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Altered immunity and dendritic cell activity in the periphery of mice after long-term engraftment with bone marrow from ultraviolet-irradiated mice

To investigate the immune capabilities of peripheral tissue DCs generated in vivo from the BM of UV-irradiated mice, chimeric mice were established.

Toward homeostasis: Regulatory dendritic cells from the bone marrow of mice with inflammation

Inflammatory mediators from peripheral tissues may control dendritic cell (DC) development in the bone marrow.

Personalized transcriptomics reveals heterogeneous immunophenotypes in children with viral bronchiolitis

Dysregulated expression of IFN-dependent pathways after respiratory viral infections is a defining immunophenotypic feature of AVB-susceptible infants

Early Life Ovalbumin Sensitization and Aerosol Challenge for the Induction of Allergic Airway Inflammation in a BALB/c Murine Model

This protocol adapted an experimental animal model of disease for sensitization to ovalbumin during the immediate post-weaning period beginning at 21 days of age

Basophil counts in PBMC populations during childhood acute wheeze/asthma are associated with future exacerbations

Our findings suggest that the proportion of degranulated basophils can also be associated with recurrent exacerbations

Atopy-dependent and independent immune responses in the heightened severity of atopics to respiratory viral infections: Rat model studies

The co-exposure responses in the Th2high BN incorporated type I interferon/Th1, alternative macrophage activation/Th2 and Th17 signatures

Immunological processes driving IgE sensitisation and disease development in males and females

In this review, we discuss recent mechanistic studies casting further light on how the expression of sex hormones may influence the innate and adaptive immune system

Functional differences in airway dendritic cells determine susceptibility to IgE-sensitization

Respiratory IgE-sensitization to innocuous antigens increases the risk for developing diseases such as allergic asthma.