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Human follicular fluid stimulates the motility of washed human sperm.

Human follicular fluid (hFF) was collected by laparoscopic oocyte pickup during IVF to evaluate the effect of hFF on human sperm motility with a transmembrane migration method. Freshly ejaculated human sperm were washed with phosphate buffered saline (PBS) and mixed with either PBS or hFF. Amplitude of motility increases were 38% and 72% in washed fertile sperm and washed asthenozoospermic sperm when individual control motility was considered to be 100%. The stimulatory effect of hFF was lost when preheated at 100 degrees C for 30 minutes. hFF collected from mature follicles stimulated sperm motility better than that collected from intermediate or immature follicles. hFF did not stimulate the motility of unwashed sperm in freshly ejaculated human semen. A heat labile factor(s) in hFF may stimulate the motility of washed human sperm. Whether this factor could be used to improve the success rate of IVF and artificial insemination awaits further investigation.

Female

Isolation and storage of progressively motile human sperm.

Human sperm progressively motile and free of seminal debris can routinely be isolated, during a 1.5 hour process, from semen of normal and subfertile men. Serum albumin, in a vertical column, acts to filter sperm based on their swimming abilities of forward progression. The isolated sperm constitute a population that can be inseminated as an aid to male subfertility or, to enhance the chances of sperm survival upon deep-freeze preservation. The latter use resulted in twice the survival rate, based on sperm motility, or random populations of control sperm.

Cell Survival

Effects of seminal plasma from normal and asthenozoospermic men on the progressive motility of washed human sperm.

Human seminal plasma stimulated the progressive motility of human sperm in a dose- and time-related manner. Serum exhibited a similar capacity for stimulation. Seminal plasma from different normozoospermic men showed marked variation in its capacity to stimulate sperm motility. The stimulatory effect was maintained after heat-treatment, indicating the action of a low molecular weight substance or metal ion. No differences could be observed in the capacity for stimulation between seminal plasma from normozoospermic (n = 23) and asthenozoospermic (n = 22) men, when tested at the same dilution and under identical conditions. It is concluded that in general, differences in seminal plasma composition cannot account for the reduced sperm motility in asthenozoospermic men. Furthermore, the stimulatory effects of seminal plasma may be a property shared by other biological fluids.

Hot Temperature

Phagocytosis of immunoglobulin G and C3-bound human sperm by human polymorphonuclear leukocytes is not associated with the release of oxidative radicals.

Antisperm antibody (ASA)- and complement (C)-mediated immune injury to human sperm is thought to be caused in part by phagocytic neutrophils. To investigate this process, we co-cultured purified human polymorphonuclear leukocytes (PMN) with swim-up sperm in the presence of ASA-positive and ASA-negative sera and assayed for PMN respiratory burst activity, monitored by the release of superoxide anion (O2-) and hydrogen peroxide (H2O2). Phorbol myristate acetate (PMA) and opsonized zymosan were used as positive controls. Phagocytosis of ASA-positive and C-bound sperm by PMN did not enhance O2- production when compared to incubation of sperm with ASA-negative sera. Phagocytosis of ASA-positive and C-bound sperm also resulted in minimal release of H2O2 when compared with ASA-positive and C-negative sperm that were not phagocytosed. In contrast, PMN were maximally stimulated to release O2- in response to either opsonized zymosan or PMA. The kinetics of PMA-induced O2- release was unaffected by the presence of ASA-positive and C-bound sperm. Cytocentrifuge preparations of PMN incubated with ASA-positive and C-bound sperm revealed limited O2- release at the site of PMN/sperm contact. These results indicated that 1) phagocytosis of motile sperm by PMN requires the binding of both ASA and C to the sperm surface; 2) phagocytosis of ASA-positive and C-positive sperm by PMN fails to release reactive oxygen species; and 3) metabolic processes associated with PMN respiratory burst activity may not be coupled to the ingestion of ASA-positive and C-bound sperm.

Adult

Fluorescence in situ hybridization to Y chromosomes in decondensed human sperm nuclei.

