlations of BRAF status and several clinicopathologic characteristics of high-risk disease, but limited evidence that the mutation correlates with more extensive or aggressive disease. This analysis suggests that BRAF is minimally prognostic in PTC. However, prevalence of the BRAF mutation is 70% in the general population, providing the opportunity for targeted therapy
The Ki67 index a prognostic marker in medullary thyroid carcinoma
- Author
- Publication venue
- Nature Publishing Group
- Publication date
- Field of study
Mutations in PIK3CA are infrequent in neuroblastoma
- Author
- A Kimmelman
- A Rangarajan
- AB Vojtek
- Brian T Morgan
- C Bouchard
- CM D'Cruz
- CM Ireland
- CS Hackett
- DK Broderick
- G Garcia-Rostan
- Gl Evan
- GM Brodeur
- H Davies
- H Rincon-Arano
- I The
- IG Campbell
- J Luo
- J Skinner
- JF Moley
- JL Bos
- JW Lee
- K Ballas
- LH Saal
- M Bentires-Alj
- M Johnson
- MD Hogarty
- Michael D Hogarty
- P Rodriguez-Viciana
- Pavel Mazanek
- PM Thompson
- Q Yang
- R Sears
- RC Sears
- RC Seeger
- RN Eisenman
- S Yaari
- T Martinsson
- Vincent Dam
- W Link
- WA Weiss
- WA Weiss
- Y Samuels
- Y Samuels
- YP Mosse
- YY Ma
- Publication venue
- BioMed Central
- Publication date
- 01/01/2006
- Field of study
BACKGROUND: Neuroblastoma is a frequently lethal pediatric cancer in which MYCN genomic amplification is highly correlated with aggressive disease. Deregulated MYC genes require co-operative lesions to foster tumourigenesis and both direct and indirect evidence support activated Ras signaling for this purpose in many cancers. Yet Ras genes and Braf, while often activated in cancer cells, are infrequent targets for activation in neuroblastoma. Recently, the Ras effector PIK3CA was shown to be activated in diverse human cancers. We therefore assessed PIK3CA for mutation in human neuroblastomas, as well as in neuroblastomas arising in transgenic mice with MYCN overexpressed in neural-crest tissues. In this murine model we additionally surveyed for Ras family and Braf mutations as these have not been previously reported. METHODS: Sixty-nine human neuroblastomas (42 primary tumors and 27 cell lines) were sequenced for PIK3CA activating mutations within the C2, helical and kinase domain "hot spots" where 80% of mutations cluster. Constitutional DNA was sequenced in cases with confirmed alterations to assess for germline or somatic acquisition. Additionally, Ras family members (Hras1, Kras2 and Nras) and the downstream effectors Pik3ca and Braf, were sequenced from twenty-five neuroblastomas arising in neuroblastoma-prone transgenic mice. RESULTS: We identified mutations in the PIK3CA gene in 2 of 69 human neuroblastomas (2.9%). Neither mutation (R524M and E982D) has been studied to date for effects on lipid kinase activity. Though both occurred in tumors with MYCN amplification the overall rate of PIK3CA mutations in MYCN amplified and single-copy tumors did not differ appreciably (2 of 31 versus 0 of 38, respectively). Further, no activating mutations were identified in a survey of Ras signal transduction genes (including Hras1, Kras2, Nras, Pik3ca, or Braf genes) in twenty-five neuroblastic tumors arising in the MYCN-initiated transgenic mouse model. CONCLUSION: These data suggest that activating mutations in the Ras/Raf-MAPK/PI3K signaling cascades occur infrequently in neuroblastoma. Further, despite compelling evidence for MYC and RAS cooperation in vitro and in vivo to promote tumourigenesis, activation of RAS signal transduction does not constitute a preferred secondary pathway in neuroblastomas with MYCN deregulation in either human tumors or murine models
