Macrophages inhibit and enhance endometriosis depending on their origin. 2021

Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
Medical Research Council Centre for Reproductive Health, The Queen's Medical Research Institute, The University of Edinburgh, Edinburgh EH16 4TJ, United Kingdom.

Macrophages are intimately involved in the pathophysiology of endometriosis, a chronic inflammatory disorder characterized by the growth of endometrial-like tissue (lesions) outside the uterus. By combining genetic and pharmacological monocyte and macrophage depletion strategies we determined the ontogeny and function of macrophages in a mouse model of induced endometriosis. We demonstrate that lesion-resident macrophages are derived from eutopic endometrial tissue, infiltrating large peritoneal macrophages (LpM) and monocytes. Furthermore, we found endometriosis to trigger continuous recruitment of monocytes and expansion of CCR2+ LpM. Depletion of eutopic endometrial macrophages results in smaller endometriosis lesions, whereas constitutive inhibition of monocyte recruitment significantly reduces peritoneal macrophage populations and increases the number of lesions. Reprogramming the ontogeny of peritoneal macrophages such that embryo-derived LpM are replaced by monocyte-derived LpM decreases the number of lesions that develop. We propose a putative model whereby endometrial macrophages are "proendometriosis" while newly recruited monocyte-derived macrophages, possibly in LpM form, are "antiendometriosis." These observations highlight the importance of monocyte-derived macrophages in limiting disease progression.

UI MeSH Term Description Entries
D008810 Mice, Inbred C57BL One of the first INBRED MOUSE STRAINS to be sequenced. This strain is commonly used as genetic background for transgenic mouse models. Refractory to many tumors, this strain is also preferred model for studying role of genetic variations in development of diseases. Mice, C57BL,Mouse, C57BL,Mouse, Inbred C57BL,C57BL Mice,C57BL Mice, Inbred,C57BL Mouse,C57BL Mouse, Inbred,Inbred C57BL Mice,Inbred C57BL Mouse
D008954 Models, Biological Theoretical representations that simulate the behavior or activity of biological processes or diseases. For disease models in living animals, DISEASE MODELS, ANIMAL is available. Biological models include the use of mathematical equations, computers, and other electronic equipment. Biological Model,Biological Models,Model, Biological,Models, Biologic,Biologic Model,Biologic Models,Model, Biologic
D009000 Monocytes Large, phagocytic mononuclear leukocytes produced in the vertebrate BONE MARROW and released into the BLOOD; contain a large, oval or somewhat indented nucleus surrounded by voluminous cytoplasm and numerous organelles. Monocyte
D010529 Peritoneal Cavity The space enclosed by the peritoneum. It is divided into two portions, the greater sac and the lesser sac or omental bursa, which lies behind the STOMACH. The two sacs are connected by the foramen of Winslow, or epiploic foramen. Greater Sac,Lesser Sac,Omental Bursa,Bursa, Omental,Cavity, Peritoneal,Sac, Greater,Sac, Lesser
D004715 Endometriosis A condition in which functional endometrial tissue is present outside the UTERUS. It is often confined to the PELVIS involving the OVARY, the ligaments, cul-de-sac, and the uterovesical peritoneum. Endometrioma,Endometriomas,Endometrioses
D004717 Endometrium The mucous membrane lining of the uterine cavity that is hormonally responsive during the MENSTRUAL CYCLE and PREGNANCY. The endometrium undergoes cyclic changes that characterize MENSTRUATION. After successful FERTILIZATION, it serves to sustain the developing embryo. Endometria
D005260 Female Females
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000911 Antibodies, Monoclonal Antibodies produced by a single clone of cells. Monoclonal Antibodies,Monoclonal Antibody,Antibody, Monoclonal
D017737 Macrophages, Peritoneal Mononuclear phagocytes derived from bone marrow precursors but resident in the peritoneum. Peritoneal Macrophages,Macrophage, Peritoneal,Peritoneal Macrophage

Related Publications

Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
January 2020, Frontiers in endocrinology,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
June 1984, Journal of immunology (Baltimore, Md. : 1950),
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
October 2013, Stem cells and development,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
April 2015, Journal of immigrant and minority health,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
October 1992, Immunology,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
August 1995, The Journal of clinical endocrinology and metabolism,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
June 2016, Journal de mycologie medicale,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
May 2014, Biology of blood and marrow transplantation : journal of the American Society for Blood and Marrow Transplantation,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
November 1989, Ceskoslovenska gynekologie,
Chloe Hogg, and Kavita Panir, and Priya Dhami, and Matthew Rosser, and Matthias Mack, and Daniel Soong, and Jeffrey W Pollard, and Stephen J Jenkins, and Andrew W Horne, and Erin Greaves
July 2016, Food & function,
Copied contents to your clipboard!