Human sperm nuclei were isolated with mixed alkyltrimethylammonium bromide and dithiothreitol (MATAB/DTT) and decondensed by treatments with lithium diiodosalicylate (LIS), sodium chloride, or Tris salts. Concentrations as low as 1 mM LIS induced measurable nuclear swelling compared to 600 mM required for the other two salts. As measured by image analyses, the projected nuclear area increased linearly up to approximately fivefold with LIS concentrations up to 10 mM. Swollen nuclei also maintained the elliptical shapes characteristic of the human sperm head. Expanded sperm nuclei of three men were hybridized with a fluorescently labeled 3.4 kb Y chromosome-specific repetitive DNA probe; 50.1% of the nuclei of each semen sample showed fluorescent labeling over a part of the nucleus indicating presence of the Y chromosome. In comparison, unswollen sperm did not yield reliable hybridization signals. This procedure is suitable for determining the proportion of human sperm with Y chromosomes and can be used to evaluate sperm separation techniques. The availability of probes specific for most human chromosomes suggests that this procedure may find general application in studies of sperm chromosomal constitution.

Cell Nucleus

Transforming growth factor beta 1 enhances expression of 50 kDa protein related to 2'-5' oligoadenylate synthetase in human sperm cells.

Human cellular polypeptide factors, namely interferon-alpha, interferon-gamma transforming growth factor (TGF)-alpha, and TGF-beta 1, were analyzed for their effect on motility of human sperm cells. Both interferons caused an inhibition of sperm cell motility due to direct cytotoxic effects without inducing 2'-5' oligoadenylate [2-5(A)]synthetase activity. TGF-alpha affected neither motility nor the levels of 2-5(A) synthetase in sperm cells. TGF-beta 1 had no affect on sperm motility, yet it caused an induction of 2-5(A)synthetase activity. Western immunoblot analysis of TGF-beta 1-treated sperm indicated an enhancement of a 50 kDa protein. Metabolic labeling of sperm cells revealed biosynthesis of one major protein of 50 kDa and at least five minor proteins in the range of 30-92 kDa; the level of 50 kDa protein increased after treatment with TGF-beta 1. The treatment of sperm cells with TGF-beta 1 did not affect their penetration in zona-free hamster eggs (SPA). These results indicate that TGF-beta 1 enhances expression of a 50 kDa protein related to 2-5(A) synthetase in human sperm cells along with other minor proteins, and this increase does not affect sperm motility and SPA.

2',5'-Oligoadenylate Synthetase

Sequential transformations of human sperm nucleus in human egg.

In-vitro insemination of human zona-free oocytes prepared from oocytes that failed to fertilize in an in-vitro fertilization programme was used as an experimental model to study the time course and morphological events during the development of sperm nuclei into male pronuclei. At 30 min after insemination, 22 eggs were cultured in a CO2 incubator for further 3.5 h and 17 eggs were placed individually between a slide and coverslip for randomly repeated microscopical observations in a controlled environment for at least 3.5 h. Simultaneous arrest of maternal meiosis and sperm nuclear development occurred in 36.4% (8/22) eggs cultured in the CO2 incubator and 47.1% (8/17) of those cultured between a slide and coverslip. Sequential transformation of the human sperm nucleus in human eggs was studied in 6 eggs that showed continuous development of sperm nuclei into male pronuclei during at least 3.5 h after insemination. The early sperm nuclear development in human egg ooplasm can be divided into three phases: the sperm nucleus first decondenses (phase 1) then partly recondenses (phase 2) before expanding again to form an early male pronucleus (phase 3). The prepronuclear stages (phases 1 and 2) took about 60 min each and the pronuclear formation (phase 3) began between 120 and 170 min after insemination. Early pronuclear formation was associated with the occurrence of dense outline material, probably a precursor of the future pronuclear membrane, around the recondensed nucleus in re-expansion (phase 3). Between 30 and 60 min after the beginning of phase 3, numerous (greater than 20) dense grains, considered as nucleolar precursors, were clearly visible inside the growing male pronucleus. Moreover, we have examined sperm nuclear changes in some eggs in which the progression of late meiosis was abnormal. Meiotic arrest of maternal chromatin was always associated with arrest of sperm head development. In 75% (6/8) of the eggs arrested in the metaphase II stages and in 87.5% (7/8) of the eggs arrested in late anaphase II, sperm nuclear development was stopped at the decondensed and recondensed stages, respectively. We have always observed male pronuclei when a maternal pronucleus was present in the egg. These observations suggested that maternal chromatin and sperm nuclear development are probably regulated by common factor(s).

Cell Nucleus

Human follicular fluid stimulates motility and velocity of washed human sperm in vitro.

