Addressing the context, the system reliability analysis for APHRODITE mission have been done in order to ensure its functionality for the autonomous and real-time analysis on board the ISS. Moreover, this paper emphasizes the magnet complex actuation subsystem in the system overview section. APHRODITE core system consists of a lab-on-chip (LoC) with integrated thin-film sensors in hydrogenated amorphous silicon (a-Si:H) able to host dual-analytes competitive chemiluminescence (CL) immunoassay. APHRODITE’s design allows for ultra-sensitive quantification of these target biomarkers present in sub-molar quantities, using a noninvasive approach. The core technical innovation of APHRODITE lies in functionalized magnetic microbeads that enable parallel multi-analyte tests and multiple subsequent runs on different samples upon a inline washing protocol. This design leverages immunoassays, making it ideal for detecting analytes in small volumes of complex matrices, even at low concentration.

Abbasrezaee, P., Maipan Davis, N., Nardi, L., De Albuquerque, T., Caputo, D., Lovecchio, N., et al. (2025). Advancing inflight medical diagnostics: the APHRODITE lab-on-chip system for biomarker analysis aboard the International Space Station. SPIE [10.1117/12.3062776].

Advancing inflight medical diagnostics: the APHRODITE lab-on-chip system for biomarker analysis aboard the International Space Station

Shariati Pour, R.;Zangheri, M.;Emamiamin, A.;Calabria, D.;Guardigli, M.;Mirasoli, M.
2025

Abstract

Addressing the context, the system reliability analysis for APHRODITE mission have been done in order to ensure its functionality for the autonomous and real-time analysis on board the ISS. Moreover, this paper emphasizes the magnet complex actuation subsystem in the system overview section. APHRODITE core system consists of a lab-on-chip (LoC) with integrated thin-film sensors in hydrogenated amorphous silicon (a-Si:H) able to host dual-analytes competitive chemiluminescence (CL) immunoassay. APHRODITE’s design allows for ultra-sensitive quantification of these target biomarkers present in sub-molar quantities, using a noninvasive approach. The core technical innovation of APHRODITE lies in functionalized magnetic microbeads that enable parallel multi-analyte tests and multiple subsequent runs on different samples upon a inline washing protocol. This design leverages immunoassays, making it ideal for detecting analytes in small volumes of complex matrices, even at low concentration.
2025
Proceedings of SPIE - The International Society for Optical Engineering
1
14
Abbasrezaee, P., Maipan Davis, N., Nardi, L., De Albuquerque, T., Caputo, D., Lovecchio, N., et al. (2025). Advancing inflight medical diagnostics: the APHRODITE lab-on-chip system for biomarker analysis aboard the International Space Station. SPIE [10.1117/12.3062776].
Abbasrezaee, P.; Maipan Davis, N.; Nardi, L.; De Albuquerque, T.; Caputo, D.; Lovecchio, N.; Shariati Pour, R.; Zangheri, M.; Emamiamin, A.; Calabria,...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1047750
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