Literature DB >> 29164600

18F PET with florbetaben for the early diagnosis of Alzheimer's disease dementia and other dementias in people with mild cognitive impairment (MCI).

Gabriel Martínez1, Robin Wm Vernooij, Paulina Fuentes Padilla, Javier Zamora, Leon Flicker, Xavier Bonfill Cosp.   

Abstract

BACKGROUND: 18F-florbetaben uptake by brain tissue, measured by positron emission tomography (PET), is accepted by regulatory agencies like the Food and Drug Administration (FDA) and the European Medicine Agencies (EMA) for assessing amyloid load in people with dementia. Its added value is mainly demonstrated by excluding Alzheimer's pathology in an established dementia diagnosis. However, the National Institute on Aging and Alzheimer's Association (NIA-AA) revised the diagnostic criteria for Alzheimer's disease and confidence in the diagnosis of mild cognitive impairment (MCI) due to Alzheimer's disease may be increased when using some amyloid biomarkers tests like 18F-florbetaben. These tests, added to the MCI core clinical criteria, might increase the diagnostic test accuracy (DTA) of a testing strategy. However, the DTA of 18F-florbetaben to predict the progression from MCI to Alzheimer's disease dementia (ADD) or other dementias has not yet been systematically evaluated.
OBJECTIVES: To determine the DTA of the 18F-florbetaben PET scan for detecting people with MCI at time of performing the test who will clinically progress to ADD, other forms of dementia (non-ADD), or any form of dementia at follow-up. SEARCH
METHODS: The most recent search for this review was performed in May 2017. We searched MEDLINE (OvidSP), Embase (OvidSP), PsycINFO (OvidSP), BIOSIS Citation Index (Thomson Reuters Web of Science), Web of Science Core Collection, including the Science Citation Index (Thomson Reuters Web of Science) and the Conference Proceedings Citation Index (Thomson Reuters Web of Science), LILACS (BIREME), CINAHL (EBSCOhost), ClinicalTrials.gov (https://clinicaltrials.gov), and the World Health Organization International Clinical Trials Registry Platform (WHO ICTRP) (http://www.who.int/ictrp/search/en/). We also searched ALOIS, the Cochrane Dementia & Cognitive Improvement Group's specialised register of dementia studies (http://www.medicine.ox.ac.uk/alois/). We checked the reference lists of any relevant studies and systematic reviews, and performed citation tracking using the Science Citation Index to identify any additional relevant studies. No language or date restrictions were applied to electronic searches. SELECTION CRITERIA: We included studies that had prospectively defined cohorts with any accepted definition of MCI at time of performing the test and the use of 18F-florbetaben scan to evaluate the DTA of the progression from MCI to ADD or other forms of dementia. In addition, we only selected studies that applied a reference standard for Alzheimer's dementia diagnosis, for example, the National Institute of Neurological and Communicative Disorders and Stroke and the Alzheimer's Disease and Related Disorders Association (NINCDS-ADRDA) or Diagnostic and Statistical Manual of Mental Disorders-IV (DSM-IV) criteria. DATA COLLECTION AND ANALYSIS: We screened all titles and abstracts identified in electronic-database searches. Two review authors independently selected studies for inclusion and extracted data to create two-by-two tables, showing the binary test results cross-classified with the binary reference standard. We used these data to calculate sensitivities, specificities, and their 95% confidence intervals. Two independent assessors performed quality assessment using the QUADAS-2 tool plus some additional items to assess the methodological quality of the included studies. MAIN
RESULTS: Progression from MCI to ADD, any other form of dementia, and any form of dementia was evaluated in one study (Ong 2015). It reported data on 45 participants at four years of follow-up; 21 participants met NINCDS-ADRDA criteria for Alzheimer's disease dementia at four years of follow-up, the proportion converting to ADD was 47% of the 45 participants, and 11% of the 45 participants met criteria for other types of dementias (three cases of FrontoTemporal Dementia (FTD), one of Dementia with Lewy body (DLB), and one of Progressive Supranuclear Palsy (PSP)). We considered the study to be at high risk of bias in the domains of the reference standard, flow, and timing (QUADAS-2). MCI to ADD; 18F-florbetaben PET scan analysed visually: the sensitivity was 100% (95% confidence interval (CI) 84% to 100%) and the specificity was 83% (95% CI 63% to 98%) (n = 45, 1 study). Analysed quantitatively: the sensitivity was 100% (95% CI 84% to 100%) and the specificity was 88% (95% CI 68% to 97%) for the diagnosis of ADD at follow-up (n = 45, 1 study). MCI to any other form of dementia (non-ADD); 18F-florbetaben PET scan analysed visually: the sensitivity was 0% (95% CI 0% to 52%) and the specificity was 38% (95% CI 23% to 54%) (n = 45, 1 study). Analysed quantitatively: the sensitivity was 0% (95% CI 0% to 52%) and the specificity was 40% (95% CI 25% to 57%) for the diagnosis of any other form of dementia at follow-up (n = 45, 1 study). MCI to any form of dementia;18F-florbetaben PET scan analysed visually: the sensitivity was 81% (95% CI 61% to 93%) and the specificity was 79% (95% CI 54% to 94%) (n = 45, 1 study). Analysed quantitatively: the sensitivity was 81% (95% CI 61% to 93%) and the specificity was 84% (95% CI 60% to 97%) for the diagnosis of any form of dementia at follow-up (n = 45, 1 study). AUTHORS'
CONCLUSIONS: Although we were able to calculate one estimation of DTA in, especially, the prediction of progression from MCI to ADD at four years follow-up, the small number of participants implies imprecision of sensitivity and specificity estimates. We cannot make any recommendation regarding the routine use of 18F-florbetaben in clinical practice based on one single study with 45 participants. 18F-florbetaben has high financial costs, therefore, clearly demonstrating its DTA and standardising the process of the 18F-florbetaben modality are important prior to its wider use.

