Sexual dimorphism in the human olfactory bulb: females have more neurons and glial cells than males

Sex differences in the human olfactory function reportedly exist for olfactory sensitivity, odorant identification and memory, and tasks in which odors are rated based on psychological features such as familiarity, intensity, pleasantness, and others. Which might be the neural bases for these behavi...

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Published inPloS one Vol. 9; no. 11; p. e111733
Main Authors Oliveira-Pinto, Ana V, Santos, Raquel M, Coutinho, Renan A, Oliveira, Lays M, Santos, Gláucia B, Alho, Ana T L, Leite, Renata E P, Farfel, José M, Suemoto, Claudia K, Grinberg, Lea T, Pasqualucci, Carlos A, Jacob-Filho, Wilson, Lent, Roberto
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 05.11.2014
Public Library of Science (PLoS)
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Summary:Sex differences in the human olfactory function reportedly exist for olfactory sensitivity, odorant identification and memory, and tasks in which odors are rated based on psychological features such as familiarity, intensity, pleasantness, and others. Which might be the neural bases for these behavioral differences? The number of cells in olfactory regions, and especially the number of neurons, may represent a more accurate indicator of the neural machinery than volume or weight, but besides gross volume measures of the human olfactory bulb, no systematic study of sex differences in the absolute number of cells has yet been undertaken. In this work, we investigate a possible sexual dimorphism in the olfactory bulb, by quantifying postmortem material from 7 men and 11 women (ages 55-94 years) with the isotropic fractionator, an unbiased and accurate method to estimate absolute cell numbers in brain regions. Female bulbs weighed 0.132 g in average, while male bulbs weighed 0.137 g, a non-significant difference; however, the total number of cells was 16.2 million in females, and 9.2 million in males, a significant difference of 43.2%. The number of neurons in females reached 6.9 million, being no more than 3.5 million in males, a difference of 49.3%. The number of non-neuronal cells also proved higher in women than in men: 9.3 million and 5.7 million, respectively, a significant difference of 38.7%. The same differences remained when corrected for mass. Results demonstrate a sex-related difference in the absolute number of total, neuronal and non-neuronal cells, favoring women by 40-50%. It is conceivable that these differences in quantitative cellularity may have functional impact, albeit difficult to infer how exactly this would be, without knowing the specific circuits cells make. However, the reported advantage of women as compared to men may stimulate future work on sex dimorphism of synaptic microcircuitry in the olfactory bulb.
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Conceived and designed the experiments: AVO-P R. Lent. Performed the experiments: AVO-P RMS RAC LMO GBS ATLA R. Leite JMF CKS LTG CAP WJ-F R. Lent. Analyzed the data: AVO-P LTG R. Lent. Contributed reagents/materials/analysis tools: CAP WJ-F. Contributed to the writing of the manuscript: AVO-P R. Leite CKS LTG R. Lent.
Competing Interests: The authors have declared that no competing interests exist.
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0111733