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MyD88 in osteoclast and osteoblast lineages differentially controls bone remodeling in homeostasis and malaria.
Alshaweesh, Jalal; Dash, Rashmi; Lee, Michelle S J; Kahyaoglu, Pinar; Erci, Ece; Xu, Mengling; Matsuo-Dapaah, Julia; Del Rosario Zorrilla, Camila; Aykac, Kubra; Ekemen, Suheyla; Kobiyama, Kouji; Ishii, Ken J; Coban, Cevayir.
Afiliación
  • Alshaweesh J; Division of Malaria Immunology, Department of Microbiology and Immunology, The Institute of Medical Science (IMSUT), The University of Tokyo, Tokyo 108-8639, Japan.
  • Dash R; International Vaccine Design Center, IMSUT, The University of Tokyo, Tokyo 108-8639, Japan.
  • Lee MSJ; The University of Tokyo Pandemic Preparedness, Infection and Advanced Research Center (UTOPIA), The University of Tokyo, Tokyo 108-8639, Japan.
  • Kahyaoglu P; Division of Malaria Immunology, Department of Microbiology and Immunology, The Institute of Medical Science (IMSUT), The University of Tokyo, Tokyo 108-8639, Japan.
  • Erci E; Department of Computational Biology and Medical Science (CBMS), Graduate School of Frontier Sciences, University of Tokyo, Tokyo 108-8639, Japan.
  • Xu M; Division of Malaria Immunology, Department of Microbiology and Immunology, The Institute of Medical Science (IMSUT), The University of Tokyo, Tokyo 108-8639, Japan.
  • Matsuo-Dapaah J; International Vaccine Design Center, IMSUT, The University of Tokyo, Tokyo 108-8639, Japan.
  • Del Rosario Zorrilla C; The University of Tokyo Pandemic Preparedness, Infection and Advanced Research Center (UTOPIA), The University of Tokyo, Tokyo 108-8639, Japan.
  • Aykac K; Immunology Frontier Research Center (IFReC), Osaka University, Osaka 565-0871, Japan.
  • Ekemen S; Department of Paediatrics, Hacettepe University School of Medicine, Ankara 06100, Turkey.
  • Kobiyama K; Immunology Frontier Research Center (IFReC), Osaka University, Osaka 565-0871, Japan.
  • Ishii KJ; Department of Paediatrics, Hacettepe University School of Medicine, Ankara 06100, Turkey.
  • Coban C; Division of Malaria Immunology, Department of Microbiology and Immunology, The Institute of Medical Science (IMSUT), The University of Tokyo, Tokyo 108-8639, Japan.
Int Immunol ; 36(9): 451-464, 2024 Aug 13.
Article en En | MEDLINE | ID: mdl-38642134
ABSTRACT
Chronic bone loss is an under-recognized complication of malaria, the underlying mechanism of which remains incompletely understood. We have previously shown that persistent accumulation of Plasmodium products in the bone marrow leads to chronic inflammation in osteoblast (OB) and osteoclast (OC) precursors causing bone loss through MyD88, an adaptor molecule for diverse inflammatory signals. However, the specific contribution of MyD88 signaling in OB or OC precursors in malaria-induced bone loss remains elusive. To assess the direct cell-intrinsic role of MyD88 signaling in adult bone metabolism under physiological and infection conditions, we used the Lox-Cre system to specifically deplete MyD88 in the OB or OC lineages. Mice lacking MyD88 primarily in the maturing OBs showed a comparable decrease in trabecular bone density by microcomputed tomography to that of controls after Plasmodium yoelii non-lethal infection. In contrast, mice lacking MyD88 in OC precursors showed significantly less trabecular bone loss than controls, suggesting that malaria-mediated inflammatory mediators are primarily controlled by MyD88 in the OC lineage. Surprisingly, however, depletion of MyD88 in OB, but not in OC, precursors resulted in reduced bone mass with decreased bone formation rates in the trabecular areas of femurs under physiological conditions. Notably, insulin-like growth factor-1, a key molecule for OB differentiation, was significantly lower locally and systemically when MyD88 was depleted in OBs. Thus, our data demonstrate an indispensable intrinsic role for MyD88 signaling in OB differentiation and bone formation, while MyD88 signaling in OC lineages plays a partial role in controlling malaria-induced inflammatory mediators and following bone pathology. These findings may lead to the identification of novel targets for specific intervention of bone pathologies, particularly in malaria-endemic regions.
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Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Osteoblastos / Osteoclastos / Remodelación Ósea / Ratones Noqueados / Factor 88 de Diferenciación Mieloide / Homeostasis / Malaria Límite: Animals Idioma: En Revista: Int Immunol Asunto de la revista: ALERGIA E IMUNOLOGIA Año: 2024 Tipo del documento: Article País de afiliación: Japón

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Osteoblastos / Osteoclastos / Remodelación Ósea / Ratones Noqueados / Factor 88 de Diferenciación Mieloide / Homeostasis / Malaria Límite: Animals Idioma: En Revista: Int Immunol Asunto de la revista: ALERGIA E IMUNOLOGIA Año: 2024 Tipo del documento: Article País de afiliación: Japón