Lluc Mosteiro
@LlucMosteiro
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Postdoc researcher in #cellplasticity and #Notchpathway at @genentech | PhD in #reprogramming @cnio_cancer
San Francisco, CA
Joined March 2020
π± We propose that the action of Yamanaka factors in modulating the epigenome holds immense potential for enhancing tissue repair and unlocking new therapeutic strategies.
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πIn this review, we explore the latest findings, highlighting how partial reprogramming mirrors natural regeneration and can revolutionize injury recovery.
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π The field of partial reprogramming is rapidly advancing, with groundbreaking discoveries reshaping our understanding of tissue repair!
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So happy to share our Review article about reprogramming and regeneration! https://t.co/Y1lJmSrXYB
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Excited to share that we are looking for a Scientist 3 to join my lab in Regenerative Medicine at Genentech. Apply here ππΌππΌππΌ
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When a lab submits a study is a day to celebrate! I share here a fantastic story where we unveiled that DNA damage promotes an MDM2-NICD axis with strong clinical implications. See our manuscript for details and donβt hesitate to comment it. Please RT https://t.co/0kXbNagAB2
biorxiv.org
Despite major advances in lung cancer clinical management, majority of patients suffering non-small cell lung carcinoma (NSCLC) are treated in first line with platinum in combination with immune...
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As we closed a fantastic year, we wish all the best for 2024 π Pic below: End of Year Celebration @LlucMosteiro lab + Castillo-Azofeifa lab
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5. Therapeutic antibodies or genetic deletion shows that Notch inhibition induces hypothyroidism in mice 6. Alagille syndrome patients (characterized by mutations in Notch) show higher prevalence of hypothyroidism
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3. The developmental pathway Notch is active in TFC1 and it is required for thyroid hormone synthesis and secretion 4. Notch maintain proper mitochondrial activity and ROS production in TFC1
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1. scRNAseq reveals that human and mouse thyroids contain 2 distinct subpopulations of differentiated thyrocytes (TFC1 and TFC2) 2. While TFC1 is the βclassicalβ thyroid hormones producing cell, TFC2 do not express hormone synthesis genes nor thyrocyte TF
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Thrilled to share that our paper is now online! π₯³π₯³ Thanks to all the authors for this titanic effort! See π§΅ for details!
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Excited to share that I am hiring a Scientist 3 to join my lab! If you are a curious and creative scientist, interested in doing cutting edge science in the most stimulating environment, look no more and apply! ππΌππΌππΌ
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Our next preprint is out on @biorxivpreprint! In collaboration with the wonderful @FrukLab, we describe a new tool for longitudinal monitoring of in vivo senescence. Many thanks to @drew_baca for the fantastic work, as well as @Lil2410 and co-authors. https://t.co/wHQGJIAjB8
biorxiv.org
Senescent cells accumulate in multiple age-related disorders, including cancer, exacerbating the pathological manifestations, and the eradication of these cells has emerged as a promising therapeutic...
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The first experiment of the Mosteiro lab! So excited to start my lab with these amazing scientists and looking forward to the adventures ahead! π¬π§¬π§«π₯Όπ©π½βπ¬
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Extremely happy to celebrate 25 years of amazing science and mentorship by Manuel Serrano! Thanks to the organizers, the invited speakers and all participants for such vibrating atmosphere and the @IRBBarcelona for hosting the event! @MariaAbadMendez @HerranzLab @MaraverLab
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We found an increased incidence of hypothyroidism in patients that suffer mutations in Notch genes (Alagille syndrome)
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This hypothyroidism triggers a cascade of thermoregulation defects that disrupt homeostasis such as decreased body temperature, increased heat dissipation and increased brown adipose tissue activity.
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Alterations in Notch signaling in the thyroid (pharmacological by blocking antibodies or genetic) lead to decreased thyroid hormones in serum and hypothyroidism
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Notch is required to maintain proper mitochondrial activity and ROS production in TFC1, essential for the synthesis of thyroid hormones
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