A spontaneous hyperglycaemic cynomolgus monkey presents cognitive deficits, neurological dysfunction and cataract

Author:

Huang Hongdi1,Pu Jianglin2,Zhou Yufang1,Fan Yang1,Zhang Yali1,Li Yanling1,Chen Yangzhuo13,Wang Yun1,Yu Xiaomei1,Dmitry Bulgin4,Zhou Zhu2,Wang Jianhong1

Affiliation:

1. National Resource Center for Non‐Human Primates, Kunming Primate Research Center and National Research Facility for Phenotypic and Genetic Analysis of Model Animals (Primate Facility) Kunming Institute of Zoology, Chinese Academy of Sciences Kunming China

2. Deparment of Nephrology The First Affiliated Hospital of Kunming Medical University and Yunnan Province Clinical Research Center for Chronic Kidney Disease Kunming China

3. University of Chinese Academy of Sciences Beijing China

4. Research Institute of Medical Primatology National Research Centre “Kurchatov Institute” Sochi Russia

Abstract

AbstractChronic hyperglycaemia is a chief feature of diabetes mellitus and complicates with many systematic anomalies. Non‐human primates (NHPs) are excellent for studying hyperglycaemia or diabetes and associated comorbidities, but lack behavioural observation. In the study, behavioural, brain imaging and histological analysis were performed in a case of spontaneously hyperglycaemic (HGM) Macaca fascicularis. The results were shown that the HGM monkey had persistent body weight loss, long‐term hyperglycaemia, insulin resistance, dyslipidemia, but normal concentrations of insulin, C‐peptide, insulin autoantibody, islet cell antibody and glutamic acid decarboxylase antibody. Importantly, an impaired working memory in a delayed response task and neurological dysfunctions were found in the HGM monkey. The tendency for atrophy in hippocampus was observed by magnetic resonance imaging. Lenticular opacification, lens fibres disruptions and vacuole formation also occurred to the HGM monkey. The data suggested that the spontaneous HGM monkey might present diabetes‐like characteristics and associated neurobehavioral anomalies in this case. This study first reported cognitive deficits in a spontaneous hyperglycaemia NHPs, which might provide evidence to use macaque as a promising model for translational research in diabetes and neurological complications.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

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