Effects of Roscovitine and Serum Starvation on the Viability and G 0 /G 1 Synchronization in Somatic Cells from the Antillean Manatee ( Trichechus manatus manatus , Linnaeus 1758)

ABSTRACT The success of nuclear reprogramming techniques, including the G 0 /G 1 synchronization of somatic cells, depends on species‐specific optimization. While roscovitine and serum starvation have been successfully applied in domestic and wild terrestrial mammals, their use in aquatic mammals remains poorly investigated. The development of cellular reprogramming protocols in Antillean manatees, a flagship and endangered aquatic species, represents a promising tool for advancing conservation efforts. This study evaluated the effects of 10 µM roscovitine (12 and 24 h) and serum starvation (0.5% serum for 24 h) on G 0 /G 1 phase synchronization and viability in somatic cells of the Antillean manatee using flow cytometry. Additionally, we assessed cell morphology, viability, and apoptosis through microscopy‐based analyses. The results showed that neither serum starvation (68.4%) nor roscovitine treatment (12 h: 84.3%; 24 h: 79.3%) enhanced G 0 /G 1 synchronization compared to the control group (83.4%). Serum starvation significantly reduced the proportion of G 0 /G 1 ‐phase cells compared to the 12 h roscovitine group and the control ( p < 0.05). No differences were observed in morphology or viability across groups ( p > 0.05). However, extended exposure to roscovitine (24 h) increased apoptotic markers compared to the control group. In summary, although roscovitine (12 h) and serum starvation did not compromise cell viability, neither method effectively induced G 0 /G 1 synchronization under the conditions tested. Studies are needed to elucidate the in vitro behavior of Antillean manatee somatic cells and to optimize protocols for nuclear reprogramming applications.

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Publication Details

Journal
Zoo Biology
Published
2026-09-01
DOI
https://doi.org/10.1002/zoo.70108
Primary Topic
Pluripotent Stem Cells Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Effects of Roscovitine and Serum Starvation on the Viability and G 0 /G 1 Synchronization in Somatic Cells from the Antillean Manatee ( Trichechus manatus manatus , Linnaeus 1758)

Maria Cláudia dos Santos Luciano, Alexsandra Fernandes Pereira, Fernanda Löffler Niemeyer Attademo, João Vitor da Silva Viana et al.
Zoo Biology
Pluripotent Stem Cells Research
article

Effects of Roscovitine and Serum Starvation on the Viability and G 0 /G 1 Synchronization in Somatic Cells from the Antillean Manatee ( Trichechus manatus manatus , Linnaeus 1758)

Maria Cláudia dos Santos Luciano, Alexsandra Fernandes Pereira, Fernanda Löffler Niemeyer Attademo, João Vitor da Silva Viana, Luanna Lorenna Vieira Rodrigues, Radan Elvis Matias de Oliveira, Cláudia Pessoa, Fabia Oliveira Luna, Sarah Sant'Anna Maranhão, Lhara Ricarliany Medeiros de Oliveira, Leonardo Vitorino Costa de Aquino
article en

Abstract

ABSTRACT The success of nuclear reprogramming techniques, including the G 0 /G 1 synchronization of somatic cells, depends on species‐specific optimization. While roscovitine and serum starvation have been successfully applied in domestic and wild terrestrial mammals, their use in aquatic mammals remains poorly investigated. The development of cellular reprogramming protocols in Antillean manatees, a flagship and endangered aquatic species, represents a promising tool for advancing conservation efforts. This study evaluated the effects of 10 µM roscovitine (12 and 24 h) and serum starvation (0.5% serum for 24 h) on G 0 /G 1 phase synchronization and viability in somatic cells of the Antillean manatee using flow cytometry. Additionally, we assessed cell morphology, viability, and apoptosis through microscopy‐based analyses. The results showed that neither serum starvation (68.4%) nor roscovitine treatment (12 h: 84.3%; 24 h: 79.3%) enhanced G 0 /G 1 synchronization compared to the control group (83.4%). Serum starvation significantly reduced the proportion of G 0 /G 1 ‐phase cells compared to the 12 h roscovitine group and the control ( p < 0.05). No differences were observed in morphology or viability across groups ( p > 0.05). However, extended exposure to roscovitine (24 h) increased apoptotic markers compared to the control group. In summary, although roscovitine (12 h) and serum starvation did not compromise cell viability, neither method effectively induced G 0 /G 1 synchronization under the conditions tested. Studies are needed to elucidate the in vitro behavior of Antillean manatee somatic cells and to optimize protocols for nuclear reprogramming applications.

Zoo Biology
Universidade Federal do Ceará (BR), Hospital Haroldo Juaçaba (BR), Instituto Chico Mendes de Conservação da Biodiversidade (BR), Universidade Federal Rural do Semi-Árido (BR)
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior, Conselho Nacional de Desenvolvimento Científico e Tecnológico, Financiadora de Estudos e Projetos, Instituto Chico Mendes de Conservação da Biodiversidade
Life in Land
Openalex Percentile: Top 18%
Pluripotent Stem Cells Research
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