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Discrepancy between in vitro measurable and in vivo virus neutralizing cytotoxic T cell reactivities. Low T cell receptor specificity and avidity sufficient for in vitro proliferation or cytotoxicity to peptide-coated target cells but not for in vivo protection.

The TCR-alpha beta of CTL recognize peptide Ag in association with MHC class I molecules. TCR binding should be highly specific to guarantee pathogen specificity and to avoid self-reactivity. Therefore, the in vivo relevance of T cells exhibiting cross-reactivities in vitro and the respective role of the TCR affinities involved are not clear. To analyze high and low avidity T cell activities both in vitro and in vivo, we investigated primary and clonal CTL responses specific for the lymphocytic choriomeningitis virus nucleoprotein 118-126 epitope in association with the two closely related H-2Ld or H-2Lq molecules. As expected, we found highly specific class I-allele-restricted CTL responses when antiviral protection or immunopathology in vivo and lysis of virus infected target cells in vitro were analyzed. In contrast, the CTL were MHC crossreactive and thus considerably less discriminatory against targets expressing high MHC-peptide densities and in proliferation assays. The data show that relatively high TCR avidities are required for virus neutralization in vivo, in contrast to in vitro analyses of peptide-coated target cells or proliferative T cell responses that may engage TCR of low avidity and broad specificity and therefore may not reflect biologically relevant TCR avidities.

Animals↗

T cells from tumor-immune mice nonspecifically expanded in vitro with anti-CD3 plus IL-2 retain specific function in vitro and can eradicate disseminated leukemia in vivo.

The therapeutic efficacy of adoptive immunotherapy of cancer has been shown to positively correlate with the dose of tumor-immune T cells transferred. Therefore, the success of this therapy is critically dependent on the ability to procure large numbers of functionally active T cells. Previous studies in animal models have shown that the limited therapeutic efficacy of a small number of immune T cells can be greatly enhanced by expansion of T cells in vitro to greater numbers before transfer in vivo. Optimal regimens for T cell expansion in vitro have generally employed the use of intermittent stimulation of the TCR with specific Ag followed by exogenous IL-2. The use of IL-2 alone does not provide for requisite episodic up-regulation of IL-2R. Stimulation of the invariant CD3 portion of the TCR/CD3 complex with antibody to CD3 (anti-CD3) represents an alternative method of up-regulating IL-2R and has been used to nonspecifically induce the growth of Ag-specific T cell lines and clones long-term in vitro with maintenance of function and specificity. The current study examined whether resting T cell populations containing small numbers of memory tumor-specific T cells could be rendered more effective in tumor therapy by nonspecific expansion in vitro with anti-CD3 plus IL-2. Spleens from C57BL/6 mice previously immunized to FBL-3, a syngeneic virus-induced leukemia, were nonspecifically stimulated with anti-CD3 plus IL-2. The resultant T cells were expanded in number, were nonlytic to FBL-3 but retained the ability to become lytic upon specific stimulation by FBL-3, and were effective in specific tumor therapy. The Ag-specific anti-tumor immune function declined on a per cell basis after each cycle of anti-CD3-induced T cell expansion. However, the approach resulted in a substantial increase in total T cell number and an overall net increase in the function of the effector T cell population. Thus, stimulation of tumor-immune T cell populations with anti-CD3 plus IL-2 represents a nonspecific method for expanding the number of specific effector T cells for cancer therapy.

Animals↗

Correlation of response of aplastic anemia patients to antilymphocyte globulin with in vitro lymphocyte stimulatory effect: predictive value of in vitro test for clinical response.

Therapy with antilymphocyte globulin (ALG) has been shown to be effective in restoring hematopoiesis to some patients with aplastic anemia. It would be useful to have a method for predicting those likely to be responders versus nonresponders. The mode of immunostimulatory action of ALG is of interest in addition to its immunosuppressive action. We examined in vitro the distribution of the proliferative responses of ALG-stimulated peripheral blood mononuclear cells (PBMCs) obtained from 18 patients with aplastic anemia, eight of whom responded to ALG and 10 who did not. We found a significant difference in the proliferative response of PBMCs obtained from the eight responders versus the 10 nonresponders (P less than .01). Two-color flow cytometry analysis of the patients' PBMCs stimulated by ALG in vitro showed that the CD4-positive subsets were activated to a greater extent by ALG than the CD8-positive subsets. Moreover, a positive correlation with the clinical response of patients to ALG with granulocyte-macrophage colony-stimulating factor produced by their PBMCs stimulated by ALG suggests that the immunostimulatory property of ALG has an important role in the treatment of aplastic anemia. Our results suggest that the clinical response to ALG therapy is correlated with its lymphocyte proliferative effect in vitro, and indicates that the assessment of the proliferative response of PBMCs in vitro would be useful in predicting the clinical response to ALG therapy.

