THE SYSTEMATIC REVIEW OF ADIPOCYTES IN ACUTE LEUKEMIA

Authors

  • Calista Giovani General Practitioner, Samarinda Medika Citra General Hospital, Samarinda, Indonesia
  • Theodora Monica Carissa General Practitioner, Wava Husada General Hospital, Kepanjen, Malang Regency, Indonesia
  • Claudia Priska Adelin General Practitioner, Rumah Sehat UGM Primary Clinic, Special Region of Yogyakarta, Indonesia

DOI:

https://doi.org/10.61841/xyqvaq33

Keywords:

Adipocytes, role, acute leukemia

Abstract

Background: Adipose tissue, a major cell type in the bone marrow microenvironment, plays a crucial role in the development and progression of cancer. Adipocytes, which make up the majority of cells in adipose tissue, exhibit distinct metabolic roles, replication and development abilities, cytokine production, and reactions to external stimuli. Adipocytes are abundant in bone marrow, a key site of metastasis for solid tumors and a crucial microenvironment for hematological malignancies.

The aim: This study aims to determine the association of adipocytes in acute leukemia.

Methods: By comparing itself to the standards set by the Preferred Reporting Items for Systematic Review and Meta-Analysis (PRISMA) 2020, this study was able to show that it met all of the requirements. So, the experts were able to make sure that the study was as up-to-date as it was possible to be. For this search approach, publications that came out between 2014 and 2024 were taken into account. Several different online reference sources, like PubMed and ScienceDirect, were used to do this. It was decided not to take into account review pieces, works that had already been published, or works that were only half done.

Results: In the PubMed database, the results of our search brought up 27 articles, whereas the results of our search on ScienceDirect brought up 281 articles. The results of the search conducted by title screening yielded a total 14 articles for PubMed and 3 articles for ScienceDirect. We compiled a total of 12 papers, 10 of which came from PubMed and 2 of which came from ScienceDirect. We excluded 4 review articles, 2 articles having ineligible subjects, and 1 article having insufficient outcomes. In the end, we included five research that met the criteria.

Conclusion: Acute leukemia cells have various effects on adipocytes which alter adipogenic differentiation capacities or adipocyte lipolysis and promote bone marrow adipocyte remodeling. Adipocytes play a crucial role in acute leukemia cell survival and their treatment.

References

Galati PC, Ribeiro CM, Pereira LTG, Amato AA. The association between excess body weight at diagnosis and pediatric leukemia prognosis: A systematic review and meta-analysis. Vol. 51, Blood Reviews. Churchill Livingstone; 2022.

Malard F, Mohty M. Acute lymphoblastic leukaemia. Vol. 395, The Lancet. Lancet Publishing Group; 2020. p. 1146–62.

Pelcovits A, Niroula R. Acute Myeloid Leukemia: A Review [Internet]. 2020. Available from: https://seer.cancer.gov/statfacts/

Shallis RM, Wang R, Davidoff A, Ma X, Zeidan AM. Epidemiology of acute myeloid leukemia: Recent progress and enduring challenges. Vol. 36, Blood Reviews. Churchill Livingstone; 2019. p. 70–87.

Zinngrebe J, Debatin KM, Fischer-Posovszky P. Adipocytes in hematopoiesis and acute leukemia: friends, enemies, or innocent bystanders Vol. 34, Leukemia. Springer Nature; 2020. p. 2305–16.

Nieman KM, Romero IL, Van Houten B, Lengyel E. Adipose tissue and adipocytes support tumorigenesis and metastasis. Vol. 1831, Biochimica et Biophysica Acta - Molecular and Cell Biology of Lipids. Elsevier B.V.; 2013. p. 1533–41.

Weickert MT, Hecker JS, Buck MC, Schreck C, Rivière J, Schiemann M, et al. Bone marrow stromal cells from MDS and AML patients show increased adipogenic potential with reduced Delta-like-1 expression. Sci Rep. 2021 Dec 1;11(1).

Sheng X, Mittelman SD. The role of adipose tissue and obesity in causing treatment resistance of acute lymphoblastic leukemia. Vol. 2, Frontiers in Pediatrics. Frontiers Media S.A.; 2014.

Tabe Y, Yamamoto S, Saitoh K, Sekihara K, Monma N, Ikeo K, et al. Bone marrow adipocytes facilitate fatty acid oxidation activating AMPK and a transcriptional network supporting survival of acute monocytic leukemia cells. Cancer Res. 2017 Mar 15;77(6):1453–64.

Tucci J, Chen T, Margulis K, Orgel E, Paszkiewicz RL, Cohen MD, et al. Adipocytes Provide Fatty Acids to Acute Lymphoblastic Leukemia Cells. Front Oncol. 2021 Apr 22;11.

Yang S, Lu W, Zhao C, Zhai Y, Wei Y, Liu J, et al. Leukemia cells remodel marrow adipocytes via TRPV4-dependent lipolysis. Haematologica. 2020 Nov 1;105(11):2572–83.

Zhang L, Zhao Q, Cang H, Wang Z, Hu X, Pan R, et al. Acute Myeloid Leukemia Cells Educate Mesenchymal Stromal Cells toward an Adipogenic Differentiation Propensity with Leukemia Promotion Capabilities. Advanced Science. 2022 May 1;9(16).

Dixit VD. Adipose-immune interactions during obesity and caloric restriction: reciprocal mechanisms regulating immunity and health span. J Leukoc Biol. 2008 Oct 1;84(4):882–92.

Wang Y, Yang C, Wan J, Liu P, Yu H, Yang X, et al. Bone marrow adipocyte: Origin, biology and relationship with hematological malignancy. International Journal of Laboratory Hematology. John Wiley and Sons Inc; 2023.

Guarnera L, Santinelli E, Galossi E, Cristiano A, Fabiani E, Falconi G, et al. Microenvironment in acute myeloid leukemia: focus on senescence mechanisms, therapeutic interactions, and future directions. Experimental Hematology. Elsevier Inc.; 2023.

Samimi A, Ghanavat M, Shahrabi S, Azizidoost S, Saki N. Role of bone marrow adipocytes in leukemia and chemotherapy challenges. Vol. 76, Cellular and Molecular Life Sciences. Birkhauser Verlag AG; 2019. p. 2489–97.

Orgel E, Sea JL, Mittelman SD. Mechanisms by which obesity impacts survival from acute lymphoblastic leukemia. J Natl Cancer Inst Monogr. 2019 Sep 1;2019(54):152–6.

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Published

2024-01-22

How to Cite

Giovani, C. ., Monica Carissa, T. ., & Priska Adelin, C. . (2024). THE SYSTEMATIC REVIEW OF ADIPOCYTES IN ACUTE LEUKEMIA. Journal of Advanced Research in Medical and Health Science (ISSN 2208-2425), 10(1), 164-171. https://doi.org/10.61841/xyqvaq33