Entities:  

Year:  2017        PMID: 29164600      PMCID: PMC6485979          DOI: 10.1002/14651858.CD012883

Source DB:  PubMed          Journal:  Cochrane Database Syst Rev        ISSN: 1361-6137


  71 in total

1.  The diagnosis of dementia due to Alzheimer's disease: recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease.

Authors:  Guy M McKhann; David S Knopman; Howard Chertkow; Bradley T Hyman; Clifford R Jack; Claudia H Kawas; William E Klunk; Walter J Koroshetz; Jennifer J Manly; Richard Mayeux; Richard C Mohs; John C Morris; Martin N Rossor; Philip Scheltens; Maria C Carrillo; Bill Thies; Sandra Weintraub; Creighton H Phelps
Journal:  Alzheimers Dement       Date:  2011-04-21       Impact factor: 21.566

2.  The diagnosis of mild cognitive impairment due to Alzheimer's disease: recommendations from the National Institute on Aging-Alzheimer's Association workgroups on diagnostic guidelines for Alzheimer's disease.

Authors:  Marilyn S Albert; Steven T DeKosky; Dennis Dickson; Bruno Dubois; Howard H Feldman; Nick C Fox; Anthony Gamst; David M Holtzman; William J Jagust; Ronald C Petersen; Peter J Snyder; Maria C Carrillo; Bill Thies; Creighton H Phelps
Journal:  Alzheimers Dement       Date:  2011-04-21       Impact factor: 21.566

3.  Florbetaben PET imaging to detect amyloid beta plaques in Alzheimer's disease: phase 3 study.

Authors:  Osama Sabri; Marwan N Sabbagh; John Seibyl; Henryk Barthel; Hiroyasu Akatsu; Yasuomi Ouchi; Kohei Senda; Shigeo Murayama; Kenji Ishii; Masaki Takao; Thomas G Beach; Christopher C Rowe; James B Leverenz; Bernardino Ghetti; James W Ironside; Ana M Catafau; Andrew W Stephens; Andre Mueller; Norman Koglin; Anja Hoffmann; Katrin Roth; Cornelia Reininger; Walter J Schulz-Schaeffer
Journal:  Alzheimers Dement       Date:  2015-03-28       Impact factor: 21.566

Review 4.  Mini-Mental State Examination (MMSE) for the detection of Alzheimer's disease and other dementias in people with mild cognitive impairment (MCI).

