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Two independent modes of kidney stone suppression achieved by AIM/CD5L and KIM-1

Commun Biol. 2022-08; 
Kyohei Matsuura, Natsumi Maehara, Aika Hirota, Ayaka Eguchi, Keisuke Yasuda, Kaori Taniguchi, Akemi Nishijima, Nobuyuki Matsuhashi, Yoshiyuki Shiga, Rumi Ishii, Yasuhiro Iguchi, Kazunari Tanabe, Satoko Arai, Toru Miyazaki
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摘要

The prevalence of kidney stones is increasing and its recurrence rate within the first 5 years is over 50%. No treatments that prevent the occurrence/recurrence of stones have reached the clinic. Here, we show that AIM (also called CD5L) suppresses stone development and improves stone-associated physical damages. The N-terminal domain of AIM associates with calcium oxalate crystals via charge-based interaction to impede the development of stones, whereas the 2nd and C-terminal domains capture the inflammatory DAMPs to promote their phagocytic removal. Accordingly, when stones were induced by glyoxylate in mice, recombinant AIM (rAIM) injection dramatically reduced stone development. Expression of injury molecul... More

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