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Published on: September 16, 2017
Evaluation of in vivo MRI for detecting midodrine-induced arteritis in rats
Yuta Fujii1,2, Yuka Yoshino1,2, Kazuhiro Chihara1
1Preclinical Research Unit, Sumitomo Pharma Co., Ltd., 3-1-98 Kasugade-naka, Konohana-ku, Osaka 554-0022, Japan.
Abstract:
There are no specific and sensitive biomarkers for arteritis, and the occurrence of arteritis in nonclinical toxicological studies of a candidate drug makes development of the drug very difficult. However, we showed in a previous study that the high signal intensity region around the artery on magnetic resonance imaging (MRI) could be a candidate biomarker for detection of arteritis. The present study was conducted to clarify the details of midodrine hydrochloride (MH)-induced arteritis lesions and whether arteritis induced by a mechanism other than the vasodilatory effect, which was evaluated in a previous study, could be detected by MRI. MH is a selective peripherally acting alpha-1 adrenergic receptor agonist, known to induce arteritis due to its vasoconstrictor action, but there is not enough information about MH-induced arteritis. Based on the data obtained under multiple dosing conditions, MH was administered subcutaneously to each rat once daily for 2 days at a dose level of 40 mg/kg/day for MRI assessment. The mesenteric arteries were examined using in vivo MRI at 1 day or 7 days after administration of the final dose and examined histopathologically. On the day after the final dose, high signal intensity region around the artery was observed in animals with minimal perivascular lesions confirmed by histopathology and not observed in an animal without histological changes. On the 7th day after the final dose, no abnormality was observed in histopathological examinations and no high signal intensity regions were observed by MRI in any animal. In conclusion, although further investigation is needed to confirm that high signal intensity is a reliable biomarker for humans, it is suggested that high signal intensity around the artery could be a versatile candidate biomarker with high specificity and sensitivity.
Insights
High signal intensity around arteries on MRI may serve as a sensitive biomarker for detecting arteritis. This finding could aid in the drug development process by identifying potential issues earlier.
Area of Science:
- Toxicology
- Medical Imaging
- Pharmacology
Background:
- Arteritis lacks specific biomarkers, complicating drug development.
- Previous research suggested MRI's high signal intensity around arteries as a potential arteritis biomarker.
Purpose of the Study:
- To investigate midodrine hydrochloride (MH)-induced arteritis lesions.
- To determine if MRI can detect arteritis induced by mechanisms other than vasodilation.
Main Methods:
- Rats received subcutaneous midodrine hydrochloride (40 mg/kg/day) for 2 days.
- Mesenteric arteries were assessed using in vivo MRI and histopathology 1 and 7 days post-administration.
Main Results:
- High signal intensity around arteries on MRI correlated with minimal perivascular lesions on day 1.
- No MRI abnormalities or histological changes were observed on day 7.
- The MRI finding was absent in animals without histological arteritis.
Conclusions:
- High signal intensity around arteries shows potential as a specific and sensitive biomarker for arteritis.
- Further research is needed to validate this MRI finding in humans.

