2 resultados para Transport of Pollutants

em University of Connecticut - USA


Relevância:

100.00% 100.00%

Publicador:

Resumo:

A number of tight urinary epithelia, as exemplified by the turtle bladder, acidify the luminal solution by active transport of H+ across the luminal cell membrane. The rate of active H+ transport (JH) decreases as the electrochemical potential difference for H+ [delta mu H = mu H(lumen) - mu H(serosa)] across the epithelium is increased. The luminal cell membrane has a low permeability for H+ equivalents and a high electrical resistance compared with the basolateral cell membrane. Changes in JH thus reflect changes in active H+ transport across the luminal membrane. To examine the control of JH by delta mu H in the turtle bladder, transepithelial electrical potential differences (delta psi) were imposed at constant acid-base conditions or the luminal pH was varied at delta psi = 0 and constant serosal PCO2 and pH. When the luminal compartment was acidified from pH 7 to 4 or was made electrically positive, JH decreased as a linear function of delta mu H as previously described. When the luminal compartment was made alkaline from pH 7 to 9 or was made electrically negative, JH reached a maximal value, which was the same whether the delta mu H was imposed as a delta pH or a delta psi. The nonlinear JH vs. delta mu H relation does not result from changes in the number of pumps in the luminal membrane or from changes in the intracellular pH, but is a characteristic of the H+ pumps themselves. We propose a general scheme, which, because of its structural features, can account for the nonlinearity of the JH vs. delta mu H relations and, more specifically, for the kinetic equivalence of the effects of the chemical and electrical components of delta mu H. According to this model, the pump complex consists of two components: a catalytic unit at the cytoplasmic side of the luminal membrane, which mediates the ATP-driven H+ translocation, and a transmembrane channel, which mediates the transfer of H+ from the catalytic unit to the luminal solution. These two components may be linked through a buffer compartment for H+ (an antechamber).

Relevância:

100.00% 100.00%

Publicador:

Resumo:

The purpose of the pilot study was to work in collaboration with the March of Dimes Family Support Team and the University of Connecticut Health Center (UCHC) to develop an evaluation instrument for the assessment of the Transport Module implemented by The March of Dimes Neonatal Intensive Care Unit (NICU) Family Support Program initiative at the UConn Health Center. A literature review of the topic illustrated the need for continuing research of successful family support interventions for parents experiencing the transport of their high-risk infant to a tertiary care NICU immediately after delivery. NICU staff members and the March of Dimes Organization can utilize the evaluation instrument created for this study to identify parent support needs and the effectiveness of module implementation across the country. Effective family support will increase parent confidence and decrease anxieties that are often associated with the birth of a pre-term infant.