Quantifying cell death induced by doxorubicin, hyperthermia or HIFU ablation with flow cytometry

Author:

Lyon Paul Christopher,Suomi Visa,Jakeman Philip,Campo Leticia,Coussios Constantin,Carlisle Robert

Abstract

AbstractTriggered release and targeted drug delivery of potent anti-cancer agents using hyperthermia-mediated focused-ultrasound (FUS) is gaining momentum in the clinical setting. In early phase studies, tissue biopsy samples may be harvested to assess drug delivery efficacy and demonstrate lack of instantaneous cell death due to FUS exposure. We present an optimised tissue cell recovery method and a cell viability assay, compatible with intra-cellular doxorubicin. Flow cytometry was used to determine levels of cell death with suspensions comprised of: (i) HT29 cell line exposed to hyperthermia (30 min at 47 °C) and/or doxorubicin, or ex-vivo bovine liver tissue exposed to (ii) hyperthermia (up to 2 h at 45 °C), or (iii) ablative high intensity FUS (HIFU). Flow cytometric analysis revealed maximal cell death in HT29 receiving both heat and doxorubicin insults and increases in both cell granularity (p < 0.01) and cell death (p < 0.01) in cells recovered from ex-vivo liver tissue exposed to hyperthermia and high pressures of HIFU (8.2 MPa peak-to-peak free-field at 1 MHz) relative to controls. Ex-vivo results were validated with microscopy using pan-cytokeratin stain. This rapid, sensitive and highly quantitative cell-viability method is applicable to the small masses of liver tissue typically recovered from a standard core biopsy (5–20 mg) and may be applied to tissues of other histological origins including immunostaining.

Funder

National Institute for Health Research, Oxford Biomedical Research Centre

Oxford Centre for Drug Delivery Devices

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference83 articles.

1. Nakazawa, T. et al. Radiofrequency ablation of hepatocellular carcinoma: Correlation between local tumor progression after ablation and ablative margin. Am. J. Roentgenol. 188(2), 480 (2007).

2. Engelhardt, R. Rational for clinical application of hyperthermia and drugs. Rev. Med. Chir. Soc. Med. Nat. Iasi 91(2), 347 (1987).

3. Kowal, C. D. & Bertino, J. R. Possible benefits of hyperthermia to chemotherapy. Cancer Res. 39(6), 2285–2289 (1979).

4. Issels, R. D. Hyperthermia adds to chemotherapy. Eur. J. Cancer 44, 2546 (2008).

5. Needham, D., Anyarambhatla, G., Kong, G. & Dewhirst, M. W. A new temperature-sensitive liposome for use with mild hyperthermia: Characterization and testing in a human tumor xenograft model. Cancer Res. 60(5), 1197–1201 (2000).

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