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Subzonal insemination of a single mouse spermatozoon with a personal computer-controlled micromanipulation system.

A personal computer-controlled micromanipulation system was developed for automatic injection of spermatozoa into the perivitelline space of mouse ova. A pair of three-dimensional hydraulic micromanipulators driven by pulse motors was used for this automatic system. The pulse signals that regulate the motors are initiated by the computer program, and these signals cause the micromanipulator to move the microtool precisely. The computer program was designed to perform the most effective movements of the sperm injection needle used during manual micromanipulation. Prior to the manipulation, the computer locates the tip of the injection needle and the end of the egg-holding pipette in the microscope field using image processing. The trajectory of the injection needle is determined according to these initial positions. Using this robotic system, subzonal insemination with a single mouse spermatozoon was attempted in a total of 143 ova. The sperm insertion was successfully completed in all cases without damaging any of the ova. Spermatozoa treated with ionophore A23187 and those without the treatment were used. The fertilization rate (68.8%) of the ova inseminated with treated sperm was significantly higher than that (37.5%) obtained with the nontreated sperm (P less than 0.05). These findings suggest the feasibility and potential for further applications of a robotic microinsemination system and, in addition, that a higher fertility rate in the subzonal insemination of mouse ova can be achieved with the ionophore treatment of spermatozoa.

Animals

Micromanipulation of gametes and embryos in preimplantation genetic diagnosis and assisted fertilization.

Recent advances in micromanipulation and biopsy of gametes and embryos have made it possible to develop new approaches for early genetic diagnosis and prevention of genetic disease and for treatment of severe male-factor infertility. Preimplantation diagnosis of a number of X-linked and autosomal recessive disorders has been performed, using polar body sampling and blastomere biopsy, coupled with polymerase chain reaction. Blastocyst biopsy has also been performed in human embryos; however, there has been no clinical application so far. Existing data have not shown any detrimental effect of micromanipulation and biopsy involved in the preimplantation development of the human embryo. The existing experience on micromanipulation of gametes (zona-opening procedures, subzonal sperm insertion, and sperm microinjection into the ooplasm) has also demonstrated the clinical usefulness in assisted fertilization, suggesting a possible selective application of various micromanipulation techniques and their combinations in male infertility.

Biopsy

Electroejaculation in combination with in vitro fertilization and gamete micromanipulation for treatment of anejaculatory male infertility.

OBJECTIVE: Failure to ejaculate may be overcome by use of electroejaculation. However, such semen samples are often unsuitable for therapies like intrauterine insemination. The combination of electroejaculation with in vitro fertilization, including gamete micromanipulation, should improve chances of fertilization and pregnancy in such cases. STUDY DESIGN: Within a private infertility clinic electroejaculation in combination with intrauterine insemination was carried out in 18 cycles (10 couples). Four couples went on to receive therapy by electroejaculation plus in vitro fertilization, along with six other couples (15 cycles total) with semen too poor for intrauterine insemination. RESULTS: One term pregnancy arose in the electroejaculation-intrauterine insemination group, and one term pregnancy plus one continuing pregnancy arose from two couples (three cycles) who underwent in vitro fertilization with conventional insemination after electroejaculation. Six couples (nine cycles) had embryos arising only from gamete micromanipulation transferred, and this yielded two term pregnancies, one spontaneous abortion, and a biochemical pregnancy. Two couples (three cycles) failed to achieve fertilization even with micromanipulation; however, donor-inseminated eggs gave rise to two term pregnancies and one continuing pregnancy in these patients. CONCLUSIONS: This report confirms the feasibility of in vitro fertilization in conjunction with electroejaculation and extends the therapy to incorporate gamete micromanipulation.

Adult

Micromanipulation of cleaved embryos cultured in protein-free medium: a mouse model for assisted hatching.

