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June-Ku Brian Kang

Publications and source records attributed to June-Ku Brian Kang.

3 recordsLinked to original sources

Neuropeptide release from airways of young and fully-grown rabbits.

Nerve growth factor (NGF), a neurotrophin that regulates neuronal development, enhances production of neuropeptides that control airway caliber including substance P (SP). Little is known about the developmental interplay between neurotrophins and neuropeptides. Our goal was to assess release of NGF, SP, and vasoactive intestinal peptide (VIP) from tracheal segments of young (2-week-old) and fully-grown (13-week-old) rabbits, and ascertain location of neuropeptides in airways with mechanical denudation of epithelium and immunohistochemistry. After electrical field stimulation of nerves, bath solutions were collected and immunoassays performed to quantify NGF, SP, and VIP release. There were significant decreases in NGF, SP, and VIP release from airways in 13- versus 2-week-old rabbits. There were also significant decreases in SP and VIP release from denuded versus normal tissues at 2 weeks of age. A similar pattern for SP was seen in 13-week-old rabbits. Immunohistochemistry demonstrated increased neuropeptides in airways from younger rabbits. Although SP was seen in the epithelium and submucosal nerves in the younger group, it was localized to the latter location in fully-grown rabbits. VIP was seen in only submucosal nerves at both ages. Thus, release of NGF, SP, and VIP with neural stimulation decreases in rabbit tracheal segments with age. Decreases in SP with maturation and epithelial denudation appear related in part to decreases in epithelial SP with growth. However, decreases in VIP that occur normally and with epithelial denudation are not explained by location of VIP within the epithelium. The epithelium may be a source of factors that inhibit release of neuropeptides.

Aging↗

Phosphodiesterase IV and neutral endopeptidase in airways from developing and allergen sensitized rabbits.

Phosphodiesterase IV (PDE IV) and neutral endopeptidase (NEP) may modulate the neurally mediated nonadrenergic noncholinergic inhibitory (NANCi) response. This response is not present in normal rabbits until 2 weeks of age. Allergen sensitization and challenge of fully grown 13-week old rabbits decreases the NANCi response. Our goal was to assess NANCi as a function of age and allergen sensitization. Tracheal smooth muscle (TSM) rings from normal 1-, 2-, and 13-week old rabbits plus ragweed immune as well as ragweed immune/challenged (I/C) 13-week old rabbits were assessed. Colorimetric assays of PDE IV and NEP activity were conducted on TSM from each group. NANCi responses were obtained in the presence and absence of Ro 20-1724 (PDE IV inhibitor) and/or phosphoramidon (Phos; NEP inhibitor) after contraction of TSM with neurokinin A. In normal TSM, there was no difference in PDE IV as a function of age. Conversely, NEP decreased significantly from 1 to 13 weeks of age. The immune and I/C groups had decreases in NEP and increases in PDE IV that were significant. Neither Ro 20-1724 nor Phos alone or together increased NANCi responses in TSM from 1- or 2-week old rabbits. However, both enhanced relaxation in TSM from normal, immune, and I/C 13-week old rabbits with an additive effect when drugs were combined. This work demonstrates (1) normal maturational changes in NEP but not PDE IV within TSM of this species; (2) modulation of the NANCi response by inhibitors of PDE IV and NEP in 13- but not 2-week old rabbits; (3) increased PDE IV and decreased NEP levels in the immune and I/C groups with reconstitution of NANCi responses by the combination of inhibitors. We conclude that mediation of the NANCi response is different in normal 2- and 13-week old rabbits. Both PDE IV and NEP modulated relaxation in fully grown rabbits, but had no effect at the younger age. Furthermore, both ragweed sensitization alone and ragweed challenge of immune rabbits altered NANCi via increases in PDE IV and decreases in NEP.

3',5'-Cyclic-AMP Phosphodiesterases↗

Assessing respiratory function in young children: Developmental considerations.

The purpose of this review is to provide practitioners and clinical investigators with an update on methods of assessing respiratory function in young children. The importance of this topic is presented in light of the natural history of asthma, as well as maturational changes that occur early in life in terms of airway development. Models of disease are cited to support the concept that injury of the mammalian airway early in postnatal life might have far-reaching consequences in terms of control of airway caliber and responsiveness. The methods currently available to measure respiratory function in our younger patients are outlined. The ability of children to perform the maneuvers necessary for this testing is considered as a function of age. Areas in which research and development are needed are highlighted.

Animals↗