Human follicular fluid collected by laparoscopic oocyte pick-up during IVF was studied with a computer-assisted semen analyser to evaluate the effect of hFF on human sperm motility and velocity. Freshly ejaculated human sperm were washed with phosphate buffered saline and mixed with either PBS or hFF. At various incubation periods of time, hFF increased both sperm motility and velocity as compared with control (P less than 0.01). After incubation of sperm with hFF at 37 degrees C and 5% CO2 in air for 0, 1, 3, 6, and 12 h, the amplitude increase of motility were 49%, 77%, 330%, 2020%, and 3340% when individual control motility was considered to be 100%. The amplitude increase of curvilinear velocity were 43%, 51%, 67%, 152%, 278%, respectively. Comparison of the motility and velocity of the sperm treated with hFF between 0 and 12 h, showed that hFF preserved both motility and velocity in vitro (P less than 0.01). The stimulatory effect of hFF was retained after boiling at 100 degrees C for 30 min, or after being filtered through Amicon membrane cones, but it disappeared if the hFF had been pre-treated with chymotrypsin. However, hFF did not stimulate the motility and velocity of unwashed sperm in freshly ejaculated human semen. A non-dialyzable and heat-stable factor(s) with a molecular weight below 50,000 in hFF may improve and maintain the motility and velocity of washed human sperm. Whether this factor could be used to improve pregnancy rate in assisted reproduction awaits further investigation.

Centrifugation

The effect of antibody against a purified sperm-coating antigen on human sperm.

A purified fraction of human seminal plasma containing a sperm-coating antigen and two minor contaminants was used to immunize rabbits by intravenous route. An antiserum containing only the antibody against the sperm-coating antigen as examined by immunoelectrophoresis was obtained from one rabbit. The effect of this antiserum on human sperm was examined by sperm-immobilization and sperm-agglutination tests. The results revealed that the antibody against the purified sperm-coating antigen was incapable of immobilzing or agglutinating human sperm. This indicates that the purified sperm-coating antigen is unlikely to be useful as an antifertility antigen for immunologic fertility control.

Agglutination Tests

In-vitro effects of anti-sperm antibodies on human sperm movement.

The present study was designed to investigate whether autoantibodies to external domains of the sperm plasma membrane affect the movement of normal motile spermatozoa. Eight sera and 20 seminal plasma samples containing high levels of anti-sperm antibodies as well as antibodies eluted from the sperm fraction of 19 autoimmune ejaculates were incubated with donor's motile spermatozoa, obtained by swim-up migration in Tyrode's solution. Sperm movement was analysed using 1 s exposure microphotography when greater than 70% of the spermatozoa were coated with antibodies (after 30-90 min of incubation). At least 50 tracks of progressively motile spermatozoa were analysed in order to obtain the mean values of the amplitude of lateral head displacement (ALH) and the velocity of progression (VSL). Serum antibodies and sperm eluted antibodies had quite consistent but opposite effects on sperm movement; serum antibodies increased ALH and decreased VSL whereas eluted antibodies decreased ALH and increased VSL. Seminal antibodies did not affect these two parameters significantly. Furthermore, seminal antibodies and sperm eluted antibodies obtained from the same ejaculates had distinct effects on ALH and/or VSL. This diversity was apparently not linked to antibody isotype or localization on the sperm membrane; it might be due to differences in the composition of the extracellular media. These results suggest a dynamic effect of anti-sperm antibodies on sperm movement, a possibility that merits further investigation.

Autoantibodies

A comparison of the frequency and type of chromosomal abnormalities in human sperm after different sperm capacitation conditions.

Human sperm karyotypes can be prepared after fusion of human sperm with Golden hamster oocytes. Most laboratories use one of two methods of sperm capacitation: incubation of freshly-ejaculated sperm in Biggers, Whitten, and Whittingham (BWW) medium for 5-7 h at 37 degrees C or sperm storage in (N-tris [hydroxymethyl]methyl-2-aminoethanesulfonic acid; 2-([2-hydroxy-1,1-bis(hydroxymethyl)ethyl]amino)ethanesulfonic acid) (TES)-Tris yolk buffer (TYB) for 1-3 days at 4 degrees C. Since there have been conflicting reports as to whether there is a difference in the frequency of structural chromosomal abnormalities between BWW capacitation and storage in TYB for 2 days, we analyzed a larger number of karyotypes (8974) from 136 donors to determine if there was any difference in the frequency or type of chromosomal abnormalities in sperm treated by fresh BWW capacitation, storage in TYB for 1 day (TYB-1), or storage in TYB for 2 days (TYB-2). There was no difference in the frequency of numerical chromosomal abnormalities or sex ratio in any of the three treatment groups. However, there was a significantly increased frequency of structural chromosomal abnormalities after storage in TYB-1 and TYB-2. There was no difference in the frequency or type of structural chromosomal abnormalities after sperm storage in TYB-1 compared to TYB-2.

