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Biomedical subjects

A J Nicholl

Publications and source records attributed to A J Nicholl.

2 recordsLinked to original sources

Differentiation of an auditory neuronal cell line suitable for cell transplantation.

The auditory neuroblast cell line US/VOT-N33 (N33), which is conditionally immortal, was studied as an in vitro model for the differentiation of spiral ganglion neurons (SGNs) and as a candidate for cell transplantation in rodents. It expresses numerous molecular markers characteristic of auditory neuroblasts, including the transcription factors GATA3, NeuroD, Brn3a and Islet1, as well as the neuronal cytoskeletal protein beta3-tubulin. It displays active migratory behaviour in vitro and in vivo. In the presence of the fibroblast growth factors FGF1 or FGF2 it differentiates bipolar morphologies similar to those of native SGNs. In coculture with neonatal cochlear tissue it is repelled from epithelial surfaces but not from native SGNs, alongside which it extends parallel neuronal processes. When injected into the retina in vivo, EGFP-labelled N33 cells were traced for 1-2 weeks and migrated rapidly within the subretinal space. Cells that found their way into the retinal ganglion cell layer extended multiple processes but did not express beta3-tubulin. The ability of N33 to migrate, to differentiate, to localize with native SGNs in vitro and to survive in vivo suggests that they provide an effective model for SGN differentiation and for cell transplantation into the ear.

Animals↗

The role of bicarbonate in regulatory volume decrease (RVD) in the epithelial-derived human breast cancer cell line ZR-75-1.

This study investigates the mechanisms involved in the regulatory volume decrease (RVD) in ZR-75-1 epithelial-derived human breast cancer cells. Cell volume changes were measured during osmotic shock using video imaging. In HEPES-buffered hypotonic solutions no RVD was observed; however, RVD was observed in HCO(3)(-)-buffered hypotonic solutions. Inhibition of RVD by 10 microM tamoxifen and 100 microM DIDS (inhibitors of volume-regulated anion channels; VRAC) and 2 mM TEA(+) (inhibitor of K(+) channels) indicates a role for these channels. In HCO(3)(-)-buffered Cl(-)-free solutions RVD was partially abolished indicating that HCO(3)(-) efflux can support RVD but also may have another role. Further experiments investigated whether HCO(3)(-) assists in the accumulation of Cl(-) via Cl(-)-HCO(3)(-) exchange. Regulatory volume increase (RVI) was also HCO(3)(-)-dependent and was inhibited by 500 microM DIDS and 10 microM 5-( N, N-dimethyl)-amiloride (DMA) indicating a role for coupled Cl(-)-HCO(3)(-) and Na(+)-H(+) exchange. Finally, in the presence of 10 microM DMA, RVD was partially inhibited providing further evidence for a role of Cl(-)-HCO(3)(-) exchange. Thus RVD in ZR-75-1 cells involves the activation of VRAC and K(+) channels. RVD is HCO(3)(-)-dependent and HCO(3)(-) efflux through VRAC appears to contribute directly to RVD. HCO(3)(-), however, also has another role in facilitating Cl(-) accumulation via Cl(-)-HCO(3)(-) exchange.

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