Muhammad Sohaib Khan, Bismah Azeem, Ashir Kanwal, Ifra Eeman Ahmed, Anum Zehra, Aqsa Kabir, Waleed Ahmed, Hania Nasir, Momina Khan, Aatika Manzoor, Muhammad Hasanain, Wania Moeen, Muzamil Khan, Gulrayz Ahmed
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Unveiling WHIM syndrome: Mavorixafor's Emerging Role in Immune Restoration and Therapy.
WHIM syndrome is a rare autosomal dominant immunodeficiency disorder and is an abbreviation formed from the initial letters of its main clinical presentations: Warts, Hypogammaglobulinemia, Infections, and Myelokathexis. It stems mainly from mutations where there is a gain of function in the chemokine receptor CXCR4, which is extensively located on leukocytes, and significantly affects the balance of the immune system. Many therapeutic strategies have been widely explored for several years for this immunodeficiency disorder. Mavorixafor, a CXCR4 antagonist, is a recently approved drug by the Food and Drug Administration (FDA) that is being studied for its longer half-life and oral drug route against WHIM syndrome. This review aims to investigate briefly the underlying mechanisms and pathogenesis of WHIM syndrome, and the current effective treatment approaches, for example CXCR4 antagonists or Hematopoietic Stem Cell Transplantation (HSCT), against it. The review also aims to thoroughly assess the efficacy and safety of Mavorixafor in managing WHIM syndrome, exploring its pharmacokinetics, pharmacodynamics, dosing regimens, and safety. Finally, we also investigate important additional therapeutic uses of Mavorixafor.
期刊介绍:
Clinical & Experimental Immunology (established in 1966) is an authoritative international journal publishing high-quality research studies in translational and clinical immunology that have the potential to transform our understanding of the immunopathology of human disease and/or change clinical practice.
The journal is focused on translational and clinical immunology and is among the foremost journals in this field, attracting high-quality papers from across the world. Translation is viewed as a process of applying ideas, insights and discoveries generated through scientific studies to the treatment, prevention or diagnosis of human disease. Clinical immunology has evolved as a field to encompass the application of state-of-the-art technologies such as next-generation sequencing, metagenomics and high-dimensional phenotyping to understand mechanisms that govern the outcomes of clinical trials.