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Immunoglobulin light chain (AL) fibrils are insoluble, pathological protein aggregates composed of misfolded monoclonal light chains produced by clonal plasma cells [1]. These fibrils possess a characteristic cross-beta sheet structure that makes them resistant to normal proteolytic degradation, leading to their accumulation in the extracellular space of vital organs such as the heart, kidneys, and liver [3]. The deposition of AL fibrils causes mechanical disruption of tissue architecture and exerts direct proteotoxic effects, resulting in progressive organ failure and high mortality [2]. While traditional treatments focus on eliminating the underlying plasma cell clone, emerging therapies specifically target the AL fibrils to accelerate their removal and neutralize circulating toxic precursors [4]. These fibril-targeting agents, primarily monoclonal antibodies, aim to improve organ function and survival by promoting the clearance of existing amyloid deposits through immune-mediated mechanisms [2, 4].
Monoclonal antibodies bind to cryptic epitopes on misfolded light chains or the amyloid fibril surface to neutralize toxic species and stimulate macrophage-mediated clearance of tissue deposits [2, 4].
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