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The Combined Fluorophore and Phosphor Conjugation: A New Design Concept for Simultaneous and Spatially Localized Dual Lifetime Intracellular Sensing of Oxygen and pH. / Solomatina, Anastasia I. ; Chelushkin, Pavel S. ; Su, Shih-Hao; Chou, Pi-Tai; Wu, Cheng-Ham; Tunik, Sergey P. .

In: Chemical Communications, No. 58, 17.11.2021, p. 419-422.

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@article{aeec20b3659c4b73be14370613d68491,
title = "The Combined Fluorophore and Phosphor Conjugation: A New Design Concept for Simultaneous and Spatially Localized Dual Lifetime Intracellular Sensing of Oxygen and pH",
abstract = "In this communication, we propose a new strategy and present the dual pH/O2 lifetime sensor based on covalent conjugation of fluorescein (pH sensor) and orthometalated iridium complex (O2 sensor) to human serum albumin (HSA). The resulting conjugate demonstrates biocompatibility, low toxicity, fast cellular uptake, and displays independent lifetime responses onto variations in media acidity and oxygen concentration that makes it suitable for application as effective pH/O2 probe in luminescent microscopy by using FLIM/PLIM detection mode. The concept applicability has been exemplified by dual spatially and temporally localized intracellular sensing of pH and O2 concentration in living cells.",
author = "Solomatina, {Anastasia I.} and Chelushkin, {Pavel S.} and Shih-Hao Su and Pi-Tai Chou and Cheng-Ham Wu and Tunik, {Sergey P.}",
year = "2021",
month = nov,
day = "17",
doi = "10.1039/D1CC06132A",
language = "English",
pages = "419--422",
journal = "Chemical Communications",
issn = "1359-7345",
publisher = "Royal Society of Chemistry",
number = "58",

}

RIS

TY - JOUR

T1 - The Combined Fluorophore and Phosphor Conjugation: A New Design Concept for Simultaneous and Spatially Localized Dual Lifetime Intracellular Sensing of Oxygen and pH

AU - Solomatina, Anastasia I.

AU - Chelushkin, Pavel S.

AU - Su, Shih-Hao

AU - Chou, Pi-Tai

AU - Wu, Cheng-Ham

AU - Tunik, Sergey P.

PY - 2021/11/17

Y1 - 2021/11/17

N2 - In this communication, we propose a new strategy and present the dual pH/O2 lifetime sensor based on covalent conjugation of fluorescein (pH sensor) and orthometalated iridium complex (O2 sensor) to human serum albumin (HSA). The resulting conjugate demonstrates biocompatibility, low toxicity, fast cellular uptake, and displays independent lifetime responses onto variations in media acidity and oxygen concentration that makes it suitable for application as effective pH/O2 probe in luminescent microscopy by using FLIM/PLIM detection mode. The concept applicability has been exemplified by dual spatially and temporally localized intracellular sensing of pH and O2 concentration in living cells.

AB - In this communication, we propose a new strategy and present the dual pH/O2 lifetime sensor based on covalent conjugation of fluorescein (pH sensor) and orthometalated iridium complex (O2 sensor) to human serum albumin (HSA). The resulting conjugate demonstrates biocompatibility, low toxicity, fast cellular uptake, and displays independent lifetime responses onto variations in media acidity and oxygen concentration that makes it suitable for application as effective pH/O2 probe in luminescent microscopy by using FLIM/PLIM detection mode. The concept applicability has been exemplified by dual spatially and temporally localized intracellular sensing of pH and O2 concentration in living cells.

U2 - 10.1039/D1CC06132A

DO - 10.1039/D1CC06132A

M3 - Article

SP - 419

EP - 422

JO - Chemical Communications

JF - Chemical Communications

SN - 1359-7345

IS - 58

ER -

ID: 88460697