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Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues

Abnormal anaerobic metabolism leads to a lowering of the pH of many tumours, both within specific intracellular organelles and in the surrounding extracellular regions. Information relating to pH-fluctuations in cells and tissues could aid in the identification of neoplastic lesions and in understan...

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Autores principales: Kim, Soo Yeon, Podder, Arup, Lee, Hyunseung, Cho, Youn-Joo, Han, Eun Hee, Khatun, Sabina, Sessler, Jonathan L., Hong, Kwan Soo, Bhuniya, Sankarprasad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162098/
https://www.ncbi.nlm.nih.gov/pubmed/34094247
http://dx.doi.org/10.1039/d0sc03795h
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author Kim, Soo Yeon
Podder, Arup
Lee, Hyunseung
Cho, Youn-Joo
Han, Eun Hee
Khatun, Sabina
Sessler, Jonathan L.
Hong, Kwan Soo
Bhuniya, Sankarprasad
author_facet Kim, Soo Yeon
Podder, Arup
Lee, Hyunseung
Cho, Youn-Joo
Han, Eun Hee
Khatun, Sabina
Sessler, Jonathan L.
Hong, Kwan Soo
Bhuniya, Sankarprasad
author_sort Kim, Soo Yeon
collection PubMed
description Abnormal anaerobic metabolism leads to a lowering of the pH of many tumours, both within specific intracellular organelles and in the surrounding extracellular regions. Information relating to pH-fluctuations in cells and tissues could aid in the identification of neoplastic lesions and in understanding the determinants of carcinogenesis. Here we report an amphiphilic fluorescent pH probe (CS-1) that, as a result of its temporal motion, provides pH-related information in cancer cell membranes and selected intracellular organelles without the need for specific tumour targeting. Time-dependent cell imaging studies reveal that CS-1 localizes within the cancer cell-membrane about 20 min post-incubation. This is followed by migration to the lysosomes at 30 min before being taken up in the mitochondria after about 60 min. Probe CS-1 can selectively label cancer cells and 3D cancer spheroids and be readily observed using the green fluorescence channel (λ(em) = 532 nm). In contrast, CS-1 only labels normal cells marginally, with relatively low Pearson's correlation coefficients being found when co-incubated with standard intracellular organelle probes. Both in vivo and ex vivo experiments provide support for the suggestion that CS-1 acts as a fluorescent label for the periphery of tumours, an effect ascribed to proton-induced aggregation. A much lower response is seen for muscle and liver. Based on the present results, we propose that sensors such as CS-1 may have a role to play in the clinical and pathological detection of tumour tissues or serve as guiding aids for surgery.
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spelling pubmed-81620982021-06-04 Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues Kim, Soo Yeon Podder, Arup Lee, Hyunseung Cho, Youn-Joo Han, Eun Hee Khatun, Sabina Sessler, Jonathan L. Hong, Kwan Soo Bhuniya, Sankarprasad Chem Sci Chemistry Abnormal anaerobic metabolism leads to a lowering of the pH of many tumours, both within specific intracellular organelles and in the surrounding extracellular regions. Information relating to pH-fluctuations in cells and tissues could aid in the identification of neoplastic lesions and in understanding the determinants of carcinogenesis. Here we report an amphiphilic fluorescent pH probe (CS-1) that, as a result of its temporal motion, provides pH-related information in cancer cell membranes and selected intracellular organelles without the need for specific tumour targeting. Time-dependent cell imaging studies reveal that CS-1 localizes within the cancer cell-membrane about 20 min post-incubation. This is followed by migration to the lysosomes at 30 min before being taken up in the mitochondria after about 60 min. Probe CS-1 can selectively label cancer cells and 3D cancer spheroids and be readily observed using the green fluorescence channel (λ(em) = 532 nm). In contrast, CS-1 only labels normal cells marginally, with relatively low Pearson's correlation coefficients being found when co-incubated with standard intracellular organelle probes. Both in vivo and ex vivo experiments provide support for the suggestion that CS-1 acts as a fluorescent label for the periphery of tumours, an effect ascribed to proton-induced aggregation. A much lower response is seen for muscle and liver. Based on the present results, we propose that sensors such as CS-1 may have a role to play in the clinical and pathological detection of tumour tissues or serve as guiding aids for surgery. The Royal Society of Chemistry 2020-08-28 /pmc/articles/PMC8162098/ /pubmed/34094247 http://dx.doi.org/10.1039/d0sc03795h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Kim, Soo Yeon
Podder, Arup
Lee, Hyunseung
Cho, Youn-Joo
Han, Eun Hee
Khatun, Sabina
Sessler, Jonathan L.
Hong, Kwan Soo
Bhuniya, Sankarprasad
Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title_full Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title_fullStr Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title_full_unstemmed Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title_short Self-assembled amphiphilic fluorescent probe: detecting pH-fluctuations within cancer cells and tumour tissues
title_sort self-assembled amphiphilic fluorescent probe: detecting ph-fluctuations within cancer cells and tumour tissues
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162098/
https://www.ncbi.nlm.nih.gov/pubmed/34094247
http://dx.doi.org/10.1039/d0sc03795h
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