Mitochondrial Dysfunction and Apoptosis in Cumulus Cells of Type I Diabetic Mice
- Author
- A Barrientos
- A Frolova
- A Gross
- A Wyman
- AE Civitarese
- AE Frazier
- AH Wyllie
- AM Lezza
- AM Ratchford
- AM Ratchford
- Antonina I. Frolova
- AS Chang
- B Paramo
- BN Finck
- C Bonnard
- C Udawatte
- CC Chan
- D Bach
- DB Seifer
- DC Chan
- DF Albertini
- DF Suen
- DJGV Voet
- DP Kelly
- DR Green
- DR Green
- DW Ethell
- DW Park
- Erica Schoeller
- F Diaz
- F Legros
- F Malka
- G Solaini
- H Chen
- J Lin
- J Ramalho-Santos
- J Van Blerkom
- J Wang
- JD Biggers
- JS Wadia
- K Nakahara
- K Sugiura
- Katie Adastra
- Kelle H. Moley
- KH Moley
- KJ Hutt
- KS Lee
- M Doblado
- M Idil
- M Karbowski
- M Neuspiel
- M Spinazzi
- M Vercheval
- Maggie M. Chi
- MF Greene
- MG Vander Heiden
- MJ MacDonald
- MK Shigenaga
- ML Cotrina
- MM Chi
- MP Diamond
- P Pocar
- P Quinn
- PJ Jensen
- Q Wang
- Qiang Wang
- R Buccione
- R Gualtieri
- RB Gilchrist
- RC Scarpulla
- RH Baloh
- RJ Youle
- S Boudina
- S Desagher
- S Frank
- S Jansen
- SA Colton
- SA Colton
- SA Detmer
- Scott Purcell
- SM Downs
- ST Smiley
- Sudhansu Kumar Dey
- SW Weng
- T Kaneko
- T Koshiba
- Tim Schedl
- TS Hussein
- VA Krutovskikh
- X Shen
- YL Miao
- YQ Su
- Publication venue
- Public Library of Science
- Publication date
- 01/01/2010
- Field of study
Impaired oocyte quality has been demonstrated in diabetic mice; however, the potential pathways by which maternal diabetes exerts its effects on the oocyte are poorly understood. Cumulus cells are in direct contact with the oocyte via gap junctions and provide essential nutrients to support oocyte development. In this study, we investigated the effects of maternal diabetes on the mitochondrial status in cumulus cells. We found an increased frequency of fragmented mitochondria, a decreased transmembrane potential and an aggregated distribution of mitochondria in cumulus cells from diabetic mice. Furthermore, while mitochondrial biogenesis in cumulus cells was induced by maternal diabetes, their metabolic function was disrupted as evidenced by lower ATP and citrate levels. Moreover, we present evidence suggesting that the mitochondrial impairments induced by maternal diabetes, at least in part, lead to cumulus cell apoptosis through the release of cytochrome c. Together the deleterious effects on cumulus cells may disrupt trophic and signaling interactions with the oocyte, contributing to oocyte incompetence and thus poor pregnancy outcomes in diabetic females
Empirical Legal Studies Before 1940: A Bibliographic Essay
- Author
- A M Linden
- Abe Fortas
- Adolphe Quetelet
- Albert Hamo
- Alfred Bettman
- Alfred Bettman
- Alfred F Connard
- Alfred Z Reed
- Andre Guerry
- Arnold Hall
- Arthur Beeley
- Arthur E Sutherland
- Arthur V Lashly
- Arthur Woods
- Ben D Wood
- Ben D Wood
- Ben D Wood
- C E Gehlke
- C G Vernier
- C Pritchett
- Charles C Moore
- Charles Clark
- Charles Clark
- Charles E Clark
- Charles E Clark
- Charles E Clark
- Charles Haines
- Charles Pritchett
- Clarence Morris
- Court Illinois Supreme
- Cyril Glasser
- Deborah R Hensler
- Donald Harris
- Dorothy Thomas
- Dunbar F Carpenter
- Edmund C Dickinson
- Edward Berkanovic
- Edward Green
- Edward M Martin
- Edward M Martin
- Edward Rubin
- Edwin D Dickinson
- Eisenberg
- Elizabeth Ebener
- Eloise Snyder
- Erwin O Smigel
- F R Aumann
- F R Aumann
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Felix Frankfurter
- Florence L C Kitchelt
- Frank Murray
- Fred Kort
- Fred Kort
- Fred L Strodtbeck
- Fred L Strodtbeck
- Frederick J Gaudet
- Frederick J Gaudet
- Frederick J Gaudet
- Frederick J Gaudet
