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Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice

Accumulation of senescent cells (SNCs) with a senescence‐associated secretory phenotype (SASP) has been implicated as a major source of chronic sterile inflammation leading to many age‐related pathologies. Herein, we provide evidence that a bifunctional immunotherapeutic, HCW9218, with capabilities...

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Autores principales: Shrestha, Niraj, Chaturvedi, Pallavi, Zhu, Xiaoyun, Dee, Michael J., George, Varghese, Janney, Christopher, Egan, Jack O., Liu, Bai, Foster, Mark, Marsala, Lynne, Wong, Pamela, Cubitt, Celia C., Foltz, Jennifer A., Tran, Jennifer, Schappe, Timothy, Hsiao, Karin, Leclerc, Gilles M., You, Lijing, Echeverri, Christian, Spanoudis, Catherine, Carvalho, Ana, Kanakaraj, Leah, Gilkes, Crystal, Encalada, Nicole, Kong, Lin, Wang, Meng, Fang, Byron, Wang, Zheng, Jiao, Jin‐an, Muniz, Gabriela J., Jeng, Emily K., Valdivieso, Nicole, Li, Liying, Deth, Richard, Berrien‐Elliott, Melissa M., Fehniger, Todd A., Rhode, Peter R., Wong, Hing C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10186597/
https://www.ncbi.nlm.nih.gov/pubmed/36967480
http://dx.doi.org/10.1111/acel.13806
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author Shrestha, Niraj
Chaturvedi, Pallavi
Zhu, Xiaoyun
Dee, Michael J.
George, Varghese
Janney, Christopher
Egan, Jack O.
Liu, Bai
Foster, Mark
Marsala, Lynne
Wong, Pamela
Cubitt, Celia C.
Foltz, Jennifer A.
Tran, Jennifer
Schappe, Timothy
Hsiao, Karin
Leclerc, Gilles M.
You, Lijing
Echeverri, Christian
Spanoudis, Catherine
Carvalho, Ana
Kanakaraj, Leah
Gilkes, Crystal
Encalada, Nicole
Kong, Lin
Wang, Meng
Fang, Byron
Wang, Zheng
Jiao, Jin‐an
Muniz, Gabriela J.
Jeng, Emily K.
Valdivieso, Nicole
Li, Liying
Deth, Richard
Berrien‐Elliott, Melissa M.
Fehniger, Todd A.
Rhode, Peter R.
Wong, Hing C.
author_facet Shrestha, Niraj
Chaturvedi, Pallavi
Zhu, Xiaoyun
Dee, Michael J.
George, Varghese
Janney, Christopher
Egan, Jack O.
Liu, Bai
Foster, Mark
Marsala, Lynne
Wong, Pamela
Cubitt, Celia C.
Foltz, Jennifer A.
Tran, Jennifer
Schappe, Timothy
Hsiao, Karin
Leclerc, Gilles M.
You, Lijing
Echeverri, Christian
Spanoudis, Catherine
Carvalho, Ana
Kanakaraj, Leah
Gilkes, Crystal
Encalada, Nicole
Kong, Lin
Wang, Meng
Fang, Byron
Wang, Zheng
Jiao, Jin‐an
Muniz, Gabriela J.
Jeng, Emily K.
Valdivieso, Nicole
Li, Liying
Deth, Richard
Berrien‐Elliott, Melissa M.
Fehniger, Todd A.
Rhode, Peter R.
Wong, Hing C.
author_sort Shrestha, Niraj
collection PubMed
description Accumulation of senescent cells (SNCs) with a senescence‐associated secretory phenotype (SASP) has been implicated as a major source of chronic sterile inflammation leading to many age‐related pathologies. Herein, we provide evidence that a bifunctional immunotherapeutic, HCW9218, with capabilities of neutralizing TGF‐β and stimulating immune cells, can be safely administered systemically to reduce SNCs and alleviate SASP in mice. In the diabetic db/db mouse model, subcutaneous administration of HCW9218 reduced senescent islet β cells and SASP resulting in improved glucose tolerance, insulin resistance, and aging index. In naturally aged mice, subcutaneous administration of HCW9218 durably reduced the level of SNCs and SASP, leading to lower expression of pro‐inflammatory genes in peripheral organs. HCW9218 treatment also reverted the pattern of key regulatory circadian gene expression in aged mice to levels observed in young mice and impacted genes associated with metabolism and fibrosis in the liver. Single‐nucleus RNA Sequencing analysis further revealed that HCW9218 treatment differentially changed the transcriptomic landscape of hepatocyte subtypes involving metabolic, signaling, cell‐cycle, and senescence‐associated pathways in naturally aged mice. Long‐term survival studies also showed that HCW9218 treatment improved physical performance without compromising the health span of naturally aged mice. Thus, HCW9218 represents a novel immunotherapeutic approach and a clinically promising new class of senotherapeutic agents targeting cellular senescence‐associated diseases.
