The results suggest that normal sperm have higher chance to bind HA and therefore, HA sperm selection procedure may select sperm with normal protamine content and low DNA fragmentation, but to confirm the effect of HA sperm selection on the ICSI outcome requires further studies.
Tissue engineering techniques particularly using electrospun scaffolds have been intensively used in recent years for the development of small diameter vascular grafts. However, the development of a completely successful scaffold that fulfills multiple requirements to guarantee complete vascular regeneration remains challenging. In this study, a hydrophilic and compliant polyurethane namely Tecophilic (TP) blended with gelatin (gel) at a weight ratio of 70:30 (TP(70)/gel(30)) was electrospun to fabricate a tubular composite scaffold with biomechanical properties closely simulating those of native blood vessels. Hydrophilic properties of the composite scaffold induced non-thrombogenicity while the incorporation of gelatin molecules within the scaffold greatly improved the capacity of the scaffold to serve as an adhesive substrate for vascular smooth muscle cells (SMCs), in comparison to pure TP. Preservation of the contractile phenotype of SMCs seeded on electrospun TP(70)/gel(30) was yet another promising feature of this scaffold. The nanostructured TP(70)/gel(30) demonstrated potential feasibility toward functioning as a vascular graft.
Sperm premature chromosomal condensation (PCC) has been associated with failed fertilization. Previous studies suggest that protamine deficiency or failed oocyte activation may make spermatozoa prone to PCC. However, it is not clear which of these two factors has a more profound effect on fertilization failure. In order to distinguish between these two phenomena, oocytes that failed to fertilize after intracytoplasmic sperm injection (ICSI) were artificially activated and the association between protamine deficiency and PCC was evaluated in the remaining oocytes that failed to fertilize. The results of this study reveal that after artificial activation, fertilization rate post-ICSI increased from 59.95 to 87.7% and PCC spermatozoa appeared to be present in over 50% of the remaining oocytes that failed to fertilize. The percentage of sperm PCC was significantly higher in protamine deficient samples, thus suggesting that after failed oocyte activation, sperm PCC induced by protamine deficiency may be considered as an alternative cause of failed fertilization post-ICSI. Furthermore, the results of this study did not show any correlation between pronuclei size asynchrony and protamine deficiency.
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