A mouse model for studying anomalies of human embryonic hatching following micromanipulation is proposed. Initiation and completion of mouse blastocyst hatching was severely impaired (34/292; 12% and 28/292; 10%, respectively) with protein deprivation, resembling the situation in human in vitro fertilization. Hatching ability was restored when an artificial gap was introduced in the zona pellucida by micromanipulation at the cleaved embryo stage. This enabled 77% (285/371) and 36% (134/371) of the embryos to initiate and complete hatching in protein-free medium. No differences were found in overall cell counts between the two groups of embryos. Transfer of micromanipulated blastocysts to pseudopregnant females resulted in development of healthy fetuses.

Animals

A compact and stable hydraulic micromanipulator patterned after a Huxley-style approach.

I describe a remote-controlled micromanipulator platform that is stable, durable, precise, and easy to construct. Small metallic bellows are used for hydraulic control, where all fluid connections are made by standard 1/16-in. high-performance liquid chromatography fittings. Inspired by the parallelogram suspension utilized in the larger Huxley-style micromanipulator (A. F. Huxley. J. Physiol. Lond. 157: 6-5P, 1961), the device is a compact cradle suspension of folded lever arms that creates vertical motions which have minimal cross-coupled horizontal error. A simple arrangement for securing the bellows in the remote controller counteracts the vertical cross-coupling error that arises in the parallelogram suspension so that the position of the microtool more faithfully corresponds to the micrometer settings. Being compact, the micromanipulator can be mounted on a microscope stage to eliminate the microscope's resonance as a source of vibration. This feature also reduces the cantilevering of the microtool that 1) is a source of parasitic vibrations and 2) limits the load bearing in larger devices which can only be placed alongside the microscope. The device has a good dynamic response, and one design suits both right- and left-handed use.

Chromatography, High Pressure Liquid

Advances in clinical micromanipulation of gametes and embryos. Assisted fertilization and hatching.

Several methods for micromanipulation of human gametes have been proposed to enhance fertilization in cases of male infertility. Of these methods, two have been successful in producing pregnancies and live births worldwide; these include partial zona dissection and subzonal sperm insertion. During the period between October 1989 and July 1991, 251 patients with male infertility due to impaired sperm function were treated with in vitro fertilization in conjunction with gamete micromanipulation at our center. Sixty pregnancies (24% per cycle, 42% per replacement) resulted in 144 patients. The details of these treatments are discussed. In another study, in an attempt to increase the incidence of implantation, we have conducted three clinical trials of assisted hatching and selected assisted hatching. The combined results of the trials indicate a clinical pregnancy rate of 51% in the control group and 60% in the micromanipulated group (P less than .05). Moreover, while 20% of the embryos replaced in the control group implanted the implantation rate was increased to 28% in the experimental group (P less than .05). Methodologies and possible implications of these treatments are discussed.

Embryo Implantation

Micromanipulation of adhesion of a Jurkat cell to a planar bilayer membrane containing lymphocyte function-associated antigen 3 molecules.

Cell adhesion plays a fundamental role in the organization of cells in differentiated organs, cell motility, and immune response. A novel micromanipulation method is employed to quantify the direct contribution of surface adhesion receptors to the physical strength of cell adhesion. In this technique, a cell is brought into contact with a glass-supported planar membrane reconstituted with a known concentration of a given type of adhesion molecules. After a period of incubation (5-10 min), the cell is detached from the planar bilayer by pulling away the pipette holding the cell in the direction perpendicular to the glass-supported planar bilayer. In particular, we investigated the adhesion between a Jurkat cell expressing CD2 and a glass-supported planar bilayer containing either the glycosyl-phosphatidylinositol (GPI) or the transmembrane (TM) isoform of the counter-receptor lymphocyte function-associated antigen 3 (LFA-3) at a concentration of 1,000 molecules/microns 2. In response to the pipette force the Jurkat cells that adhered to the planar bilayer containing the GPI isoform of LFA-3 underwent extensive elongation. When the contact radius was reduced by approximately 50%, the cell then detached quickly from its substrate. The aspiration pressure required to detach a Jurkat cell from its substrate was comparable to that required to detach a cytotoxic T cell from its target cell. Jurkat cells that had been separated from the substrate again adhered strongly to the planar bilayer when brought to proximity by micromanipulation. In experiments using the planar bilayer containing the TM isoform of LFA-3, Jurkat cells detached with little resistance to micromanipulation and without changing their round shape.

