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Fc epsilon RI levels and frequencies of peripheral blood dendritic cell populations in allergic rhinitis
The dendritic cell (DC) lineage encompasses a diverse population of cells with unique subtype-specific functions. In peripheral blood, four DC subsets have been identified based on their distinct expression of CD1c, CD141, CD16, and CD123, and these subpopulations exhibit functional properties in immune responses. However, their respective roles in allergic diseases, such as rhinitis, are unclear.
Differentiation of myeloid leukemic cells in vitro demonstrated by microcalorimetry : Stimulation of leukemic and remission cells by IgG-binding Fc receptors
Structural requirements for the interaction of human IgM and IgA with the human Fc alpha/mu receptor
Bacterial Modulation of Fc Effector Functions
Oriented immobilized anti-hIgG via F(c) fragment-imprinted PHEMA cryogel for IgG purification
No association of primary Sjogren's syndrome with Fc gamma receptor gene variants
Isolation and some properties of an IgG Fc-binding protein from group A streptococci type 15
Surgical outcomes in patients with haemophilia A or B receiving extended half-life recombinant factor VIII and IX Fc fusion proteins : Real-world experience in the Nordic countries
IgG Fc sialylation is regulated during the germinal center reaction upon immunization with different adjuvants
Interaction of the Fc part of IgG with Lancefield extracts of hemolytic streptococci. Strain specificity and activity
Subclass-switched anti-Spike IgG3 oligoclonal cocktails strongly enhance Fc-mediated opsonization
Protective non-neutralizing mAbs Ab94 and Ab81 retain high-affinity and potent Fc-mediated function against SARS-CoV-2 variants from Omicron to XBB1.5
Protective Non-neutralizing anti-N-terminal Domain mAb Maintains Fc-mediated Function against SARS-COV-2 Variants up to BA.2.86-JN.1 with Superfluous In Vivo Protection against JN.1 Due to Attenuated Virulence
Pool boiling heat transfer of FC-72 on pin-fin silicon surfaces with nanoparticle deposition
In the present study, two types of micro-pin–fin configurations were fabricated on silicon surfaces by a dry etching method, i.e., staggered pin fins (#1) and aligned pin fins with empty areas (#2). The micro-pin–fin surfaces were then further modified by depositing FeMn oxide nanoparticles (∼35 nm) electrostatically for 8 h and 16 h, respectively, namely #1-8h, #1-16h, #2-8h and #2-16h. Subcooled
