Kinin B1 and B2 receptors mediate cancer pain associated with both the tumor and oncology therapy using aromatase inhibitors

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作者
Indiara Brusco
Gabriela Becker
Tais Vidal Palma
Micheli Mainardi Pillat
Rahisa Scussel
Bethina Trevisol Steiner
Tuane Bazanella Sampaio
Daniel Mendes Pereira Ardisson-Araújo
Cinthia Melazzo de Andrade
Mauro Schneider Oliveira
Ricardo Andrez Machado-De-Avila
Sara Marchesan Oliveira
机构
[1] Federal University of Santa Maria,Graduate Program in Biological Sciences: Biochemistry Toxicology, Department of Biochemistry and Molecular Biology
[2] Federal University of Santa Maria,Department of Microbiology and Parasitology
[3] University of Extreme South Catarinense,Graduate Program in Health Sciences
[4] Federal University of Santa Maria,Graduate Program in Pharmacology, Department of Physiology and Pharmacology
[5] University of Brasilia,Department of Cell Biology, Institute of Biological Sciences
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Scientific Reports | / 13卷
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摘要
Pain caused by the tumor or aromatase inhibitors (AIs) is a disabling symptom in breast cancer survivors. Their mechanisms are unclear, but pro-algesic and inflammatory mediators seem to be involved. Kinins are endogenous algogenic mediators associated with various painful conditions via B1 and B2 receptor activation, including chemotherapy-induced pain and breast cancer proliferation. We investigate the involvement of the kinin B1 and B2 receptors in metastatic breast tumor (4T1 breast cancer cells)-caused pain and in aromatase inhibitors (anastrozole or letrozole) therapy-associated pain. A protocol associating the tumor and antineoplastic therapy was also performed. Kinin receptors’ role was investigated via pharmacological antagonism, receptors protein expression, and kinin levels. Mechanical and cold allodynia and muscle strength were evaluated. AIs and breast tumor increased kinin receptors expression, and tumor also increased kinin levels. AIs caused mechanical allodynia and reduced the muscle strength of mice. Kinin B1 (DALBk) and B2 (Icatibant) receptor antagonists attenuated these effects and reduced breast tumor-induced mechanical and cold allodynia. AIs or paclitaxel enhanced breast tumor-induced mechanical hypersensitivity, while DALBk and Icatibant prevented this increase. Antagonists did not interfere with paclitaxel's cytotoxic action in vitro. Thus, kinin B1 or B2 receptors can be a potential target for treating the pain caused by metastatic breast tumor and their antineoplastic therapy.
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