Adolescent↗

Elevated serum interleukin-2 receptor; increased in vitro immunoglobulin synthesis and lack of response to testosterone-enhanced in vitro interleukin-2 production in ankylosing spondylitis.

The pathogenesis of ankylosing spondylitis (AS) remains unknown, although previous studies have strongly suggested that it may result from immunological aberration. To further explore the pathogenetic mechanisms, in vitro syntheses of immunoglobulins and interleukin-2 (IL-2) by peripheral blood mononuclear cells (MNC), and the serum level of the interleukin-2 receptor (IL-2R) were studied in 35 patients with definite AS and in 28 healthy controls. MNC were cultivated in the presence of pokeweed mitogen (PWM) for seven days. Immunoglobulins in the supernatants were measured by rate nephelometer (Immunochemistry System Analyser II, Beckman.) In vitro synthesis of IL-2 was carried out by cultivating MNC in medium only; in medium containing physiological concentration of the male sex hormone i.e., testosterone 500 ng/dl and estradiol 2 ng/dl; and in medium containing physiological concentration of female sex hormone, i.e., testosterone 50 ng/dl and estradiol 20 ng/dl. IL-2 was quantitated using an IL-2-dependent cytotoxic T lymphoid cell line (CTLL). Serum IL-2R was measured using an IL-2R test kit (CELLFREE, T Cell Sciences, Cambridge, MA). The results showed: In vitro synthesis of IgG, IgA and IgM was significantly higher in AS than in controls; In vitro synthesis of IL-2 was significantly enhanced by testosterone in normal control, but not in AS; and Serum IL-2R was significantly elevated in patients with AS. These findings, viewed in conjunction with previous results here, lead to postulation that an inflammatory process, elicited in HLA-B27-positive males and caused by an infectious agent invading via the mucosa may both cause immunological abnormalities and provoke various symptoms and signs of AS.

Adolescent↗

In vitro analysis of the response of multicellular tumor spheroids exposed to chemotherapeutic agents in vitro or in vivo.

Multicellular tumor spheroids (MTS) have been exposed to chemotherapeutic agents in vitro (nitrogen mustard) or in vivo (cyclophosphamide) and analyzed in vitro in terms of altered growth patterns. Whether the MTS were exposed in vitro or in vivo, the major effect of the drugs was to induce a dose-dependent lag period before the normal MTS growth rate resumed. Exposure of MTS in the peritoneal cavity to i.v. injection cyclophosphamide results in patterns similar to the in vitro exposure system, except that a host anti-MTS reaction was detected. In combination, these two methods allow the study of the responses of these complex tumor forms to chemotherapy.

Animals↗

Effect of oocyte maturation medium on in vitro development of in vitro fertilized bovine embryos.

The objective of this study was to examine the effects of different culture media used for maturation of bovine oocytes on in vitro embryo development following in vitro fertilization. Oocytes were aspirated from 2-5 mm follicles of ovaries collected at a local abattoir. The oocyte-cumulus complexes (OCCs) were cultured for 23-25 h in one of seven commercially available media supplemented with 6 mg/ml bovine serum albumin (BSA), 0.25 mM pyruvate, 10 micrograms/ml luteinizing hormone (LH), 0.5 microgram/ml follicle-stimulating hormone (FSH), and 1 microgram/ml estradiol. After maturation for 23-25 h, all eggs were subjected to the same in vitro fertilization protocol using modified TALP medium and subsequently cultured in the same serum-free embryo culture medium (HECM-1/BSA) for 8 days, after which embryo development was assessed. Five media (SFRE, MEM alpha, TCM199, MEM alpha/+, RPMI:MEM alpha) better supported normal oocyte maturation as determined by embryo development to the two-cell (76-82%), morula/blastocyst (25-32%), and blastocyst (12-19%) stages. Oocytes that were matured in Waymouth's medium MB 752/l or Ham's F-12 had a significantly reduced incidence of cleavage to the two-cell stage (52% and 37%, respectively), which was not attributed to failure of fertilization. Of the eggs that did cleave to the two-cell stage in these two media, 27% and 9% developed to morulae/blastocysts but only 6% and 3%, respectively, developed into blastocysts.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Maturation in vitro of pig oocytes in protein-free culture media: fertilization and subsequent embryo development in vitro.

