Sex-based differences in cell migration on aligned topographies

Abstract Sexual dimorphism has been observed in many physiological and pathological responses, yet few studies incorporate both female and male experimental groups for preclinical work. For the development of biomaterial devices, in vitro studies are essential for design and optimization, and quanti...

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Main Authors: Yang Hu, Yin Mei Chan, Nicola G. Judge, Matthew L. Becker, Rebecca K. Willits
Format: Article
Language:English
Published: Nature Portfolio 2025-08-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-025-13450-0
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author Yang Hu
Yin Mei Chan
Nicola G. Judge
Matthew L. Becker
Rebecca K. Willits
author_facet Yang Hu
Yin Mei Chan
Nicola G. Judge
Matthew L. Becker
Rebecca K. Willits
author_sort Yang Hu
collection DOAJ
description Abstract Sexual dimorphism has been observed in many physiological and pathological responses, yet few studies incorporate both female and male experimental groups for preclinical work. For the development of biomaterial devices, in vitro studies are essential for design and optimization, and quantitative comparison of female and male cell migratory behavior is a crucial design consideration. In this work, we thoroughly examined sex-based migration on flat controls and aligned nanofiber scaffolds of various diameters using anomalous and random walk models. Male and female cells exhibited significantly different migration on flat substrates, with female cells having increased speed while male cells had higher persistence. Persistence increased with the introduction of aligned fiber topography for female cells, but only affected male cells on the highest fiber diameter. Speed along the axis of alignment differed between sexes on 1.2 and 1.8 µm fibers. Morphological analysis confirmed cell shape was a function of both sex and fiber size. These results provided critical information regarding sex-based cell migration, highlighting the importance of sex within in vitro studies for clinical device design.
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spelling doaj-art-6f06cd8fcaac4199a747f2a7dc99087a2025-08-20T03:42:41ZengNature PortfolioScientific Reports2045-23222025-08-0115111510.1038/s41598-025-13450-0Sex-based differences in cell migration on aligned topographiesYang Hu0Yin Mei Chan1Nicola G. Judge2Matthew L. Becker3Rebecca K. Willits4Department of Chemical Engineering, Northeastern UniversityDepartment of Chemistry, Duke UniversityDepartment of Chemistry, Duke UniversityDepartment of Chemistry, Duke UniversityDepartment of Chemical Engineering, Northeastern UniversityAbstract Sexual dimorphism has been observed in many physiological and pathological responses, yet few studies incorporate both female and male experimental groups for preclinical work. For the development of biomaterial devices, in vitro studies are essential for design and optimization, and quantitative comparison of female and male cell migratory behavior is a crucial design consideration. In this work, we thoroughly examined sex-based migration on flat controls and aligned nanofiber scaffolds of various diameters using anomalous and random walk models. Male and female cells exhibited significantly different migration on flat substrates, with female cells having increased speed while male cells had higher persistence. Persistence increased with the introduction of aligned fiber topography for female cells, but only affected male cells on the highest fiber diameter. Speed along the axis of alignment differed between sexes on 1.2 and 1.8 µm fibers. Morphological analysis confirmed cell shape was a function of both sex and fiber size. These results provided critical information regarding sex-based cell migration, highlighting the importance of sex within in vitro studies for clinical device design.https://doi.org/10.1038/s41598-025-13450-0Schwann cellsSex-based differencesCell migrationNanofibers
spellingShingle Yang Hu
Yin Mei Chan
Nicola G. Judge
Matthew L. Becker
Rebecca K. Willits
Sex-based differences in cell migration on aligned topographies
Scientific Reports
Schwann cells
Sex-based differences
Cell migration
Nanofibers
title Sex-based differences in cell migration on aligned topographies
title_full Sex-based differences in cell migration on aligned topographies
title_fullStr Sex-based differences in cell migration on aligned topographies
title_full_unstemmed Sex-based differences in cell migration on aligned topographies
title_short Sex-based differences in cell migration on aligned topographies
title_sort sex based differences in cell migration on aligned topographies
topic Schwann cells
Sex-based differences
Cell migration
Nanofibers
url https://doi.org/10.1038/s41598-025-13450-0
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AT yinmeichan sexbaseddifferencesincellmigrationonalignedtopographies
AT nicolagjudge sexbaseddifferencesincellmigrationonalignedtopographies
AT matthewlbecker sexbaseddifferencesincellmigrationonalignedtopographies
AT rebeccakwillits sexbaseddifferencesincellmigrationonalignedtopographies