BACKGROUND: The current method for generating an animal model of spinal cord (SC) infarction is highly invasive and permits only short-term observation, typically limited to 28 days. OBJECTIVE: We aimed to establish a rat model characterised by long-term survival and enduring SC dysfunction by inducing selective ischaemic SC damage. METHODS: In 8-week-old male Wistar rats, a convection-enhanced delivery technique was applied to selectively deliver endothelin-1 (ET-1) to the anterior horn of the SC at the Th13 level, leading to SC infarction. The Basso, Beattie and Bresnahan (BBB) locomotor score was assessed for 56 days. The SC was examined by a laser tissue blood flowmeter, MRI, immunohistochemistry, triphenyl tetrazolium chloride (TTC) staining, Western blots and TUNEL staining. RESULTS: The puncture method was used to bilaterally inject 0.7âµL ET-1 (2.5âmg/mL) from the lateral SC into the anterior horns (40° angle, 1.5âmm depth) near the posterior root origin. Animals survived until day 56 and the BBB score was stably maintained (5.5±1.0 at day 14 and 6.2±1.0 at day 56). Rats with BBB scores â¤1 on day 1 showed stable scores of 5-6 after day 14 until day 56 while rats with BBB scores >1 on day 1 exhibited only minor dysfunction with BBB scores >12 after day 14. TTC staining, immunostaining and TUNEL staining revealed selective ischaemia and neuronal cell death in the anterior horn. T2-weighted MR images showed increasing signal intensity at the SC infarction site over time. Western blots revealed apoptosis and subsequent inflammation in SC tissue after ET-1 administration. CONCLUSIONS: Selective delivery of ET-1 into the SC allows for more precise localisation of the infarcted area at the targeted site and generates a rat SC infarction model with stable neurological dysfunction lasting 56 days.
New rat model of spinal cord infarction with long-lasting functional disabilities generated by intraspinal injection of endothelin-1.
通过脊髓内注射内皮素-1,建立了一种新的大鼠脊髓梗死模型,该模型可产生持久的功能障碍
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作者:Otani Masayuki, Kushida Yoshihiro, Kuroda Yasumasa, Wakao Shohei, Oguma Yo, Sasaki Keisuke, Katahira Shintaro, Terai Ryohei, Ryoke Rie, Nonaka Hiroi, Kawashima Ryuta, Saiki Yoshikatsu, Dezawa Mari
| 期刊: | Stroke and Vascular Neurology | 影响因子: | 4.900 |
| 时间: | 2025 | 起止号: | 2025 Apr 29; 10(2):e002962 |
| doi: | 10.1136/svn-2023-002962 | 种属: | Rat |
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