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spelling pubmed-101865972023-05-17 Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice Shrestha, Niraj Chaturvedi, Pallavi Zhu, Xiaoyun Dee, Michael J. George, Varghese Janney, Christopher Egan, Jack O. Liu, Bai Foster, Mark Marsala, Lynne Wong, Pamela Cubitt, Celia C. Foltz, Jennifer A. Tran, Jennifer Schappe, Timothy Hsiao, Karin Leclerc, Gilles M. You, Lijing Echeverri, Christian Spanoudis, Catherine Carvalho, Ana Kanakaraj, Leah Gilkes, Crystal Encalada, Nicole Kong, Lin Wang, Meng Fang, Byron Wang, Zheng Jiao, Jin‐an Muniz, Gabriela J. Jeng, Emily K. Valdivieso, Nicole Li, Liying Deth, Richard Berrien‐Elliott, Melissa M. Fehniger, Todd A. Rhode, Peter R. Wong, Hing C. Aging Cell Research Articles Accumulation of senescent cells (SNCs) with a senescence‐associated secretory phenotype (SASP) has been implicated as a major source of chronic sterile inflammation leading to many age‐related pathologies. Herein, we provide evidence that a bifunctional immunotherapeutic, HCW9218, with capabilities of neutralizing TGF‐β and stimulating immune cells, can be safely administered systemically to reduce SNCs and alleviate SASP in mice. In the diabetic db/db mouse model, subcutaneous administration of HCW9218 reduced senescent islet β cells and SASP resulting in improved glucose tolerance, insulin resistance, and aging index. In naturally aged mice, subcutaneous administration of HCW9218 durably reduced the level of SNCs and SASP, leading to lower expression of pro‐inflammatory genes in peripheral organs. HCW9218 treatment also reverted the pattern of key regulatory circadian gene expression in aged mice to levels observed in young mice and impacted genes associated with metabolism and fibrosis in the liver. Single‐nucleus RNA Sequencing analysis further revealed that HCW9218 treatment differentially changed the transcriptomic landscape of hepatocyte subtypes involving metabolic, signaling, cell‐cycle, and senescence‐associated pathways in naturally aged mice. Long‐term survival studies also showed that HCW9218 treatment improved physical performance without compromising the health span of naturally aged mice. Thus, HCW9218 represents a novel immunotherapeutic approach and a clinically promising new class of senotherapeutic agents targeting cellular senescence‐associated diseases. John Wiley and Sons Inc. 2023-03-26 /pmc/articles/PMC10186597/ /pubmed/36967480 http://dx.doi.org/10.1111/acel.13806 Text en © 2023 HCW Biologics Inc, Washington University School of Medicine and Nova Southeastern University. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Shrestha, Niraj
Chaturvedi, Pallavi
Zhu, Xiaoyun
Dee, Michael J.
George, Varghese
Janney, Christopher
Egan, Jack O.
Liu, Bai
Foster, Mark
Marsala, Lynne
Wong, Pamela
Cubitt, Celia C.
Foltz, Jennifer A.
Tran, Jennifer
Schappe, Timothy
Hsiao, Karin
Leclerc, Gilles M.
You, Lijing
Echeverri, Christian
Spanoudis, Catherine
Carvalho, Ana
Kanakaraj, Leah
Gilkes, Crystal
Encalada, Nicole
Kong, Lin
Wang, Meng
Fang, Byron
Wang, Zheng
Jiao, Jin‐an
Muniz, Gabriela J.
Jeng, Emily K.
Valdivieso, Nicole
Li, Liying
Deth, Richard
Berrien‐Elliott, Melissa M.
Fehniger, Todd A.
Rhode, Peter R.
Wong, Hing C.
Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title_full Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title_fullStr Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title_full_unstemmed Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title_short Immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
title_sort immunotherapeutic approach to reduce senescent cells and alleviate senescence‐associated secretory phenotype in mice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10186597/
https://www.ncbi.nlm.nih.gov/pubmed/36967480
http://dx.doi.org/10.1111/acel.13806
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