Spatial amine metabolomics and histopathology reveal localized brain alterations in subacute traumatic brain injury and the underlying mechanism of herbal treatment

Author:

Hu En12,Tang Tao12,Li You‐mei3,Li Teng12,Zhu Lin12,Ding Ruo‐qi12,Wu Yao12,Huang Qing24,Zhang Wei5,Wu Qian3,Wang Yang12

Affiliation:

1. Department of Integrated Traditional Chinese and Western Medicine, Institute of Integrative Medicine Xiangya Hospital, Central South University Changsha Hunan China

2. National Clinical Research Center for Geriatric Disorders Xiangya Hospital, Central South University Changsha Hunan China

3. College of Chemistry and Chemical Engineering Central South University Changsha Hunan China

4. Department of Neurology Xiangya Hospital, Central South University Changsha Hunan China

5. The College of Integrated Traditional Chinese and Western Medicine Hunan University of Chinese Medicine Changsha Hunan China

Abstract

AbstractIntroductionSpatial changes of amine metabolites and histopathology of the whole brain help to reveal the mechanism of traumatic brain injury (TBI) and treatment.MethodsA newly developed liquid microjunction surface sampling–tandem mass tag–ultra performance liquid chromatography–mass spectrometry technique is applied to profile brain amine metabolites in five brain regions after impact‐induced TBI at the subacute stage. H&E, Nissl, and immunofluorescence staining are performed to spatially correlate microscopical changes to metabolic alterations. Then, bioinformatics, molecular docking, ELISA, western blot, and immunofluorescence are integrated to uncover the mechanism of Xuefu Zhuyu decoction (XFZYD) against TBI.ResultsBesides the hippocampus and cortex, the thalamus, caudate‐putamen, and fiber tracts also show differentiated metabolic changes between the Sham and TBI groups. Fourteen amine metabolites (including isomers such as L‐leucine and L‐isoleucine) are significantly altered in specific regions. The metabolic changes are well matched with the degree of neuronal damage, glia activation, and neurorestoration. XFZYD reverses the dysregulation of several amine metabolites, such as hippocampal Lys‐Phe/Phe‐Lys and dopamine. Also, XFZYD enhances post‐TBI angiogenesis in the hippocampus and the thalamus.ConclusionThis study reveals the local amine‐metabolite and histological changes in the subacute stage of TBI. XFZYD may promote TBI recovery by normalizing amine metabolites and spatially promoting dopamine production and angiogenesis.

Publisher

Wiley

Subject

Pharmacology (medical),Physiology (medical),Psychiatry and Mental health,Pharmacology

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