In the present study, attempts were made to develop a protein-free (PF) in vitro maturation (IVM) system for pig oocytes and to examine subsequent embryo development after in vitro fertilization. In experiment 1, four IVM media were tested: 1) control: North Carolina State University (NCSU) 23+10% porcine follicular fluid; 2) PF-NCSU: NCSU 23+0.1% polyvinyl alcohol (PVA)+1% amino acids; 3) PF-TCM: Tissue culture medium (TCM) 199+PVA; and 4) PF-WM: PF-Waymouth MB 752/1 medium (WM)+PVA. Oocytes were cultured in the respective media containing eCG and hCG (10 IU/ml each) for 20-22 h and then without hormonal supplements for an additional 20-22 h. After culture, the degree of cumulus expansion and frequency of nuclear maturation were determined. Some oocytes were coincubated with frozen-thawed spermatozoa for 5-6 h in modified Tris-buffered medium containing caffeine and BSA. In experiment 2, oocytes were matured in control, PF-TCM, and PF-WM, fertilized in vitro, and cultured for 144 h in NSCU 23+BSA. Fewer (p < 0.01) oocytes reached metaphase II stage in PF-NCSU (45% vs. 80-85%) than in the other media. Oocytes matured in control medium showed the most cumulus expansion, followed by those in PF-TCM and PF-WM; those in PF-NCSU showed very slight expansion. A lower (p < 0.05) penetration rate was obtained for oocytes matured in PF-NCSU than in the control medium (59% vs. 81%). In contrast to those in control (96%) and PF-TCM (93%), oocytes in PF-WM (65%) showed a lower male pronuclear formation. Compared to that in the control, a significantly lower (p < 0.05) cleavage rate was also observed for oocytes matured in PF-WM. Similar proportions of embryos developed to the blastocyst stage when oocytes were matured in control (22%) and PF-TCM (13%). These results indicate that pig oocytes can be successfully matured in a protein-free medium with subsequent development to the blastocyst stage.

Animals↗

In-vitro fertilization of rabbit ova ovulated in vitro during ovarian perfusion.

During in-vitro perfusion of rabbit ovaries, ova that ovulated in response to hCG were recovered and cultured with spermatozoa capacitated in vivo. After culture for 30 h, 113 (48.8%) of the ova underwent cleavage and were not degenerate. Of these 113 zygotes, 75 were successfully transferred to the oviducts of 14 gonadotrophin-treated host rabbits. On Day 14 after transfer there were 14 implantation sites and 9 pregnancies proceeded to term. These data indicate that in-vitro ovulated ova can be fertilized in vitro and be used to establish normal pregnancies in a host rabbit.

Animals↗

Developmental ability of enucleated bovine oocytes matured in vitro after fusion with single blastomeres of eight-cell embryos matured and fertilized in vitro.

Single blastomeres from eight-cell stage bovine embryos matured and fertilized in vitro were electrically fused with enucleated oocytes matured in vitro. In experiment 1, The percentage of these reconstituted embryos developed to the two- to eight-cell stage 48 hr after electrofusion was increased when both the eight-cell embryos and the enucleated oocytes were derived from oocytes cultured with granulosa cells (14% vs. 38%). In experiment 2, the relationship between activation of oocytes and developmental ability of reconstituted embryos was examined. Although both ethanol and electrical stimulation efficiently induced parthenogenetic activation of oocytes matured in vitro for 26-28 hr (ethanol, 89%; electrical stimulation, 73%), the ratio of the second polar body extrusion differed (80% vs. 22%). Ethanol-treated enucleated oocytes, however, were not significantly different from the early cleavage of the reconstituted embryos 48 hr after electrofusion (nontreated, 38%; treated, 43%). In experiment 3, reconstituted embryos at the two- to eight-cell stage 48 hr after the electrofusion were cocultured with granulosa cells for 6-7 days. Of 69 embryos, one developed to a morula and three developed to blastocysts.

Animals↗

Effect of follicle-stimulating hormone and luteinizing hormone during bovine in vitro maturation on development following in vitro fertilization and nuclear transfer.

