TY - JOUR
T1 - Use of an antagonist of HMGB1 in mice affected by malignant mesothelioma
T2 - a preliminary ultrasound and optical imaging study
AU - Venturini, Massimo
AU - Mezzapelle, Rosanna
AU - La Marca, Salvatore
AU - Perani, Laura
AU - Spinelli, Antonello
AU - Crippa, Luca
AU - Colarieti, Anna
AU - Palmisano, Anna
AU - Marra, Paolo
AU - Coppola, Andrea
AU - Fontana, Federico
AU - Carcano, Giulio
AU - Tacchetti, Carlo
AU - Bianchi, Marco
AU - Esposito, Antonio
AU - Crippa, Massimo P.
N1 - Publisher Copyright:
© 2022, The Author(s) under exclusive licence to European Society of Radiology.
PY - 2022/12
Y1 - 2022/12
N2 - Background: Malignant mesothelioma (MM) is an aggressive tumor, with a poor prognosis, usually unresectable due to late diagnosis, mainly treated with chemotherapy. BoxA, a truncated form of “high mobility group box 1” (HMGB1), acting as an HMGB1 antagonist, might exert a defensive action against MM. We investigated the potential of BoxA for MM treatment using experimental 40-MHz ultrasound and optical imaging (OI) in a murine model. Methods: Murine MM cells infected with a lentiviral vector expressing the luciferase gene were injected into the peritoneum of 14 BALB/c mice (7 × 104 AB1-B/c-LUC cells). These mice were randomized to treatment with BoxA (n = 7) or phosphate-buffered saline (controls, n = 7). The experiment was repeated with 40 mice divided into two groups (n = 20 + 20) and treated as above to confirm the result and achieve greater statistical power. Tumor presence was investigated by experimental ultrasound and OI; suspected peritoneal masses underwent histopathology and immunohistochemistry examination. Results: In the first experiment, none of the 7 controls survived beyond day 27, whereas 4/7 BoxA-treated mice (57.1%) survived up to day 70. In the second experiment, 6/20 controls (30.0%) and 16/20 BoxA-treated mice (80.0%) were still alive at day 34 (p = 0.004). In both experiments, histology confirmed the malignant nature of masses detected using experimental ultrasound and OI. Conclusion: In our preclinical experience on a murine model, BoxA seems to exert a protective role toward MM. Both experimental ultrasound and OI proved to be reliable techniques for detecting MM peritoneal masses.
AB - Background: Malignant mesothelioma (MM) is an aggressive tumor, with a poor prognosis, usually unresectable due to late diagnosis, mainly treated with chemotherapy. BoxA, a truncated form of “high mobility group box 1” (HMGB1), acting as an HMGB1 antagonist, might exert a defensive action against MM. We investigated the potential of BoxA for MM treatment using experimental 40-MHz ultrasound and optical imaging (OI) in a murine model. Methods: Murine MM cells infected with a lentiviral vector expressing the luciferase gene were injected into the peritoneum of 14 BALB/c mice (7 × 104 AB1-B/c-LUC cells). These mice were randomized to treatment with BoxA (n = 7) or phosphate-buffered saline (controls, n = 7). The experiment was repeated with 40 mice divided into two groups (n = 20 + 20) and treated as above to confirm the result and achieve greater statistical power. Tumor presence was investigated by experimental ultrasound and OI; suspected peritoneal masses underwent histopathology and immunohistochemistry examination. Results: In the first experiment, none of the 7 controls survived beyond day 27, whereas 4/7 BoxA-treated mice (57.1%) survived up to day 70. In the second experiment, 6/20 controls (30.0%) and 16/20 BoxA-treated mice (80.0%) were still alive at day 34 (p = 0.004). In both experiments, histology confirmed the malignant nature of masses detected using experimental ultrasound and OI. Conclusion: In our preclinical experience on a murine model, BoxA seems to exert a protective role toward MM. Both experimental ultrasound and OI proved to be reliable techniques for detecting MM peritoneal masses.
KW - HMGB1 protein
KW - Mesothelioma (malignant)
KW - Mice (inbred BALB C)
KW - Optical imaging
KW - Ultrasonography
UR - http://www.scopus.com/inward/record.url?scp=85124295028&partnerID=8YFLogxK
U2 - 10.1186/s41747-021-00260-y
DO - 10.1186/s41747-021-00260-y
M3 - Article
SN - 2509-9280
VL - 6
JO - European radiology experimental
JF - European radiology experimental
IS - 1
M1 - 7
ER -