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1.
Cureus ; 16(7): e63626, 2024 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-39092374

RESUMO

Osteoid osteoma is a benign bone tumor that typically presents with nocturnal pain alleviated by nonsteroidal anti-inflammatory medications. The coexistence of osteoid osteoma with sickle cell anemia, a hereditary hemoglobinopathy characterized by vaso-occlusive crises and bone infarcts, poses diagnostic and therapeutic challenges due to overlapping clinical and radiological features. This condition primarily involves the long bones of the lower extremities, particularly the femur and tibia. Despite its benign nature, osteoid osteoma can significantly impact a patient's quality of life due to persistent and intense pain, often leading to substantial sleep disturbances and functional limitations.

2.
Cureus ; 15(7): e42517, 2023 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-37637609

RESUMO

Septic shock is a life-threatening condition characterized by systemic inflammation resulting from a severe infection. Although the primary focus of sepsis research has traditionally been on the dysfunctional immune response, recent studies have highlighted the important role of bone marrow in the pathophysiology of septic shock. The bone marrow, traditionally regarded as the hematopoietic organ responsible for blood cell production, undergoes significant changes during sepsis, contributing to the overall immune dysregulation observed in this condition. This comprehensive review aims to provide a detailed overview of the bone marrow changes associated with septic shock. It explores the alterations in the bone marrow microenvironment, hematopoietic progenitor cells, and the subsequent effects on leukocyte production and function. Key cellular and molecular mechanisms involved in bone marrow dysfunction during septic shock are discussed, including the dysregulation of cytokines, chemokines, growth factors, and signaling pathways. Furthermore, this review highlights the clinical implications of bone marrow changes in septic shock. It emphasizes the impact of altered hematopoiesis on immune cell populations, such as neutrophils, monocytes, and lymphocytes, and their role in the progression and outcome of sepsis. The potential prognostic value of bone marrow parameters and the therapeutic implications of targeting bone marrow dysfunction are also addressed. The review summarizes relevant preclinical and clinical studies to comprehensively understand the current knowledge of bone marrow changes in septic shock. The limitations and challenges of studying bone marrow in the context of sepsis are acknowledged, and future directions for research are proposed.

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