Authors:  Ingrid Arevalo-Rodriguez; Nadja Smailagic; Marta Roqué I Figuls; Agustín Ciapponi; Erick Sanchez-Perez; Antri Giannakou; Olga L Pedraza; Xavier Bonfill Cosp; Sarah Cullum
Journal:  Cochrane Database Syst Rev       Date:  2015-03-05

5.  Amyloid imaging with (18)F-florbetaben in Alzheimer disease and other dementias.

Authors:  Victor L Villemagne; Kevin Ong; Rachel S Mulligan; Gerhard Holl; Svetlana Pejoska; Gareth Jones; Graeme O'Keefe; Uwe Ackerman; Henri Tochon-Danguy; J Gordon Chan; Cornelia B Reininger; Lueder Fels; Barbara Putz; Beate Rohde; Colin L Masters; Christopher C Rowe
Journal:  J Nucl Med       Date:  2011-07-15       Impact factor: 10.057

6.  Rate of progression of mild cognitive impairment to dementia--meta-analysis of 41 robust inception cohort studies.

Authors:  A J Mitchell; M Shiri-Feshki
Journal:  Acta Psychiatr Scand       Date:  2008-02-18       Impact factor: 6.392

Review 7.  Mild cognitive impairment: ten years later.

Authors:  Ronald C Petersen; Rosebud O Roberts; David S Knopman; Bradley F Boeve; Yonas E Geda; Robert J Ivnik; Glenn E Smith; Clifford R Jack
Journal:  Arch Neurol       Date:  2009-12

8.  Mixed brain pathologies account for most dementia cases in community-dwelling older persons.

Authors:  Julie A Schneider; Zoe Arvanitakis; Woojeong Bang; David A Bennett
Journal:  Neurology       Date:  2007-06-13       Impact factor: 9.910

Review 9.  Montreal Cognitive Assessment for the diagnosis of Alzheimer's disease and other dementias.

Authors:  Daniel H J Davis; Sam T Creavin; Jennifer L Y Yip; Anna H Noel-Storr; Carol Brayne; Sarah Cullum
Journal:  Cochrane Database Syst Rev       Date:  2015-10-29

Review 10.  Diagnosis and management of dementia with Lewy bodies: third report of the DLB Consortium.

Authors:  I G McKeith; D W Dickson; J Lowe; M Emre; J T O'Brien; H Feldman; J Cummings; J E Duda; C Lippa; E K Perry; D Aarsland; H Arai; C G Ballard; B Boeve; D J Burn; D Costa; T Del Ser; B Dubois; D Galasko; S Gauthier; C G Goetz; E Gomez-Tortosa; G Halliday; L A Hansen; J Hardy; T Iwatsubo; R N Kalaria; D Kaufer; R A Kenny; A Korczyn; K Kosaka; V M Y Lee; A Lees; I Litvan; E Londos; O L Lopez; S Minoshima; Y Mizuno; J A Molina; E B Mukaetova-Ladinska; F Pasquier; R H Perry; J B Schulz; J Q Trojanowski; M Yamada
Journal:  Neurology       Date:  2005-10-19       Impact factor: 9.910

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1.  Biomarker Localization, Analysis, Visualization, Extraction, and Registration (BLAzER) Methodology for Research and Clinical Brain PET Applications.

Authors:  Fabio Raman; Sameera Grandhi; Charles F Murchison; Richard E Kennedy; Susan Landau; Erik D Roberson; Jonathan McConathy
Journal:  J Alzheimers Dis       Date:  2019       Impact factor: 4.472

Review 2.  Clinical diagnosis of Alzheimer's disease: recommendations of the International Working Group.