Adult

Factors affecting sperm motility. II. Human sperm velocity and percentage of motility as influenced by semen dilution.

Spermatozoal velocity and percentage of motility were analyzed objectively with the multiple exposure photography method before and after specimens from fertile and infertile men were diluted in their own seminal plasma or normal saline. No significant change in percentage of motility was found in samples diluted up to 1:6 in both kinds of diluents. However, a significant relative increase (up to 25% of the original velocity) was found when a specimen was diluted with its own seminal plasma, and an even greater increase (up to 37% of the original velocity) was found when it was diluted with saline. Compared with undiluted specimens, there was no delayed effect on spermatozoal motility when semen was diluted with saline after up to 4 hours' incubation time. Contrary to the findings in animal and human semen described by others, there was no deleterious effect on sperm motility with this kind and rate of dilution and duration of time. The assumption that the increase in sperm velocity caused by dilution is not excitatory but is due only to a decrease of seminal fluid viscosity and a reduced number of spermatozoa which interfere with sperm free movement is discussed. We recommend evaluation of spermatozoal motility in diluted specimens in addition to evaluation of the original specimen in any routine semen analysis in order to determine true spermatozoal motility potential under optimal conditions.

Culture Media

Human sperm penetration into zona-free hamster oocytes as a test to evaluate the sperm fertilizing ability.

Human sperm entry into zona-free hamster oocytes was used to test the fertile ability of spermatozoa from semen samples of men attending an Infertility Clinic. Sperm chromatin dispersion as seen under the phase-contrast microscope, was used as criterion for sperm entry. The ultrastructural study showed that the behaviour of the gamete membranes during fusion did not basically differ from that of normal fertilization. Eighty four samples were classed as normal (according to the spermiogram) but only 62 (74%) gave a positive test, as compared to only 30 (32%) positive test of 95 samples with abnormal spermiograms. Eight hundred and ten oocytes inseminated with spermatozoa from normal samples gave a 25% penetration, while 1046 oocytes inseminated with spermatozoa from abnormal samples gave a 7% penetration. The normality of hamster oocytes was demonstrated by contemporary insemination with human and hamster spermatozoa. While the percentages of human sperm penetration remained low, hamster sperm penetration was over 70%. The present bioassay is recommended as an additional parameter to the spermiograms for the study of male fertility.

Animals

Effect of sperm-antibodies on acrosome reaction of human sperm used for the hamster egg penetration assay.

The effect of anti-sperm antibodies (ASA) on the rate of acrosome reactions (AR) during "in vitro" capacitation of human sperm used for the hamster egg penetration assay (HEPA) was assessed. Motile sperm suspensions from donors were exposed to several sera and seminal plasma with sperm head-directed ASA, then they were washed and capacitated "in vitro." After capacitation, the proportion of acrosome-reacted viable sperm was assessed by staining with Fluoresceinated Pisum Sativum Agglutinin and supravital stain Hoechst 33258. ASA of any immunoglobulin class did not significantly affect either the AR rate, or the hamster egg penetration rate. In conclusion, interference of ASA on spontaneous AR rate during "in vitro" capacitation can not be advocated as an explanation of the impairment of the interaction of human sperm with egg or its vestments, which have been reported in several studies.

Acrosome

Controlled micromanipulation of human sperm in three dimensions with an infrared laser optical trap: effect on sperm velocity.

Individual human sperm can be micromanipulated in three dimensions using a 1.06 microns Nd:YAG laser trap. Single sperm swimming with velocities in the range of 65 to 85 microns/sec can be trapped with 40 mW of power through 120 seconds without a deleterious effect on velocity. Even though it will be necessary to further evaluate the effects of laser light on specific functions of sperm, our data suggest that decreasing the time of manipulation to a minimum will increase the safety of the micromanipulation procedures. Laser traps may play a role in assisted reproductive technology by facilitating the selective transport of individual sperm.