Antigens, CD

Micromanipulation of embryos and germ cells: an approach to gene therapy?

Recent advances in mammalian gamete and embryo micromanipulation have stimulated the scientific and medical communities, and to some degree the public at large, to become aware that treatment of genetic disease by direct alteration of the genetic code may soon be possible. Because these micromanipulation techniques result in modification of the genotype at the earliest stages of development, such "gene therapy" affects not only the conceptus itself but also its germ cells. Thus such genetic modifications are heritable and can be transmitted indefinitely to succeeding generations of progeny. In the presentation, both narrow and broad definitions of gene therapy will be considered with respect to the techniques upon which they are based, their potential for treatment of genetic disease, and their current feasibility.

Animals

Atypical cells in the normal guinea pig organ of Corti as revealed by micromanipulation in SEM.

Inner ear tissue of the normal guinea pig was conductively stained (OTOTO-method) for SEM investigations. The Hensen's cells of the organ of Corti were removed using a micromanipulator inside the SEM. By this method atypical bodies of sensory and supporting cells were revealed in the apical turns of the cochlea. Atypical sensory cells showed great variations in size and shape. Several had no contact to Deiter's cells and no or only one nerve supply at their basal end. Atypical Deiter's cells showed alterations in shape and in the form of their phalangeal processes. Additionally altered parts of the organ of Corti were isolated by micromanipulation and embedded for correlative TEM-investigations.

Animals

Potential of hypertonic medium treatment for embryo micromanipulation: II. Assessment of nuclear transplantation methodology, isolation, subzona insertion, and electrofusion of blastomeres to intact or functionally enucleated oocytes in rabbits.

The objective of this research was to study efficiency of embryo development following transfer of blastomeres into the perivitelline space of oocytes. Single blastomeres from 8-, 16-, and 32-cell embryos were obtained following mucin coat and zona pellucida removal by combined treatments with pronase and acidic phosphate-buffered saline (PBS, pH = 2.5). Blastomeres were separated by pipetting with a fire-polished micropipette following incubation in Ca+(+)-free PBS for 15 min at 39 degrees C. This procedure resulted in over 97% blastomere separation. For ease of blastomere insertion, oocytes were placed in droplets of 0.5 M sucrose in PBS (SPBS) during micromanipulation. To functionally enucleate oocytes some were stained with Hoechst 33342 DNA stain and irradiated. A single 8- or 16-cell blastomere was aspirated into an injection pipette (35 microns or 25 microns at the tip, respectively) and inserted into the perivitelline space of an irradiated or non-irradiated oocyte, but not fused with the oocyte. This micromanipulation procedure did not affect development of individual blastomeres into blastocysts or trophectoderm vesicles when compared with cultured control single blastomeres (P greater than .05). When the inserted blastomere was induced to fuse with an intact non-irradiated oocyte under an electric field, 56-57% were fused and 39-45% of the fused and activated oocytes developed to morulae or blastocysts. When an inserted blastomere (from 8-32-cell embryos) was induced to fuse with a functionally enucleated oocyte treated by Hoechst 33342 staining, followed by washing and UV-light irradiation, 63-66% of them were fused, but only 15-22% developed to the morula or blastocyst stage. This research demonstrated that the use of hypertonic medium treated oocytes greatly improved the ease and success rate of blastomere subzona insertion, but the value of functionally enucleated oocytes as recipient cells for nuclear transfer requires further investigation.

Animals

New ocular micromanipulator for measurements of retinal and vitreous physiologic parameters in the mammalian eye.

