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Acrylamide exposure impairs blood-cerebrospinal fluid barrier function 被引量:4

Acrylamide exposure impairs blood-cerebrospinal fluid barrier function
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摘要 Previous studies show that chronic acrylamide exposure leads to central and peripheral neu- ropathy. However, the underlying mechanisms remained unclear. In this study, we examined the permeability of the blood-cerebrospinal fluid barrier, and its ability to secrete transthyretin and transport leptin of rats exposed to acrylamide for 7, 14, 21 or 28 days. Transthyretin levels in cerebrospinal fluid began to decline on day 7 after acrylamide exposure. The sodium fluorescein level in cerebrospinal fluid was increased on day 14 after exposure. Evans blue concentration in cerebrospinal fluid was increased and the cerebrospinal fluid/serum leptin ratio was decreased on days 21 and 28 after exposure. In comparison, the cerebrospinal fluid/serum albumin ratio was increased on day 28 after exposure. Our findings show that acrylamide exposure damages the blood-cerebrospinal fluid barrier and impairs secretory and transport functions. These changes may underlie acrylamide-induced neurotoxicity. Previous studies show that chronic acrylamide exposure leads to central and peripheral neu- ropathy. However, the underlying mechanisms remained unclear. In this study, we examined the permeability of the blood-cerebrospinal fluid barrier, and its ability to secrete transthyretin and transport leptin of rats exposed to acrylamide for 7, 14, 21 or 28 days. Transthyretin levels in cerebrospinal fluid began to decline on day 7 after acrylamide exposure. The sodium fluorescein level in cerebrospinal fluid was increased on day 14 after exposure. Evans blue concentration in cerebrospinal fluid was increased and the cerebrospinal fluid/serum leptin ratio was decreased on days 21 and 28 after exposure. In comparison, the cerebrospinal fluid/serum albumin ratio was increased on day 28 after exposure. Our findings show that acrylamide exposure damages the blood-cerebrospinal fluid barrier and impairs secretory and transport functions. These changes may underlie acrylamide-induced neurotoxicity.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2014年第5期555-560,共6页 中国神经再生研究(英文版)
基金 supported by State Key Development Program for Basic Research of China,No.2012CB525002 the National Natural Science Foundation of China,No.30771823
关键词 nerve regeneration brain injury ACRYLAMIDE blood-cerebrospinal fluid barrier tight junction PERMEABILITY thyroid hormone LEPTIN cerebrospinal fluid^serum albumin ratio cerebro- spinal fluid NSFC grant neural regeneration nerve regeneration brain injury acrylamide blood-cerebrospinal fluid barrier tight junction permeability thyroid hormone leptin cerebrospinal fluid^serum albumin ratio cerebro- spinal fluid NSFC grant neural regeneration
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