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P Collas

Publications and source records attributed to P Collas.

59 records · Page 4Linked to original sources

Factors affecting the efficiency of nuclear transplantation in the rabbit embryo.

Procedures to improve nuclear transplantation efficiency in the rabbit were evaluated. We report the influence of recipient oocyte age on the different steps of nuclear transplantation. The effect of multiple pulses and the influence of manipulation medium and cytochalasin B in the post-fusion/activation medium on activation and development were studied. Recently ovulated oocytes were enucleated at a higher rate (60%) than aged oocytes (3%, p less than 0.005); they also fused at a higher rate (85% vs. 26%, p less than 0.001). Activation was low with freshly ovulated oocytes compared to aged oocytes (3% vs. 37%, respectively; p less than 0.005), but was increased by using multiple pulses (85% vs. 68%, p less than 0.05). Multiple pulses also improved development to blastocysts (48% vs. 5%, p less than 0.001). Incubation of oocytes in a bicarbonate-buffered medium with 10% fetal calf serum for manipulation also enhanced rates of activation (100% vs. 89%, p less than 0.05) and development of oocytes to blastocysts (77% vs. 26%, p less than 0.001). Furthermore, 7.5 micrograms/ml cytochalasin B in the post-fusion/activation medium increased activation rates (78% vs. 50%, p less than 0.05) and development to blastocysts of manipulated embryos (46% vs. 11%, p less than 0.001). When the above modifications were applied, 10% (23/230) of the total nuclear transplant embryos (8-16-cell-stage donor nuclei) or 21% (23/110) of those transferred to recipients developed to offspring, rates similar to the development of nonmanipulated control embryos (10%, 4/41, p greater than 0.1).

Aging↗

Electrical activation of mouse oocytes.

Activation of the oocyte is the least efficient step in nuclear transplantation in the rabbit. We report the influence of age of oocytes, field strength, pulse duration and number, and shape of field on the rate of activation of mouse oocytes by electrical pulses. Regardless of oocyte age, activation rates were similar over a wide range of field strengths and pulse durations. Aged oocytes activated at a higher rate than recently ovulated oocytes (32 vs 3%), which lysed more frequently (13 vs 2%). Fragmentation rate was also higher among aged oocytes (42 vs 6%). The rate of activation increased with the number of pulses, from 9% with a single pulse, to 61% with six pulses. It also increased with the interval between pulses. Comparison of activation chamber geometries showed that the rate of activation was higher in a nonuniform field than in a uniform field and, for a particular field strength, varied from one electrode gap to another. These observations indicate that the rate of activation can be greatly increased by multiple electrical pulses. The activation rate also varied with consistent field strength in chambers with different electrode configurations.

Journal Article↗