Transcutaneous oxegen measurement in the area of soft tissue radiation-induced fibrosis in patients with breast cancer

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Abstract

Late radiation injury in the form of radiation-induced fibrosis is one of the many complications of radiation therapy. In current literature, pathogenesis of radiation-induced fibrosis is considered from several angles. According to one of the hypotheses, the main cause of pathogenesis of radiation-induced fibrosis is damage of the blood vessels caused by radiation. Another hypothesis insists that radiation causes depletion of specific cell populations in the irradiated area, reducing the number of stem cells (mostly, fibroblasts).

Based on our first-hand experience in treating late radiation injures of soft tissues in patients with breast cancer, we measured oxygen perfusion of the skin (TсPО2) in the area of late radiation injury using a transcutaneous monitor TCM 400 (Radiometer, Denmark). The obtained results may give a new insight into pathogenesis of late radiation injures.

About the authors

E. E. Topuzov

North-Western State Medical University named after I.I. Mechnikov

Author for correspondence.
Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

T. T. Agishev

Leningrad Regional Oncology Dispensary

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

K. A. Fedorov

Leningrad Regional Oncology Dispensary

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

D. A. Krasnozhon

Leningrad Regional Oncology Dispensary

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

A. B. Vats

Leningrad Regional Oncology Dispensary

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

D. V. Romanovsky

Leningrad Regional Oncology Dispensary

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

G. A. Dashyan

N.N. Petrov Research Institute of Oncology

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

A. A. Sidikov

Saint Petersburg State Pediatric Medical University

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

A. A. Ovsyannikov

North-Western State Medical University named after I.I. Mechnikov

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

S. N. Sadygova

North-Western State Medical University named after I.I. Mechnikov

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

E. V. Prikhod’ko

North-Western State Medical University named after I.I. Mechnikov

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

M. H. Kasyanova

North-Western State Medical University named after I.I. Mechnikov

Email: tagishev@gmail.com
Russian Federation, Saint Petersburg

References

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Supplementary files

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1. JATS XML
2. Fig. 1. Principle of operation of a transcutaneous monitor (adapted from the www.radiometer.ru)

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3. Fig. 2. Determination of oxygen perfusion in the radiation-induced fibrosis area in a patient with breast cancer

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4. Fig. 3. Determination of oxygen perfusion the healthy tissue in a patient with breast cancer

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5. Fig. 4. Mean tacross skinО2 value, mmHg: 1 — tissues with late radiation injury; 2 — healthy tissues

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Copyright (c) 2018 Topuzov E.E., Agishev T.T., Fedorov K.A., Krasnozhon D.A., Vats A.B., Romanovsky D.V., Dashyan G.A., Sidikov A.A., Ovsyannikov A.A., Sadygova S.N., Prikhod’ko E.V., Kasyanova M.H.

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