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April 24, 2026Journal of Anatomy1 citationsOpen Access

The MacBrain Resource Center ( MBRC ) rhesus macaque embryonic brain histology datasets

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VMValeria Mendoza-SilvaEBEmma BurkeLGLucy Greene

Key Points

  • The aim is to provide digital datasets of rhesus macaque embryonic brain histological sections for research.
  • Documenting existing samples and data within the MacBrain Resource Center
  • Processing 24 embryonic brains with various cellular and fiber markers
  • Staining thousands of coronal sections for detailed analysis
  • Over 100 specimens documented from existing collections
  • 24 processed embryonic brains enriched with 38 different cellular and fiber markers
  • Datasets facilitate comparative studies in neurodevelopment and evolutionary biology

Abstract

Datasets for the study of developing Non-Human Primate (NHP) brain are scarce. Some of the reasons are related to the financial and technical obstacles that make the production of these datasets logistically challenging. NHP embryos of different and verified developmental ages require timed pregnancies and the maintenance of expensive and highly regulated breeding colonies. Here, we document our efforts to provide digital datasets of rhesus macaque (Macaca mulatta) embryonic brain histological series of sections that can be used and reused for research. These efforts fall well within the primary mission of the MacBrain Resource Center (MBRC, https://medicine.yale.edu/neuroscience/macbrain/mission/), which targets a reduction in the need to sacrifice animals, improved efficiency in the use of resources, the use of male (M) and female (F) specimens to conduct developmental research, and increase archival and sharing of materials for the advancement of neuroscience. First, we describe the already existent tritiated thymidine (3H-TdR) cases in MBRC Collection 1 and the electron microscopy (EM) blocks of Collection 5, which together contain >100 specimens of different developmental ages. We also report methodological details on, as of July 2025, n = 24 histo- and immunohistochemically processed embryonic brains that enrich Collection 6 with thousands of coronal sections stained for n = 38 different cellular and fiber markers. These datasets provide NHP brain histo- and immunohistology for comparison with other species and hence help close a gap in the availability of suitable materials for comparative evolution and neurodevelopmental studies. Through examples, we illustrate how different materials are currently being used in de novo research. Finally, we advocate the absolute need to continue using NHPs in the study of neurodevelopment because of the unparalleled molecular, genetic, and anatomical similarities between these animal models and humans.

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Cite This Study

Mendoza-Silva et al. (2026) studied this question.

synapsesocial.com/papers/69eb08ef553a5433e34b39f0https://doi.org/10.1111/joa.70161
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