Radiotherapy reduces ATP-mediated relaxation in human rectal smooth muscle
Yoon-Hye Kwon, Tae Sik Sung, Young Hyun Yun, Hyunjin Jung, Insuk So, Seung-Bum Ryoo, Kyu Joo ParkRadiation therapy for rectal cancer often causes long-term bowel dysfunction. We investigated radiation-associated motility changes in human rectal smooth muscle, focusing on the role of platelet-derived growth factor receptor alpha-positive (PDGFRα⁺) cells and interstitial cells of Cajal (ICC). Human rectal tissues were obtained from patients undergoing surgery with (n=61) or without (n=51) preoperative concurrent chemoradiotherapy (CCRT). Isometric tension recordings were used to assess myogenic responses to potassium chloride (KCl), acetylcholine (ACh), sodium nitroprusside (SNP), and adenosine triphosphate (ATP). Neurogenic components were assessed using electrical field stimulation. Intracellular microelectrode recordings measured slow wave activity. Expression of interstitial cells, neuronal cells and smooth muscle cells was assessed by immunohistochemistry and quantitative PCR. ATP-induced relaxation and ATP-associated suppression of slow wave activity were significantly attenuated in irradiated rectal tissue, while responses to KCl, ACh, and SNP were preserved. PDGFRα and Kit expression levels were markedly decreased in irradiated tissue (P < 0.001), whereas NOS1, VAChT, and MYH11 expression levels remained unchanged. Immunostaining confirmed reduced PDGFRα⁺ cells and ICC in irradiated tissue. Pelvic irradiation delivered in the context of preoperative CCRT was associated with reduced PDGFRα⁺ cells and ICC, with associated attenuation of ATP-mediated inhibitory responses, which may contribute to rectal dysmotility. These results suggest that preserving purinergic signaling may offer a potential therapeutic approach to improve long-term bowel function after pelvic radiotherapy.