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Main Authors: Sang, Yuan, Zhao, Huiqing, Wu, Jiajun, Zhang, Ting, Xu, Wenbin, Yao, Hui, Liu, Kaihua, Liu, Chang, Zhang, Junbin, Li, Ping, Wu, Depeng, Xu, Yichun, Zhang, Jianying, Hou, Gang
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2507.02231
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author Sang, Yuan
Zhao, Huiqing
Wu, Jiajun
Zhang, Ting
Xu, Wenbin
Yao, Hui
Liu, Kaihua
Liu, Chang
Zhang, Junbin
Li, Ping
Wu, Depeng
Xu, Yichun
Zhang, Jianying
Hou, Gang
author_facet Sang, Yuan
Zhao, Huiqing
Wu, Jiajun
Zhang, Ting
Xu, Wenbin
Yao, Hui
Liu, Kaihua
Liu, Chang
Zhang, Junbin
Li, Ping
Wu, Depeng
Xu, Yichun
Zhang, Jianying
Hou, Gang
contents Hyperosmolarity is a key contributor to nucleus pulposus cell (NPC) apoptosis during intervertebral disc degeneration (IVDD). Aquaporin 3 (AQP3), a membrane channel protein, regulates cellular osmotic balance by transporting water and osmolytes. Although AQP3 downregulation is associated with disc degeneration, its role in apoptosis under hyperosmotic conditions remains unclear. Here, we demonstrate that hyperosmolarity induces AQP3 depletion, suppresses the PI3K/AKT/mTOR signaling pathway, and promotes mitochondrial dysfunction and ROS accumulation in NPCs. Lentiviral overexpression of AQP3 restores this pathway, attenuates oxidative damage, and reduces apoptosis, preserving disc structure in IVDD rat models. In contrast, pharmacological inhibition of AQP3 exacerbates ECM catabolism and NP tissue loss. Our findings reveal that AQP3 deficiency under hyperosmolarity contributes to NPC apoptosis via suppression of PI3K/AKT/mTOR signaling, potentially creating a pathological cycle of disc degeneration. These results highlight AQP3 as a promising therapeutic target for IVDD.
format Preprint
id arxiv_https___arxiv_org_abs_2507_02231
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Downregulation of aquaporin 3 promotes hyperosmolarity-induced apoptosis of nucleus pulposus cells through PI3K/Akt/mTOR pathway suppression
Sang, Yuan
Zhao, Huiqing
Wu, Jiajun
Zhang, Ting
Xu, Wenbin
Yao, Hui
Liu, Kaihua
Liu, Chang
Zhang, Junbin
Li, Ping
Wu, Depeng
Xu, Yichun
Zhang, Jianying
Hou, Gang
Biomolecules
Hyperosmolarity is a key contributor to nucleus pulposus cell (NPC) apoptosis during intervertebral disc degeneration (IVDD). Aquaporin 3 (AQP3), a membrane channel protein, regulates cellular osmotic balance by transporting water and osmolytes. Although AQP3 downregulation is associated with disc degeneration, its role in apoptosis under hyperosmotic conditions remains unclear. Here, we demonstrate that hyperosmolarity induces AQP3 depletion, suppresses the PI3K/AKT/mTOR signaling pathway, and promotes mitochondrial dysfunction and ROS accumulation in NPCs. Lentiviral overexpression of AQP3 restores this pathway, attenuates oxidative damage, and reduces apoptosis, preserving disc structure in IVDD rat models. In contrast, pharmacological inhibition of AQP3 exacerbates ECM catabolism and NP tissue loss. Our findings reveal that AQP3 deficiency under hyperosmolarity contributes to NPC apoptosis via suppression of PI3K/AKT/mTOR signaling, potentially creating a pathological cycle of disc degeneration. These results highlight AQP3 as a promising therapeutic target for IVDD.
title Downregulation of aquaporin 3 promotes hyperosmolarity-induced apoptosis of nucleus pulposus cells through PI3K/Akt/mTOR pathway suppression
topic Biomolecules
url https://arxiv.org/abs/2507.02231