- George Everson
- George Stoddard
- Glendon A Schubert
- Glendon A Schubert
- Glendon A Schubert
- Goldthwaite H Dorr
- Gregory A Caldeira
- H Patterson
- Hans Zeisel
- Hans Zeisel
- Harold J Laski
- Harry Kalven
- Harry Kalven
- Harry Kalven
- Henrietta Heinzen
- Henry M Hart
- Henry M Hart
- Herbert Jacob
- Herbert M Brune
- Herbert M Kritzer
- Herbert M Kritzer
- Herbert M. Kritzer
- Herman Oliphant
- Herman Oliphant
- Hessel E Yntema
- Hessel E Yntema
- Hugh H Fuller
- Insurance Research
- J A C Grant
- J Grimm
- J Schlegel
- James Eisenstein
- Jerome E Carlin
- Jerome E Carlin
- Jerome Michael
- John Grant
- John H Wigmore
- John H Wigmore
- John Howe
- John M Pfiffner
- John Wigmore
- Jonathan Simon
- Joseph L Ebersole
- Julian Leavitt
- Kelley Armitage
- Kenneth Burgess
- Kenneth J Martin
- Kenneth M Dolbeare
- Kenneth S Abraham
- Kevin M Clermont
- Laura Kalman
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon C Marshall
- Leon Radzinowicz
- Leon Radzinowicz
- Leonard B Saxe
- Lloyd K Garrison
- Lombroso
- Louis N Robinson
- Louis Robinson
- Malcolm M Feeley
- Maurice Rosenberg
- Michael Zander
- Minnesota Crime Commission
- N P Feinsinger
- N P Feinsinger
- Neil Davie
- Neil Vidmar
- Oliver P Field
- Oliver Rundell
- Paul F Douglass
- Paul F Douglass
- Peter Nehemkis
- Pressly S Sikes
- Procedure
- Quintin Johnstone
- R M Jackson
- Ray A Brown
- Raymond Moley
- Raymond Moley
- Raymond Moley
- Raymond Moley
- Raymond Moley
- Reginald Smith
- Richard Husband
- Richard V Campbell
- Robert M Jackson
- Robert M Jackson
- Robert W Slayton
- Rodney L Mott
- Rodney L Mott
- Roger Hunting
- Rurth Reticker
- Sam B Warner
- Sam Warner
- Sam Warner
- Sam Warner
- Sam Warner
- Samm Warner
- Samuel C May
- Sheldon Glueck
- Silas A Harris
- Silas A Harris
- Soia Mentschikoff
- Soia Mentschikoff
- Steuart Britt
- Stuart Chase
- Theodore Eisenberg
- Thomas Billig
- Thomas D Thacher
- Thomas D Thacher
- Thomas H Cohen
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Underhill Moore
- Van Waters
- W Goldberg
- W Goldberg
- W Goldberg
- Walton J Wood
- Wayne L Morse
- Wayne L Morse
- Wayne L Morse
- Wayne L Morse
- Wayne L Morse
- Wesley A Sturges
- Wesley A Sturges
- Will Shafroth
- William Douglas
- William J Blackburn
- William L Eagleton
- William L Eagleton
- William M Wherry
- William O Douglas
- William O Douglas
- William O Douglas
- Willis Hotchkiss
- Publication venue
- Scholarship Repository
- Publication date
- 01/01/2009
- Field of study
The modern empirical legal studies movement has well-known antecedents in the law and society and law and economics traditions of the latter half of the 20th century. Less well known is the body of empirical research on legal phenomena from the period prior to World War II. This paper is an extensive bibliographic essay that surveys the English language empirical legal research from approximately 1940 and earlier. The essay is arranged around the themes in the research: criminal justice, civil justice (general studies of civil litigation, auto accident litigation and compensation, divorce, small claims, jurisdiction and procedure, civil juries), debt and bankruptcy, banking, appellate courts, legal needs, legal profession (including legal education), and judicial staffing and selection. Accompanying the essay is an extensive bibliography of research articles, books, and reports
Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)
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- A. -G. Wu
- A. C. Ma
- A. K. Au
- Abdel-Aziz A. K.
- Abdelfatah S.
- Abdellatif M.
- Abdoli A.
- Abel S.
- Abeliovich H.
- Abildgaard M. H.