Analysis of Variance

Human follicular fluid stimulates hyperactivated motility in human sperm.

Since human follicular fluid (FF) is known to enhance the acrosome reaction and capacitation, we investigated whether hyperactivated motility is stimulated by FF. Follicular fluid-treated sperm exhibited a threefold increase in hyperactivation compared with the controls. The use of fetal cord serum in the medium, instead of bovine serum albumin, supported the same high levels of hyperactivation, although the peak occurred at 3 hours rather than 5 hours of capacitation. When sperm were treated with a steroid-rich fraction of the FF, hyperactivation was stimulated to the same degree as with whole FF. In contrast, no stimulation occurred when sperm were treated with a FF fraction stripped of steroids. The FF enhancement of hyperactivation in vitro could augment the fertilizing capacity of subfertile sperm samples, providing also a glimpse of possible in vivo events as sperm traverse the FF-laden cumulus oophorus.

Body Fluids

Mitochondrial uncoupler BAM15 attenuates cryopreservation-induced damage in human sperm by stabilizing mitochondrial homeostasis†.

Human sperm cryopreservation is essential for sperm banking and assisted reproduction, yet freeze-thaw stress promotes oxidative injury that reduces motility and damages the acrosome and nuclear DNA. Here, we tested whether the mitochondrial uncoupler BAM15 improves post-thaw human sperm quality and examined mechanisms linked to mitochondrial homeostasis. Ejaculates were cryopreserved using a standard protocol supplemented with graded concentrations of BAM15. After thawing, total and progressive motility and viability were assessed. Flow cytometry quantified the DNA fragmentation index and the proportion of high DNA stainability cells. Mitochondrial membrane potential, intracellular reactive oxygen species, and lipid peroxidation were measured to evaluate mitochondrial function and oxidative status. Ultrastructural preservation of the acrosome, plasma membrane, midpiece mitochondria, and flagellar axoneme was examined by transmission electron microscopy. Compared with untreated controls, BAM15 increased total and progressive motility and improved viability. BAM15 reduced DNA fragmentation and decreased high DNA stainability, indicating enhanced genomic integrity. Consistently, BAM15 improved mitochondrial membrane potential while suppressing intracellular reactive oxygen species and lipid peroxidation, supporting attenuation of freeze-thaw oxidative damage. Transmission electron microscopy further revealed more continuous acrosomal and plasma membranes, fewer swollen or vacuolated midpiece mitochondria, and improved preservation of axonemal architecture. Collectively, these findings identify BAM15 as a promising cryopreservation supplement that stabilizes mitochondrial homeostasis and improves the functional and structural quality of human sperm after thawing.

Humans

Distribution of aneuploidy in human gametes: comparison between human sperm and oocytes.

The frequency and distribution of aneuploidy was compared in 11,615 karyotyped human sperm and 772 karyotyped human oocytes to determine if all chromosomes are equally likely to be involved in aneuploid events or if some chromosomes are particularly susceptible to nondisjunction. The frequency of hypohaploidy and hyperhaploidy was compared among different chromosome groups and individual chromosomes for human sperm and oocytes. In general, hypohaploid chromosome complements were more frequent than hyperhaploid complements, in sperm and oocytes. The distribution of chromosome loss in the hypohaploid complements indicated that significantly fewer of the large chromosomes and significantly more of the small chromosomes were lost, suggesting that technical loss predominantly affects small chromosomes. A conservative estimate of aneuploidy (2 X hyperhaploidy) was approximately 3-4% in the human sperm and 18-19% in human oocytes. All chromosome groups were represented among hyperhaploid human sperm and oocytes. For human sperm, the observed frequency of hyperhaploidy equaled the expected frequency based on the assumption that the frequency of nondisjunction is equal for all chromosome groups, with two exceptions: group G and the sex chromosomes. Among individual chromosomes in human sperm, chromosomes 1 and 21 and the sex chromosomes had a significant excess of hyperhaploidy. For human oocytes, there were fewer hyperhaploid oocytes than expected for chromosome groups C and F and more than expected for chromosome groups D and G. Among individual chromosomes there was a significant excess for chromosome 21. These results indicate that all chromosomes are susceptible to nondisjunction but that chromosome 21 is particularly prone to aneuploidy in both human sperm and oocytes. They also demonstrate that sex chromosome aneuploidy is common in human sperm but not in human oocytes.

Aneuploidy