Search PubMedSearch

Biomedical subjects

J Jang

Publications and source records attributed to J Jang.

4 recordsLinked to original sources

There are two mechanisms of achiasmate segregation in Drosophila females, one of which requires heterochromatic homology.

There are numerous examples of the regular segregation of achiasmate chromosomes at meiosis I in Drosophila melanogaster females. Classically, the choice of achiasmate segregational partners has been thought to be independent of homology, but rather made on the basis of availability or similarities in size and shape. To the contrary, we show here that heterochromatic homology plays a primary role in ensuring the proper segregation of achiasmate homologs. We observe that the heterochromatin of chromosome 4 functions as, or contains, a meiotic pairing site. We show that free duplications carrying the 4th chromosome pericentric heterochromatin induce high frequencies of 4th chromosome nondisjunction regardless of their size. Moreover, a duplication from which some of the 4th chromosome heterochromatin has been removed is unable to induce 4th chromosome nondisjunction. Similarly, in the absence of either euchromatic homology or a size similarity, duplications bearing the X chromosome heterochromatin also disrupt the segregation of two achiasmate X chromosome centromeres. Although heterochromatic regions are sufficient to conjoin nonexchange homologues, we confirm that the segregation of heterologous chromosomes is determined by size, shape, and availability. The meiotic mutation Axs differentiates between these two processes of achiasmate centromere coorientation by disrupting only the homology-dependent mechanism. Thus there are two different mechanisms by which achiasmate segregational partners are chosen. We propose that the absence of diplotene-diakinesis during female meiosis allows heterochromatic pairings to persist until prometaphase and thus to co-orient homologous centromeres. We also propose that heterologous disjunctions result from a separate and homology-independent process that likely occurs during prometaphase. The latter process, which may not require the physical association of segregational partners, is similar to those observed in many insects, in Saccharomyces cerevisiae and in C. elegans males. We also suggest that the physical basis of this process may reflect known properties of the Drosophila meiotic spindle.

Animals

Use of 2-hydroxypropyl-beta-cyclodextrin as an intrathecal drug vehicle with opioids.

2-Hydroxypropyl-beta-cyclodextrin (CDEX), a seven-membered glucose pyranose structure, forms reversible inclusion complexes with the lipophilic portion of a drug molecule by noncovalent bonding. This can increase the water solubility of lipid-soluble drugs and reduce the rate of clearance of such agents from the spinal cord into the vasculature after i.t. administration. In this study, opioids (morphine, lofentanil, alfentanil and sufentanil) with and without CDEX (20, 2, 0.2 and 0.02% w/v in sterile water) were administered spinally in rats prepared with chronic i.t. catheters. CDEX prolonged the duration of analgesia (52.5 degrees C hot plate) and reduced the incidence of catalepsy otherwise produced by a supermaximal i.t. dose of each of the opioids. The magnitude of the potentiating effect of CDEX on opioids was dependent upon concentration of the CDEX and varied with drug lipid partition coefficients. The highest concentration of CDEX alone (20%) had no effect upon the volume-evoked micturition reflex, blood pressure, heart rate, or spinal reflexes. Our data indicate that CDEX may be a useful i.t. vehicle for modifying the redistribution characteristics of highly diffusible molecules after their i.t. administration, and that for each drug there is an optimal CDEX concentration. In the present case, CDEX prolongs the spinal analgesic action and reduces the supraspinal actions of i.t. drugs.

2-Hydroxypropyl-beta-cyclodextrin

Objective assessment of accommodation orthoptics. I. Dynamic insufficiency.

Three young adult females with symptoms related to focusing difficulties at near were treated by standard orthoptic procedures, including jump focus, plus-and-minus lens flippers, and pencil pushups. Home training was done 20 minutes each day for 4 1/2--7 weeks. Objective measures of dynamic accommodation were made each week in our Neuro-optometry Clinic. Initially, these objective measures showed prolongations of time constants and latencies of accommodation. During treatment, the patients showed significant reductions in time constants and latencies that correlated well with elimination of subjective symptoms. Also, in all three patients, flipper rates increased and symptoms were either markedly diminished or no longer present at termination of therapy. These results clearly demonstrate that orthoptic treatment in our three adult patients resulted in objective improvement of accommodation function.

Accommodation, Ocular

Accommodation dynamics I. Range nonlinearity.

We show the presence of a new nonlinearity in accommodation dynamics. Positive accommodation is slower when the eye is operating in the near range; conversely, relaxation of accommodation is apparently slower during work in the far range. Latency of accommodation is unaffected by working range. This new dynamic range nonlinearity has been defined in connection with a continuing research study of accommodation responses in normal subjects and in clinic patients. Instrumentation and analysis procedures are described.

Accommodation, Ocular