- Abudu Y. P.
- Acevedo-Arozena A.
- Adamopoulos I. E.
- Adeli K.
- Adolph T. E.
- Adornetto A.
- Aflaki E.
- Agam G.
- Agarwal A.
- Aggarwal B. B.
- Agnello M.
- Agostinis P.
- Agrewala J. N.
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- Akkoc Y.
- Akoumianaki T.
- Akpinar H. A.
- Al-Abd A. M.
- Al-Akra L.
- Al-Gharaibeh A.
- Alaoui-Jamali M. A.
- Alberti S.
- Alcocer-Gomez E.
- Alessandri C.
- Ali M.
- Alim Al-Bari M. A.
- Aliwaini S.
- Alizadeh J.
- Almacellas E.
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- Publication venue
- 'Informa UK Limited'
- Publication date
- 01/01/2021
- Field of study
Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1.
- Author
- Abdel-Aziz AK
- Abdelfatah S
- Abdellatif M
- Abdoli A
- Abel S
- Abeliovich H
- Abildgaard MH
- Abudu YP
- Acevedo-Arozena A
- Adamopoulos IE
- Adeli K
- Adolph TE
- Adornetto A
- Aflaki E
- Agam G
- Agarwal A
- Aggarwal BB
- Agnello M
- Agostinis P
- Agrewala JN
- Agrotis A
- Aguilar PV
- Ahmad ST
- Ahmed ZM
- Ahumada-Castro U
- Aits S
- Aizawa S
- Akkoc Y
- Akoumianaki T
- Akpinar HA
- Al-Abd AM
- Al-Akra L
- Al-Gharaibeh A
- Alaoui-Jamali MA
- Alberti S
- Alcocer-GĂłmez E
- Alessandri C
- Ali M
- Alim Al-Bari MA
- Aliwaini S
- Alizadeh J
- Almacellas E
- Almasan A
- Alonso A
- Alonso GD
- Altan-Bonnet N
- Altieri DC
- Alves da Costa C
- Alves S
- Alzaharna MM
- Amadio M
- Amantini C
- Amaral C
- Ambrosio S
- Amer AO
- Ammanathan V
- An Z
- Andersen SU
- Andrabi SA
- Andrade-Silva M
- Andres AM
- Angelini S
- Ann D
- Anozie UC
- Ansari MY
- Antas P
- Antebi A
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- Anwar T
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- Apostolova N
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- Araya J
- AraĂșjo WL
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- Armstrong-James D
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- Artero R
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- Asaro DML
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- Dembitz V
- Demers ND
- Deng H
- Deng Z
- Dengjel J
- Dent P
- Denton D
- DePamphilis ML
- Der CJ
- Deretic V
- Descoteaux A
- Devis L
- Devkota S
- Devuyst O
- Dewson G
- Dharmasivam M
- Dhiman R
- di Bernardo D
- Di Cristina M
- Di Domenico F
- Di Fazio P
- Di Fonzo A
- Di Guardo G
- Di Guglielmo GM
- Di Leo L
- Di Malta C
- Di Nardo A
- Di Rienzo M
- Di Sano F
- Diallinas G
- Diao J
- Diaz-Araya G
- Dickinson JM
- Diederich M
- Dieudé M
- Dikic I
- Ding S
- Ding W-X
- Dini L
- Dinic M
- DiniÄ J
- Dinkova-Kostova AT
- Dionne MS
- Distler JHW
- Diwan A
- Dixon IMC
- Djavaheri-Mergny M
- Dobrinski I
- Dobrovinskaya O
- Dobrowolski R
- Dobson RCJ
- Dokmeci Emre S
- Donadelli M
- Dong B
- Dong X
- Dong XC
- Dong Z
- Dorn Ii GW
- Dotsch V
- Dou H
- Dou J
- Dowaidar M
- Dridi S
- Drucker L
- du Toit A
- Du A
- Du C
- Du G
- Du H-N
- Du L-L
- Duan S-B
- Duan X
- Duarte SP
- Dubrovska A
- Dunlop EA
- Dupont N
- DurĂĄn RV
- Dwarakanath BS
- Dyshlovoy SA
- DĂĄvila VA
- DĂaz-Laviada I
- Ebrahimi-Fakhari D
- Eckhart L
- Edelstein CL
- Efferth T
- Eftekharpour E
- Eichinger L
- Eid N
- Eisenberg T
- Eissa NT
- Eissa S
- Ejarque M
- El Andaloussi A
- El-Hage N
- El-Naggar S
- El-Shafey ES
- Eleuteri AM
- Elgendy M
- Eliopoulos AG
- Elizalde MM
- Elks PM
- Elsasser H-P
- Elsherbiny ES
- Emerling BM
- Emre NCT
- Eng CH
