Literature DB >> 24845588

Preparedness for a natural disaster: how Coriell planned for hurricane Sandy.

Joseph L Mintzer1, Courtney J Kronenthal, Victoria Kelly, Michael Seneca, Gary Butler, Karen Fecenko-Tacka, Donna Altamuro, Steven J Madore.   

Abstract

When a biological specimen is donated to a biobank such as the nonprofit Coriell Institute for Medical Research, regardless of whether that submission is sent directly or through a physician, scientist, foundation, or patient-centered advocacy organization, the donor expects their biomaterial to be processed effectively and stored in proper conditions until distribution to researchers answering scientific questions. The donor and scientific researchers rarely, if ever, consider what might happen to those specimens if the biobank experiences an adverse event, such as a disaster that compromises its business operations, including handling of samples. Management of biomaterials is not simply a laboratory process; their long-term survival is dependent on both the laboratory preparation and the infrastructure designed for maintenance, safety, and security. Coriell Institute has documented disaster preparedness plans since its inception in 1953, and currently manages hundreds of thousands of cell lines and DNA samples under ISO 9001 quality management standards, complete with a robust Emergency Operations Plan. The Institute's recent approach to preparing for Hurricane Sandy, a Category 1 hurricane that struck the East Coast of the United States in late October 2012, was two-fold. It included the validation of its long-term strategies focused on emergency back-up systems, communication solutions, and employee training, and implementation of short-term tactics such as confirming on-call emergency response personnel and safe storage options for working biomaterials and reagents. The purpose of this article is to review several best practices in use at Coriell Institute associated with disaster planning and to identify and evaluate the effectiveness of those elements in coping with Hurricane Sandy.

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Year:  2013        PMID: 24845588     DOI: 10.1089/bio.2013.0035

Source DB:  PubMed          Journal:  Biopreserv Biobank        ISSN: 1947-5543            Impact factor:   2.300


  3 in total

1.  Modelling Genetic Benefits and Financial Costs of Integrating Biobanking into the Captive Management of Koalas.

Authors:  Lachlan G Howell; Stephen D Johnston; Justine K O'Brien; Richard Frankham; John C Rodger; Shelby A Ryan; Chad T Beranek; John Clulow; Donald S Hudson; Ryan R Witt
Journal:  Animals (Basel)       Date:  2022-04-12       Impact factor: 3.231

2.  Ensuring the Safety and Security of Frozen Lung Cancer Tissue Collections through the Encapsulation of Dried DNA.

Authors:  Kevin Washetine; Mehdi Kara-Borni; Simon Heeke; Christelle Bonnetaud; Jean-Marc Félix; Lydia Ribeyre; Coraline Bence; Marius Ilié; Olivier Bordone; Marine Pedro; Priscilla Maitre; Virginie Tanga; Emmanuelle Gormally; Pascal Mossuz; Philippe Lorimier; Charles Hugo Marquette; Jérôme Mouroux; Charlotte Cohen; Sandra Lassalle; Elodie Long-Mira; Bruno Clément; Georges Dagher; Véronique Hofman; Paul Hofman
Journal:  Cancers (Basel)       Date:  2018-06-11       Impact factor: 6.639

Review 3.  Mini-Review of Laboratory Operations in Biobanking: Building Biobanking Resources for Translational Research.

Authors:  Mine S Cicek; Janet E Olson
Journal:  Front Public Health       Date:  2020-07-28
  3 in total

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