A new ocular micromanipulator for introducing a microelectrode into the mammalian eye is described. Included is a technical description of the device, incorporating arched tracks and DC motors to provide for angular motion around a scleral entrance point. Applications for in vivo measurements of local PO2 in the retina and vitreous of miniature pigs and cats are shown. The new design features of this micromanipulator allow for smooth microelectrode movements over large retinal areas, facilitating the rapid collection of data in many different areas of the retina and vitreous.

Animals

Micromanipulation studies of chromosome movement. I. Chromosome-spindle attachment and the mechanical properties of chromosomal spindle fibers.

We have used micromanipulation to study the attachment of chromosomes to the spindle and the mechanical properties of the chromosomal spindle fibers. Individual chromosomes can be displaced about the periphery of the spindle, in the plane of the metaphase plate, without altering the structure of the spindle or the positions of the nonmanipulated chromosomes. From mid-prometaphase through the onset of anaphase, chromosomes resist displacement toward either spindle pole, or beyond the spindle periphery. In anaphase a chromosome can be displaced either toward its spindle pole or laterally, beyond the periphery of the spindle; however, the chromosome resists displacement away from the spindle pole. When an anaphase half-bivalent is displaced toward its spindle pole, it stops migrating until the nonmanipulated half-bivalents reach a similar distance from the pole. The manipulated half-bivalent then resumes its poleward migration at the normal anaphase rate. No evidence was found for mechanical attachments between separating half-bivalents in anaphase. Our observations demonstrate that chromosomes are individually anchored to the spindle by fibers which connect the kinetochores of the chromosomes to the spindle poles. These fibers are flexible, much less extensible than the chromosomes, and are to pivot about their attachment points. While the fibers are able to support a tensile force sufficient to stretch a chromosome, they buckle when subjected to a compressive force. Preliminary evidence suggests that the mechanical attachment fibers detected with micromanipulation correspond to the birefringent chromosomal spindle fibers observed with polarization microscopy.

Animals

Treatment of male infertility by gamete micromanipulation.

Over the past decade, in vitro fertilization (IVF) has become a routine and acceptable tool in the treatment of infertility. However, major limitations in solving certain infertility problems still remain. Male infertility is one area in which only a small fraction of patients have benefited from IVF. Union of male and female gametes, either in vivo or in vitro, requires sperm penetration through the cumulus oophorus and the zona pellucida. Failure of fertilization despite the increased number of spermatozoa introduced into the oocyte's vicinity by IVF, has been shown to be directly related to abnormalities in sperm cell morphology and motility. The improved technology for micromanipulation of gametes has made it possible to circumvent the oocyte barriers to sperm penetration, thereby greatly reducing the number of normal sperm cells needed to achieve fertilization. This paper reviews the three major micromanipulative strategies which have been developed over the past five years, patient selection for the different procedures and the methods of sperm preparation to improve the yield of the applied technique.

Humans

Combined micromanipulation, culture and immunofluorescent techniques for isolation of the coccal organisms comprising the "corn cob" configuration of human dental plaque.

The present study describes methods to 1) selectively isolate Corn Cob Configurations (CCC) from dental plaque by micromanipulation; 2) obtain pure cultures of the coccal constituent; 3) determine by immunofluorescent procedure which organisms originated from the CCC. Using a de Fonbrune micromanipulator, CCC specimens were isolated from supragingival plaque samples. The viability of one specimen thus obtained was established by observing growth on a slide culture. One set of CCC specimens was transferred to broth and incubated aerobically immediately upon collection. Another set was transferred to prereduced transport medium and later plated on blood agar for aerobic and anaerobic culturing. A total of 10 coccal strains were thus isolated. Antisera produced in rabbits against the 10 strains were used to localize these coccal organisms on plaque smears by using the indirect fluorescent antibody technique. Of the 10 antisera tested, 2 produced against streptococcal strains consistently gave a positive immunofluorescent reaction with the coccal component of CCC in the plaque smears; the corresponding streptococci were therefore considered to be CCC forming strains in vivo.