- Engedal N
- Engelbrecht A-M
- Engelsen AST
- Enserink JM
- Escalante R
- Esclatine A
- Escobar-Henriques M
- Eskelinen E-L
- Espert L
- Eusebio M-O
- Fabrias G
- Fabrizi C
- Facchiano A
- Facchiano F
- Fadeel B
- Fader C
- Faesen AC
- Fairlie WD
- FalcĂł A
- Falkenburger BH
- Fan D
- Fan J
- Fan Y
- Fang EF
- Fang Y
- Fang Y
- Fanto M
- Farfel-Becker T
- Faure M
- Fazeli G
- Fedele AO
- Feldman AM
- Feng D
- Feng J
- Feng L
- Feng W
- Feng Y
- Feng Y
- Fenz Araujo T
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- Fernandez-Checa JC
- Fernie AR
- FernĂĄndez ĂF
- FernĂĄndez-Veledo S
- Ferrante AW
- Ferraresi A
- Ferrari MF
- Ferreira JCB
- Ferro-Novick S
- Figueras A
- Filadi R
- Filigheddu N
- Filippi-Chiela E
- Filomeni G
- Fimia GM
- Fineschi V
- Finetti F
- Finkbeiner S
- Fisher EA
- Fisher PB
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- Fliesler SJ
- Flo TH
- Florance I
- Florey O
- Florio T
- Fodor E
- Follo C
- Fon EA
- Forlino A
- Fornai F
- Fortini P
- Fracassi A
- Fraldi A
- Franco B
- Franco R
- Franconi F
- Frankel LB
- Friedman SL
- Fröhlich LF
- FrĂŒhbeck G
- Fuentes JM
- Fujiki Y
- Fujita N
- Fujiwara Y
- Fukuda M
- Fulda S
- Furic L
- Furuya N
- Fusco C
- Gack MU
- Gaffke L
- Galadari S
- Galasso A
- Galindo MF
- Gallolu Kankanamalage S
- Galluzzi L
- Galy V
- Gammoh N
- Gan B
- Ganley IG
- Gao F
- Gao H
- Gao M
- Gao P
- Gao S-J
- Gao W
- Gao X
- Garcera A
- Garcia MN
- Garcia VE
- Garcia-Escudero V
- Garcia-Garcia A
- Garcia-Macia M
- Garcia-Ruiz C
- GarcĂa-Del Portillo F
- GarcĂa-Moreno D
- GarcĂa-Sanz P
- Garg AD
- Gargini R
- Garofalo T
- Garry RF
- Gassen NC
- Gatica D
- Ge L
- Ge W
- Geiss-Friedlander R
- Gelfi C
- Genschik P
- Gentle IE
- Gerbino V
- Gerhardt C
- Germain K
- Germain M
- Gewirtz DA
- Ghasemipour Afshar E
- Ghavami S
- Ghigo A
- Ghosh M
- Giamas G
- Giampietri C
- Giatromanolaki A
- Gibson GE
- Gibson SB
- Ginet V
- Giniger E
- Giorgi C
- Girao H
- Girardin SE
- Giridharan M
- Giuliano S
- Giulivi C
- Giuriato S
- Giustiniani J
- Gluschko A
- Goder V
- Goginashvili A
- Golab J
- Goldstone DC
- Golebiewska A
- Gomes LR
- Gomez R
- Gomez-Puerto MC
- Gomez-Sintes R
- Gong Q
- Goni FM
- Gonzalez-Hernandez T
- Gonzalez-Polo RA
- Gonzalez-Reyes JA
- GonzĂĄlez-Gallego J
- GonzĂĄlez-RodrĂguez P
- Goping IS
- Gorbatyuk MS
- Gorbunov NV
- Gorojod RM
- Gorski SM
- Goruppi S
- Gotor C
- Gottlieb RA
- Gozes I
- Gozuacik D
- Graef M
- Granatiero V
- Grasso D
- Gray JP
- Green DR
- Greenhough A
- Gregory SL
- Griffin EF
- Grinstaff MW
- Gros F
- Grose C
- Gross AS
- Gruber F
- Grumati P
- Grune T
- GrÀler MH
- Gu X
- Guan J-L
- Guardia CM
- Guda K
- Guerra F
- Guerri C
- Guha P
- Guillén C
- Gujar S
- Gukovskaya A
- Gukovsky I
- Gunst J
- Guntur AR
- Guo C
- Guo C
- Guo H
- Guo L-W
- Guo M
- Gupta P
- Gupta S
- Gupta SK
- Gupta V
- Gupta VB
- Gustafsson AB
- Gutterman DD
- GĂłmez-SĂĄnchez R
- GörgĂŒlĂŒ K
- GĂŒnther A
- H B R
- Haapasalo A
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- Hadano S
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- Hall BS
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- Hamacher-Brady A
- Hamann A
- Hamasaki M
- Han W
- Hansen M
- Hanson PI
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- Harada M
- Harhaji-Trajkovic L
- Hariharan N
- Haroon N
- Harris J
- Hasegawa T
- Hasima Nagoor N
- Haspel JA
- Haucke V
