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45 results for “BBParis1984”

  1. Previous tweetorial on the preprint below - briefly, we did not observe any indication of accelerated #ReproAging in the #KOMP Fshr allele, contrary to previous work (on a distinct allele), based on breeding, endocrine markers and histology.
    2/5 twitter.com/BBParis1984/status

  2. Previous tweetorial on the preprint below - briefly, we did not observe any indication of accelerated in the Fshr allele, contrary to previous work (on a distinct allele), based on breeding, endocrine markers and histology.
    2/5 twitter.com/BBParis1984/status

  3. Previous tweetorial on the preprint below - briefly, we did not observe any indication of accelerated #ReproAging in the #KOMP Fshr allele, contrary to previous work (on a distinct allele), based on breeding, endocrine markers and histology.
    2/5 twitter.com/BBParis1984/status

  4. Previous tweetorial on the preprint below - briefly, we did not observe any indication of accelerated #ReproAging in the #KOMP Fshr allele, contrary to previous work (on a distinct allele), based on breeding, endocrine markers and histology.
    2/5 twitter.com/BBParis1984/status

  5. Previous tweetorial on the preprint below - briefly, we did not observe any indication of accelerated #ReproAging in the #KOMP Fshr allele, contrary to previous work (on a distinct allele), based on breeding, endocrine markers and histology.
    2/5 twitter.com/BBParis1984/status

  6. We are glad that the editorial team at #TranslationalMedicineOfAging and the peer-reviewers agreed that these were important results to disseminate to the #ReproAging research community.
    We also thank @[email protected] for supporting our work! @[email protected] 5/5

  7. We are glad that the editorial team at and the peer-reviewers agreed that these were important results to disseminate to the research community.
    We also thank @[email protected] for supporting our work! @[email protected] 5/5

  8. We are glad that the editorial team at #TranslationalMedicineOfAging and the peer-reviewers agreed that these were important results to disseminate to the #ReproAging research community.
    We also thank @[email protected] for supporting our work! @[email protected] 5/5

  9. We are glad that the editorial team at #TranslationalMedicineOfAging and the peer-reviewers agreed that these were important results to disseminate to the #ReproAging research community.
    We also thank @[email protected] for supporting our work! @[email protected] 5/5

  10. We are glad that the editorial team at #TranslationalMedicineOfAging and the peer-reviewers agreed that these were important results to disseminate to the #ReproAging research community.
    We also thank @[email protected] for supporting our work! @[email protected] 5/5

  11. As noted before, although we are disappointed that these mice cannot be used to effectively model menopausal states, we hope our observations will be useful to the #ReproAging community and avoid unnecessary waste of animals/time/resources by other labs. 4/5

  12. We confirmed that the #KOMP allele should correspond to a null allele (confirmed by Sanger🧬), but it seems that the wild-type allele is compensating in this 🐁 strain, leading to normal Fshr expression, ovarian function and absence of #ReproAging phenotype.
    3/5

  13. As noted before, although we are disappointed that these mice cannot be used to effectively model menopausal states, we hope our observations will be useful to the community and avoid unnecessary waste of animals/time/resources by other labs. 4/5

  14. We confirmed that the allele should correspond to a null allele (confirmed by Sanger🧬), but it seems that the wild-type allele is compensating in this 🐁 strain, leading to normal Fshr expression, ovarian function and absence of phenotype.
    3/5

  15. We confirmed that the #KOMP allele should correspond to a null allele (confirmed by Sanger🧬), but it seems that the wild-type allele is compensating in this 🐁 strain, leading to normal Fshr expression, ovarian function and absence of #ReproAging phenotype.
    3/5

  16. As noted before, although we are disappointed that these mice cannot be used to effectively model menopausal states, we hope our observations will be useful to the #ReproAging community and avoid unnecessary waste of animals/time/resources by other labs. 4/5

  17. As noted before, although we are disappointed that these mice cannot be used to effectively model menopausal states, we hope our observations will be useful to the #ReproAging community and avoid unnecessary waste of animals/time/resources by other labs. 4/5

  18. We confirmed that the #KOMP allele should correspond to a null allele (confirmed by Sanger🧬), but it seems that the wild-type allele is compensating in this 🐁 strain, leading to normal Fshr expression, ovarian function and absence of #ReproAging phenotype.
    3/5

  19. As noted before, although we are disappointed that these mice cannot be used to effectively model menopausal states, we hope our observations will be useful to the #ReproAging community and avoid unnecessary waste of animals/time/resources by other labs. 4/5

  20. We confirmed that the #KOMP allele should correspond to a null allele (confirmed by Sanger🧬), but it seems that the wild-type allele is compensating in this 🐁 strain, leading to normal Fshr expression, ovarian function and absence of #ReproAging phenotype.
    3/5

  21. We hope that this study will be a useful resource for #ReproAging research and #TE Biology!
    We also thank @[email protected], our🐠🧙‍♂️#AriAdler and talented #qbio and #mcb undergrad #AlanXu and #KatelynHsu for their help on this study! 9

  22. We hope that this study will be a useful resource for research and Biology!
    We also thank @[email protected], our🐠🧙‍♂️ and talented and undergrad and for their help on this study! 9

  23. We hope that this study will be a useful resource for #ReproAging research and #TE Biology!
    We also thank @[email protected], our🐠🧙‍♂️#AriAdler and talented #qbio and #mcb undergrad #AlanXu and #KatelynHsu for their help on this study! 9

  24. We hope that this study will be a useful resource for #ReproAging research and #TE Biology!
    We also thank @[email protected], our🐠🧙‍♂️#AriAdler and talented #qbio and #mcb undergrad #AlanXu and #KatelynHsu for their help on this study! 9

  25. We hope that this study will be a useful resource for #ReproAging research and #TE Biology!
    We also thank @[email protected], our🐠🧙‍♂️#AriAdler and talented #qbio and #mcb undergrad #AlanXu and #KatelynHsu for their help on this study! 9

  26. These observations are consistent with a progressive relaxation of ovarian TE/genome surveillance with aging in the #killifish 🐟, and may shed light on how the ATK acquired such a huge TE genomic burden! 7/n