Authors:  Bruno Dubois; Nicolas Villain; Giovanni B Frisoni; Gil D Rabinovici; Marwan Sabbagh; Stefano Cappa; Alexandre Bejanin; Stéphanie Bombois; Stéphane Epelbaum; Marc Teichmann; Marie-Odile Habert; Agneta Nordberg; Kaj Blennow; Douglas Galasko; Yaakov Stern; Christopher C Rowe; Stephen Salloway; Lon S Schneider; Jeffrey L Cummings; Howard H Feldman
Journal:  Lancet Neurol       Date:  2021-04-29       Impact factor: 59.935

3.  Disclosure of amyloid positron emission tomography results to individuals without dementia: a systematic review.

Authors:  Arno de Wilde; Marieke M van Buchem; René H J Otten; Femke Bouwman; Andrew Stephens; Frederik Barkhof; Philip Scheltens; Wiesje M van der Flier
Journal:  Alzheimers Res Ther       Date:  2018-07-28       Impact factor: 6.982

4.  Impact of amyloid-PET in daily clinical management of patients with cognitive impairment fulfilling appropriate use criteria.

Authors:  Eva María Triviño-Ibáñez; Raquel Sánchez-Vañó; Pablo Sopena-Novales; Juan Carlos Romero-Fábrega; Antonio Rodríguez-Fernández; Cristóbal Carnero Pardo; María Dolores Martínez Lozano; Manuel Gómez-Río
Journal:  Medicine (Baltimore)       Date:  2019-07       Impact factor: 1.817

5.  Heterogeneity of Amyloid Binding in Cognitively Impaired Patients Consecutively Recruited from a Memory Clinic: Evaluating the Utility of Quantitative 18F-Flutemetamol PET-CT in Discrimination of Mild Cognitive Impairment from Alzheimer's Disease and Other Dementias.

Authors:  Yi-Wen Bao; Anson C M Chau; Patrick Ka-Chun Chiu; Yat Fung Shea; Joseph S K Kwan; Felix Hon Wai Chan; Henry Ka-Fung Mak
Journal:  J Alzheimers Dis       Date:  2021       Impact factor: 4.472

Review 6.  Nuclear Imaging for the Diagnosis of Cardiac Amyloidosis in 2021.

Authors:  Weijia Li; Dipan Uppal; Yu-Chiang Wang; Xiaobo Xu; Damianos G Kokkinidis; Mark I Travin; James M Tauras
Journal:  Diagnostics (Basel)       Date:  2021-05-30

7.  Association between retinal thickness and β-amyloid brain accumulation in individuals with subjective cognitive decline: Fundació ACE Healthy Brain Initiative.

Authors:  Marta Marquié; Sergi Valero; Miguel Castilla-Marti; Joan Martínez; Octavio Rodríguez-Gómez; Ángela Sanabria; Juan Pablo Tartari; Gemma C Monté-Rubio; Oscar Sotolongo-Grau; Montserrat Alegret; Alba Pérez-Cordón; Natalia Roberto; Itziar de Rojas; Sonia Moreno-Grau; Laura Montrreal; Isabel Hernández; Maitee Rosende-Roca; Ana Mauleón; Liliana Vargas; Carla Abdelnour; Silvia Gil; Ester Esteban-De Antonio; Ana Espinosa; Gemma Ortega; Francisco Lomeña; Javier Pavia; Assumpta Vivas; Miguel Ángel Tejero; Marta Gómez-Chiari; Rafael Simó; Andreea Ciudin; Cristina Hernández; Adelina Orellana; Alba Benaque; Agustín Ruiz; Lluís Tárraga; Mercè Boada
Journal:  Alzheimers Res Ther       Date:  2020-03-31       Impact factor: 6.982

8.  Toolkit of methodological resources to conduct systematic reviews.

Authors:  Marta Roqué; Laura Martínez-García; Ivan Solà; Pablo Alonso-Coello; Xavier Bonfill; Javier Zamora
Journal:  F1000Res       Date:  2020-02-04
  8 in total

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