- Hawkins WD
- Hay BA
- Haynes CM
- Hayrabedyan SB
- Hays TS
- HaÄ A
- He C
- He Q
- He R-R
- He Y-W
- He Y-Y
- Heakal Y
- Heberle AM
- Hejtmancik JF
- Helgason GV
- Henkel V
- Herb M
- Hergovich A
- Herman-Antosiewicz A
- Hernandez C
- Hernandez-Diaz S
- Hernandez-Gea V
- HernĂĄndez A
- Herpin A
- Herreros J
- HervĂĄs JH
- Hesselson D
- Hetz C
- Heussler VT
- Higuchi Y
- Hilfiker S
- Hill JA
- Hlavacek WS
- Ho EA
- Ho IHT
- Ho PW-L
- Ho S-L
- Ho WY
- Hobbs GA
- Hochstrasser M
- Hoet PHM
- Hofius D
- Hofman P
- Holmberg CI
- Hombrebueno JR
- Hooper LV
- Hoppe T
- Horos R
- Hoshida Y
- Hsin I-L
- Hsu H-Y
- Hu B
- Hu D
- Hu L-F
- Hu MC
- Hu R
- Hu W
- Hu Y-C
- Hu Z-W
- Hua F
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- Hua Y
- Huan C
- Huang C
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- Huang H
- Huang K
- Huang MLH
- Huang R
- Huang S
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- Huang X
- Huang YJ
- Huber TB
- Hubert V
- Hubner CA
- Hughes SM
- Hughes WE
- Humbert M
- Hummer G
- Hurley JH
- Hussain S
- Hussain S
- Hussey PJ
- Hutabarat M
- Hwang H-Y
- Hwang S
- Hyung-Ryong Kim
- Höhn A
- Ieni A
- Ikeda F
- Imagawa Y
- Imai Y
- Imbriano C
- Imoto M
- Inman DM
- Inoki K
- Iovanna J
- Iozzo RV
- Ippolito G
- Irazoqui JE
- Iribarren P
- Ishaq M
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- Ishimwe N
- Isidoro C
- Ismail N
- Issazadeh-Navikas S
- Itakura E
- Ito D
- Ivankovic D
- Ivanova S
- Iyer AKV
- Izquierdo JM
- Izumi M
- Jabir MS
- Jackson WT
- Jacobo-Herrera N
- Jacomin A-C
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- Jakobi AJ
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- Jiang X
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- Jimenez-Sanchez M
- Jin E-J
- Jin F
- Jin H
- Jin L
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- Jo E-K
- Joffre C
- Johansen T
- Johnson GVW
- Johnston SA
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- Jolly MK
- Joosten LAB
- Jordan J
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- Kaasik A
- Kabuta T
- Kaganovich D
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- Kain R
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- Kalia M
- Kalinowski DS
- Kaludercic N
- Kalvari I
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- Kanki T
- Kanneganti T-D
- Kanthasamy A
- Kanthasamy AG
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- Kapuy O
- Karamouzis MV
- Karim MR
- Karmakar P
- Katare RG
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- Kaufmann SHE
- Kauppinen A
- Kaushal GP
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- Kawasaki K
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- Kermorgant S
- Kern A
- Ketteler R
- Keulers TG
- Khalfin B
- Khalil H
- Khambu B
- Khan SY
- Khandelwal VKM
- Khandia R
- Kho W
- Khobrekar NV
- Khuansuwan S
- Khundadze M
- Killackey SA
- Kim D
- Kim D-E
- Kim D-H
- Kim DR
- Kim E-K
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- Kim H-R
- Kim H-S
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- Kim JH
- Kim JK
- Kim KI
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- Kim S-J
- Kimball SR
- Kimchi A
- Kimmelman AC
- Kimura T
- King MA
- Kinghorn KJ
- Kinsey CG
- Kirkin V
- Kirshenbaum LA
- Kiselev SL
- Kishi S
- Kitamoto K
- Kitaoka Y
- Kitazato K
- Kitsis RN
- Kittler JT
- Kjaerulff O
- Klein PS
- Klionsky DJ