Bacteria

The potentiality of antibody-producing cells. II. Evidence for two antibody molecules of different specificities secreted by micromanipulated bispecific mouse spleen cells.

Bispecific PFC appearing on the 4th day after immunization of mice with sheep erythrocytes conjugated with trinitrophenyl hapten (TNP-SRBC) were identified by their capacity to lyse native SRBC and TNP-conjugated horse erythrocytes (TNP--HoRBC) simultaneously in an open carboxymethylcellulose medium. Individual PFC thus detected, were micromanipulated into two successive media containing the indicators SRBC and TNP--HoRBC. Out of 103 transferred double cells ninety-two (89 per cent) remained double in the second medium and of the ninety-two transferred into the third medium, fifty-four (58 per cent) provoked a double lysis, eighteen (19 per cent) provoked a single lysis and twenty (23 per cent) ceased to lyse. On the other hand, when the second medium contained the indicators and the soluble specific inhibitor (TNP--BSA), out of 156 transferred double PFC, 125 (80 per cent) became single and only nineteen (12 per cent) remained double. Of these cells, 136 were transferred into the third medium (not containing inhibitor) and here again sixty-five (48 per cent) became double, forty-nine (36 per cent) remained single and twenty-two (17 per cent) ceased to provoke any lysis. Other double PFC were micromanipulated from the original revealing medium into two successive media containing only one indicator and the homologous (second medium) or the heterologous third medium) soluble inhibitor (TNP--BSA or soluble SRBC antigen), in order to see whether a soluble inhibitor suppresses only the corresponding specific lysis. Out of 186 double PFC transferred into the media containing the indicator and the corresponding inhibitor 147 (79 per cent) were specifically inhibited, whereas out of 176 double PFC transferred into the third medium (in which about 20 per cent of the cells cease to function) containing one indicator and the unrelated inhibitor, 117 (66-6 per cent) lysed the indicator in spite of the presence of the unrelated inhibitor. Since a specific inhibitor suppresses the lysis of the corresponding indicator, whereas its presence does not interfere with the lysis of the unrelated indicator in the majority of double PFC, it can be concluded that these cells secrete two types of antibody molecules possessing different specificities.

Animals

In vitro decondensation of mammalian sperm and subsequent formation of pronuclei-like structures for micromanipulation.

In this study, we describe an efficient protocol for the formation of in vitro developed pronuclei for micromanipulation techniques. Our approach involved incubation of demembranated or permeabilized mammalian sperm in a phosphate buffer supplemented with heparin and beta-mercaptoethanol. Under the prevailing conditions, we achieved a uniform and reliable synchronous decondensation of sperm nuclear DNA. This initial decondensation facilitated the removal of mammalian protamines upon subsequent incubation in an amphibian egg extract. The interchange of protamines for histones to stabilize the DNA structure is recognized as a prerequisite for pronuclear formation. Furthermore, immunocytochemical studies have revealed that pronuclear development is accompanied by the formation of a nuclear lamina with corresponding DNA synthesis. The method described gave a high yield of nuclei during pronuclear formation. Ultimately, our aim is to transfer the in vitro-developed pronuclei into mammalian oocytes by micromanipulation. This novel procedure may prove useful in alleviating severe male factor problems especially in oligozoospermic cases in our in vitro fertilization center.

Animals

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

Micromanipulation in a center for reproductive medicine.

Several variations of micromanipulation of the female gamete (zona drilling, zona cracking, ooplasmic sperm injection, partial zona dissection) have been applied recently to human IVF to overcome severe male factor. Of the first 16 cycles attempted using partial zona dissection, one pregnancy resulted leading to a normal term delivery. Careful removal of the coronal cells, as well as stepwise removal of sucrose postpartial zona dissection, will facilitate this procedure and greatly reduce potential damage to the oocyte by pH, mechanical, or thermal injury. Micromanipulation has become a routine service offered in our program in cases where the likelihood of a poor IVF outcome is either known or suspected, and also serves as a replacement for simple reinsemination in cases of failed fertilization.

Adult