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2021A1515012526), Natural Science Foundation of Guangdong Province (2021A1515012526,
2022A1515012651).
Conflicts of interest
All authors declared that there are no conflicts of interest.
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REFERENCES
1. Rai M, Curley M, Coleman Z, Demontis F. Contribution of proteases to the hallmarks of aging and to age-related neurodegeneration.
Aging Cell 2022;21:e13603. DOI PubMed PMC
2. Ransohoff RM. How neuroinflammation contributes to neurodegeneration. Science 2016;353:777-83. DOI PubMed
3. Labzin LI, Heneka MT, Latz E. Innate immunity and neurodegeneration. Annu Rev Med 2018;69:437-49. DOI PubMed
4. Wyss-Coray T. Ageing, neurodegeneration and brain rejuvenation. Nature 2016;539:180-6. DOI PubMed PMC
5. Wareham LK, Liddelow SA, Temple S, et al. Solving neurodegeneration: common mechanisms and strategies for new treatments.
Mol Neurodegener 2022;17:23. DOI PubMed PMC
6. Kabir MT, Uddin MS, Abdeen A, et al. Evidence linking protein misfolding to quality control in progressive neurodegenerative
diseases. Curr Top Med Chem 2020;20:2025-43. DOI PubMed
7. Tu Z, Yang W, Yan S, Guo X, Li XJ. CRISPR/Cas9: a powerful genetic engineering tool for establishing large animal models of
neurodegenerative diseases. Mol Neurodegener 2015;10:35. DOI PubMed PMC
8. Drummond E, Wisniewski T. Alzheimer’s disease: experimental models and reality. Acta Neuropathol 2017;133:155-75. DOI
PubMed PMC
9. Ding SL. Comparative anatomy of the prosubiculum, subiculum, presubiculum, postsubiculum, and parasubiculum in human,
monkey, and rodent. J Comp Neurol 2013;521:4145-62. DOI PubMed
10. Freire-Cobo C, Edler MK, Varghese M, et al. Comparative neuropathology in aging primates: a perspective. Am J Primatol
2021;83:e23299. DOI PubMed PMC
11. Dorus S, Vallender EJ, Evans PD, et al. Accelerated evolution of nervous system genes in the origin of Homo sapiens. Cell
2004;119:1027-40. DOI PubMed
12. Kanthaswamy S, Ng J, Satkoski Trask J, et al. The genetic composition of populations of cynomolgus macaques (Macaca
fascicularis) used in biomedical research. J Med Primatol 2013;42:120-31. DOI PubMed PMC
13. Kumar S, Hedges SB. TimeTree2: species divergence times on the iPhone. Bioinformatics 2011;27:2023-4. DOI PubMed PMC
14. Amiez C, Sallet J, Hopkins WD, et al. Sulcal organization in the medial frontal cortex provides insights into primate brain evolution.
Nat Commun 2019;10:3437. DOI PubMed PMC
15. Zheng N, Li M, Wu Y, et al. A novel technology for in vivo detection of cell type-specific neural connection with AQP1-encoding
rAAV2-retro vector and metal-free MRI. Neuroimage 2022;258:119402. DOI PubMed
16. Garin CM, Hori Y, Everling S, et al. An evolutionary gap in primate default mode network organization. Cell Rep 2022;39:110669.
DOI PubMed PMC
17. Lanciego JL, Vázquez A. The basal ganglia and thalamus of the long-tailed macaque in stereotaxic coordinates. A template atlas
based on coronal, sagittal and horizontal brain sections. Brain Struct Funct 2012;217:613-66. DOI PubMed PMC
18. Zhu J, Qiu A. Chinese adult brain atlas with functional and white matter parcellation. Sci Data 2022;9:352. DOI PubMed PMC
19. Joutsa J, Moussawi K, Siddiqi SH, et al. Brain lesions disrupting addiction map to a common human brain circuit. Nat Med
2022;28:1249-55. DOI PubMed PMC
20. Bjerke IE, Cullity ER, Kjelsberg K, Charan KM, Leergaard TB, Kim JH. DOPAMAP, high-resolution images of dopamine 1 and 2
receptor expression in developing and adult mouse brains. Sci Data 2022;9:175. DOI PubMed PMC
21. Yin P, Li S, Li XJ, Yang W. New pathogenic insights from large animal models of neurodegenerative diseases. Protein Cell
2022;13:707-20. DOI PubMed PMC
22. Hao ZZ, Wei JR, Xiao D, et al. Single-cell transcriptomics of adult macaque hippocampus reveals neural precursor cell populations.
Nat Neurosci 2022;25:805-17. DOI PubMed