- Klopstock T
- Klucken J
- Knorr RL
- KnĂŠvelsrud H
- Ko BCB
- Ko F
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- Kobayashi H
- Kobayashi S
- Kocaturk NM
- Koch I
- Koch JC
- Koenig U
- Koh YH
- Kohlwein SD
- Koike M
- Komatsu M
- Kono T
- Kopp BT
- Korcsmaros T
- Korkmaz G
- Korolchuk VI
- Korsnes MS
- Koskela A
- Kota J
- Kotake Y
- Kotler ML
- Kou Y
- Koukourakis MI
- Koustas E
- Kovacs AL
- KovĂĄcs T
- Koya D
- Kozako T
- Kraft C
- Krainc D
- Krasnodembskaya AD
- Kretz-Remy C
- Kroemer G
- KrÀmer H
- Ktistakis NT
- Kuchitsu K
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- Kutlu O
- Kwak S
- Kwon HJ
- Kwon TK
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- Kyrmizi I
- Kögel D
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- La Spada A
- Labonté P
- Ladoire S
- Laface I
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- Lagace DC
- Lahiri V
- Lai Z
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- Lane DJR
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- Leck LYW
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- Zimmermann CM
- Ziviani E
- Zoladek T
- Zong W-X
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- Zorzano A
- Zou W
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- Zwerschke W
- Ălvarez ĂMC
- Ăvalos Y
- Ănal G
- ĂstĂŒn S
- ÄoliÄ M
- ÄokiÄ J
- Ćœerovnik E
- Publication venue
- 'Informa UK Limited'
- Publication date
- 01/01/2021
- Field of study
In 2008, we published the first set of guidelines for standardizing research in autophagy. Since then, this topic has received increasing attention, and many scientists have entered the field. Our knowledge base and relevant new technologies have also been expanding. Thus, it is important to formulate on a regular basis updated guidelines for monitoring autophagy in different organisms. Despite numerous reviews, there continues to be confusion regarding acceptable methods to evaluate autophagy, especially in multicellular eukaryotes. Here, we present a set of guidelines for investigators to select and interpret methods to examine autophagy and related processes, and for reviewers to provide realistic and reasonable critiques of reports that are focused on these processes. These guidelines are not meant to be a dogmatic set of rules, because the appropriateness of any assay largely depends on the question being asked and the system being used. Moreover, no individual assay is perfect for every situation, calling for the use of multiple techniques to properly monitor autophagy in each experimental setting. Finally, several core components of the autophagy machinery have been implicated in distinct autophagic processes (canonical and noncanonical autophagy), implying that genetic approaches to block autophagy should rely on targeting two or more autophagy-related genes that ideally participate in distinct steps of the pathway. Along similar lines, because multiple proteins involved in autophagy also regulate other cellular pathways including apoptosis, not all of them can be used as a specific marker for bona fide autophagic responses. Here, we critically discuss current methods of assessing autophagy and the information they can, or cannot, provide. Our ultimate goal is to encourage intellectual and technical innovation in the field
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