João Vitor da Silva Viana, Lhara Ricarliany Medeiros de Oliveira, Luanna Lorenna Vieira Rodrigues, Yasmin Beatriz França Moura, Antonia Beatriz Mendonça Pereira, Patrícia Vasconcelos Alves, Herlon Victor Rodrigues Silva, Alexsandra Fernandes Pereira
{"title":"细胞外低温保护剂与二甲基亚砜在保护北方虎猫成纤维细胞方面没有协同作用。","authors":"João Vitor da Silva Viana, Lhara Ricarliany Medeiros de Oliveira, Luanna Lorenna Vieira Rodrigues, Yasmin Beatriz França Moura, Antonia Beatriz Mendonça Pereira, Patrícia Vasconcelos Alves, Herlon Victor Rodrigues Silva, Alexsandra Fernandes Pereira","doi":"10.1016/j.cryobiol.2024.105169","DOIUrl":null,"url":null,"abstract":"<p><p>The success of somatic cell cryobanks is dependent on establishing reproducible cryopreservation methodologies. We supposed that associated extracellular cryoprotectants (sucrose and L-proline) with 2.5 or 10% dimethyl sulfoxide (Me<sub>2</sub>SO) could guarantee better northern tiger cat cells quality rates after thawing when compared to Me<sub>2</sub>SO alone. Therefore, we evaluated the effects of sucrose or L-proline with 2.5 or 10% Me<sub>2</sub>SO on the cryopreservation of northern tiger cat fibroblasts. Somatic cells were also cryopreserved with 2.5% or 10% Me<sub>2</sub>SO alone. All cells were analyzed for morphology, membrane integrity, proliferative activity, metabolism, apoptosis classification, reactive oxygen species (ROS) levels, and mitochondrial membrane potential (ΔΨm). Regardless of the cryoprotective solution, cryopreservation did not affect morphology, membrane integrity after culture, proliferative activity, and metabolism (P > 0.05). However, immediately after thawing, 2.5% Me<sub>2</sub>SO with L-proline and 10% Me<sub>2</sub>SO promoted higher rates of membrane integrity when compared to the other cryopreserved groups (P < 0.05). Interestingly, cells cryopreserved with 10% Me<sub>2</sub>SO maintained ROS levels similar to non-cryopreserved cells (P > 0.05). However, the percentage of viable cells evaluated by apoptosis classification was reduced when using 10% Me<sub>2</sub>SO with L-proline compared to non-cryopreserved groups (P < 0.05). Additionally, ΔΨm was altered in all cryopreserved groups (P < 0.05). In summary, sucrose and L-proline were less effective in cryopreservation of northern tiger cat fibroblasts in the presence of 2.5% or 10% Me<sub>2</sub>SO. Also, 10% Me<sub>2</sub>SO appears to be the most suitable cryoprotectant for the formation of cryobanks of this species.</p>","PeriodicalId":10897,"journal":{"name":"Cryobiology","volume":" ","pages":"105169"},"PeriodicalIF":2.3000,"publicationDate":"2024-11-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"No synergistic effect of extracellular cryoprotectants with dimethyl sulfoxide in the conservation of northern tiger cat fibroblasts.\",\"authors\":\"João Vitor da Silva Viana, Lhara Ricarliany Medeiros de Oliveira, Luanna Lorenna Vieira Rodrigues, Yasmin Beatriz França Moura, Antonia Beatriz Mendonça Pereira, Patrícia Vasconcelos Alves, Herlon Victor Rodrigues Silva, Alexsandra Fernandes Pereira\",\"doi\":\"10.1016/j.cryobiol.2024.105169\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The success of somatic cell cryobanks is dependent on establishing reproducible cryopreservation methodologies. We supposed that associated extracellular cryoprotectants (sucrose and L-proline) with 2.5 or 10% dimethyl sulfoxide (Me<sub>2</sub>SO) could guarantee better northern tiger cat cells quality rates after thawing when compared to Me<sub>2</sub>SO alone. Therefore, we evaluated the effects of sucrose or L-proline with 2.5 or 10% Me<sub>2</sub>SO on the cryopreservation of northern tiger cat fibroblasts. Somatic cells were also cryopreserved with 2.5% or 10% Me<sub>2</sub>SO alone. All cells were analyzed for morphology, membrane integrity, proliferative activity, metabolism, apoptosis classification, reactive oxygen species (ROS) levels, and mitochondrial membrane potential (ΔΨm). Regardless of the cryoprotective solution, cryopreservation did not affect morphology, membrane integrity after culture, proliferative activity, and metabolism (P > 0.05). However, immediately after thawing, 2.5% Me<sub>2</sub>SO with L-proline and 10% Me<sub>2</sub>SO promoted higher rates of membrane integrity when compared to the other cryopreserved groups (P < 0.05). Interestingly, cells cryopreserved with 10% Me<sub>2</sub>SO maintained ROS levels similar to non-cryopreserved cells (P > 0.05). However, the percentage of viable cells evaluated by apoptosis classification was reduced when using 10% Me<sub>2</sub>SO with L-proline compared to non-cryopreserved groups (P < 0.05). Additionally, ΔΨm was altered in all cryopreserved groups (P < 0.05). In summary, sucrose and L-proline were less effective in cryopreservation of northern tiger cat fibroblasts in the presence of 2.5% or 10% Me<sub>2</sub>SO. 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No synergistic effect of extracellular cryoprotectants with dimethyl sulfoxide in the conservation of northern tiger cat fibroblasts.
The success of somatic cell cryobanks is dependent on establishing reproducible cryopreservation methodologies. We supposed that associated extracellular cryoprotectants (sucrose and L-proline) with 2.5 or 10% dimethyl sulfoxide (Me2SO) could guarantee better northern tiger cat cells quality rates after thawing when compared to Me2SO alone. Therefore, we evaluated the effects of sucrose or L-proline with 2.5 or 10% Me2SO on the cryopreservation of northern tiger cat fibroblasts. Somatic cells were also cryopreserved with 2.5% or 10% Me2SO alone. All cells were analyzed for morphology, membrane integrity, proliferative activity, metabolism, apoptosis classification, reactive oxygen species (ROS) levels, and mitochondrial membrane potential (ΔΨm). Regardless of the cryoprotective solution, cryopreservation did not affect morphology, membrane integrity after culture, proliferative activity, and metabolism (P > 0.05). However, immediately after thawing, 2.5% Me2SO with L-proline and 10% Me2SO promoted higher rates of membrane integrity when compared to the other cryopreserved groups (P < 0.05). Interestingly, cells cryopreserved with 10% Me2SO maintained ROS levels similar to non-cryopreserved cells (P > 0.05). However, the percentage of viable cells evaluated by apoptosis classification was reduced when using 10% Me2SO with L-proline compared to non-cryopreserved groups (P < 0.05). Additionally, ΔΨm was altered in all cryopreserved groups (P < 0.05). In summary, sucrose and L-proline were less effective in cryopreservation of northern tiger cat fibroblasts in the presence of 2.5% or 10% Me2SO. Also, 10% Me2SO appears to be the most suitable cryoprotectant for the formation of cryobanks of this species.
期刊介绍:
Cryobiology: International Journal of Low Temperature Biology and Medicine publishes research articles on all aspects of low temperature biology and medicine.
Research Areas include:
• Cryoprotective additives and their pharmacological actions
• Cryosurgery
• Freeze-drying
• Freezing
• Frost hardiness in plants
• Hibernation
• Hypothermia
• Medical applications of reduced temperature
• Perfusion of organs
• All pertinent methodologies
Cryobiology is the official journal of the Society for Cryobiology.