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dc.creatorVenturelli, Leonardo
dc.creatorKohler, Anne-Céline
dc.creatorStupar, Petar
dc.creatorVillalba, Maria I.
dc.creatorKalauzi, Aleksandar
dc.creatorRadotić, Ksenija
dc.creatorBertacchi, Massimiliano
dc.creatorDinarelli, Simone
dc.creatorGirasole, Marco
dc.creatorPešić, Milica
dc.creatorBanković, Jasna
dc.creatorVela, Maria E.
dc.creatorYantorno, Osvaldo
dc.creatorWillaert, Ronnie
dc.creatorDietler, Giovanni
dc.creatorLongo, Giovanni
dc.creatorKasas, Sandor
dc.date.accessioned2020-04-09T10:54:54Z
dc.date.available2900-01-01
dc.date.issued2020
dc.identifier.issn0952-3499
dc.identifier.urihttp://doi.wiley.com/10.1002/jmr.2849
dc.identifier.urihttps://radar.ibiss.bg.ac.rs/handle/123456789/3641
dc.description.abstractThe insurgence of newly arising, rapidly developing health threats, such as drug-resistant bacteria and cancers, is one of the most urgent public-health issues of modern times. This menace calls for the development of sensitive and reliable diagnostic tools to monitor the response of single cells to chemical or pharmaceutical stimuli. Recently, it has been demonstrated that all living organisms oscillate at a nanometric scale and that these oscillations stop as soon as the organisms die. These nanometric scale oscillations can be detected by depositing living cells onto a micro-fabricated cantilever and by monitoring its displacements with an atomic force microscope-based electronics. Such devices, named nanomotion sensors, have been employed to determine the resistance profiles of life-threatening bacteria within minutes, to evaluate, among others, the effect of chemicals on yeast, neurons, and cancer cells. The data obtained so far demonstrate the advantages of nanomotion sensing devices in rapidly characterizing microorganism susceptibility to pharmaceutical agents. Here, we review the key aspects of this technique, presenting its major applications. and detailing its working protocols.en
dc.relationinfo:eu-repo/grantAgreement/MESTD/Integrated and Interdisciplinary Research (IIR or III)/41031/RS//
dc.relationinfo:eu-repo/grantAgreement/MESTD/Basic Research (BR or ON)/173017/RS//
dc.relationAgencia Nacional de Promoción Científica y Tecnológica. Grant Numbers: PICT 2016‐0679, PICT 2017‐2444, PUE 22920170100100CO
dc.relationEuropean Space Agency. Grant Number: PRODEX
dc.relationFederaal Wetenschapsbeleid
dc.relationGebert Rüf Stiftung. Grant Number: GRS‐024/14
dc.relationMinistero della Salute. Grant Number: GR‐2009‐1605007
dc.relationNASA Exoplanet Science Institute. Grant Number: NNH16ZDA001N‐CLDTCH
dc.relationSchweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung. Grant Numbers: 200021‐144321, 407240‐167137, CRSII5_173863
dc.rightsrestrictedAccess
dc.sourceJournal of Molecular Recognition
dc.subjectAFM
dc.subjectAntibiotic susceptibility test
dc.subjectCellular metabolism
dc.subjectNanobiosensors
dc.subjectNanomechanical sensors
dc.subjectNanomotion
dc.subjectSingle cell investigation
dc.titleA perspective view on the nanomotion detection of living organisms and its featuresen
dc.typearticleen
dc.rights.licenseARR
dcterms.abstractЛонго, Гиованни; Виллалба, Мариа И.; Калаузи, Aлександар; Бертаццхи, Массимилиано; Динарелли, Симоне; Гирасоле, Марцо; Радотић, Ксенија; Пешић, Милица; Банковић, Јасна; Касас, Сандор; Вела, Мариа Е.; Yанторно, Освалдо; Wиллаерт, Ронние; Диетлер, Гиованни; Вентурелли, Леонардо; Кохлер, Aнне-Цéлине; Ступар, Петар;
dc.rights.holder© 2020 John Wiley & Sons Ltd
dc.identifier.doi10.1002/jmr.2849
dc.identifier.pmid32227521
dc.identifier.scopus2-s2.0-85082526069
dc.identifier.wos000522282700001
dc.citation.apaVenturelli, L., Kohler, A.-C., Stupar, P., Villalba, M. I., Kalauzi, A., Radotic, K., et al. (2020). A perspective view on the nanomotion detection of living organisms and its features. Journal of Molecular Recognition, e2849.
dc.citation.vancouverVenturelli L, Kohler A-C, Stupar P, Villalba MI, Kalauzi A, Radotic K, Bertacchi M, Dinarelli S, Girasole M, Pešić M, Banković J, Vela ME, Yantorno O, Willaert R, Dietler G, Longo G, Kasas S. A perspective view on the nanomotion detection of living organisms and its features. J Mol Recognit. 2020;e2849.
dc.citation.spagee2849
dc.type.versionacceptedVersion
dc.citation.rankM23


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