The effects of luteinizing hormone (LH) (0, 100, 10,000 IU/ml) and follicle-stimulating hormone (FSH) (20 micrograms/ml) supplementation during in vitro maturation of slaughterhouse-derived oocytes on polar body formation and embryo development subsequent to in vitro fertilization and nuclear transfer were evaluated. Gonadotropin supplementation of maturation medium in the presence of serum neither enhanced the proportion of oocytes forming a polar body nor significantly affected development following in vitro fertilization or nuclear transfer, except at the highest LH concentration. A very high concentration of LH (10,000 IU/ml) significantly decreased polar body formation, initial cleavage, and blastocyst development (P < 0.05).

Animals↗

In vivo development of in vitro fertilized bovine oocytes matured in vivo versus in vitro.

In vivo developmental potentials of in vivo and in vitro matured oocytes fertilized in vitro were assessed in cattle. One-cell stages produced from in vivo matured oocytes developed into a pregnancy when transferred to the ampulla part of oviducts of synchronized heifers. In vitro matured oocytes achieved high penetration and cleavage rates but did not develop into pregnancies when transferred to synchronized heifers.

Animals↗

Percutaneous absorption of benzyl acetate through rat skin in vitro. 1. Validation of an in vitro model against in vivo data.

The percutaneous absorption in vitro of the fragrance agent benzyl acetate has been evaluated in flow-through diffusion cells using shaved full-thickness skin from male Fischer 344 rats. After the application of neat [methylene-14C]benzyl acetate to the epidermal surface of the skin and occlusion with parafilm 1.3 cm above the skin surface, the absorption of the chemical across the skin and into the receptor fluid was rapid and extensive, commencing within 1 hr of application, and reaching 49.8 +/- 3.2% (mean +/- SD, n = 4) of the applied dose after 48 hr. The coefficient of variation for absorption at 48 hr between four identical experiments was 6.4%. The extent of absorption at 48 hr of benzyl acetate applied in 50% (v/v) ethanol was not significantly different from that after application neat, although absorption at earlier times was enhanced, with a maximum increase of 8.5% of the applied dose at 12 hr. Over the dose range studied there was a linear relationship (r = 0.996) between the amount of benzyl acetate applied to the skin (1.66-33.13 mg benzyl acetate/cm2) and the amount absorbed into the receptor fluid at 24 hr (0.66 +/- 0.04-10.27 +/- 0.51 mg/cm2). The extent of absorption of benzyl acetate through rat skin in vitro was compared with the extent of absorption in vivo at 24 hr and a correlation coefficient of 0.993 was obtained. These data support the use of this in vitro system as a model to predict in vivo absorption and indicate the suitability of the system to study factors influencing the disposition of topically applied benzyl acetate.

Animals↗

In vitro transformation of osteoblasts: putative formation of osteosarcoma in vitro.

The study of bone cancer has been difficult in part due to a lack of appropriate in vitro osteosarcoma model systems. The development of such systems is essential if a clearer understanding of the biology of and mechanisms behind the formation and progression of bone cancers is to be obtained. We report here the development of an in vitro model system which demonstrates important characteristics generally associated with osteosarcoma. The chick periosteal osteogenesis model was infected with the Fujinami Sarcoma Virus (FSV) containing the v-fps oncogene which encodes for a P140gag-fps protein-tyrosine kinase. Under the appropriate conditions FSV infected cultures developed bone and cartilaginous tissues which showed histopathological findings consistent with osteosarcoma. Biochemical data indicating massive increases in alkaline phosphatase activity, protein content, 3H-Thymidine incorporation as well as expression of active P140gag-fps confirm that transformation has occurred in FSV infected cultures. This novel in vitro model system should prove most useful in the study of bone cancer.

Animals↗

Obstetric outcome of patients with polycystic ovary syndrome treated by in vitro maturation and in vitro fertilization-embryo transfer.

OBJECTIVE: To assess the obstetric outcome of pregnancies resulting from in vitro maturation (IVM) and IVF-ET of immature oocytes retrieved from women with polycystic ovary syndrome (PCOS). DESIGN: Prospective observational study. SETTING: University fertility clinic. PATIENT(S): One hundred thirty-nine women undergoing 203 IVM treatment cycles. INTERVENTION(S): Immature oocyte recovery from unstimulated ovaries. In vitro oocyte maturation and fertilization. Fresh ET and assessment of obstetric outcomes in the pregnant women. MAIN OUTCOME MEASURE(S): Pregnancy and obstetric outcome. RESULT(S): Forty-one pregnancies were obtained in 187 ETs, resulting in a pregnancy rate of 21.9%. Except for three patients lost to follow-up in these pregnancies, the abortion and live birth rates were 36.8% (14 of 38) and 63.2% (24 of 38), respectively. The mean (+/-SD) gestational age and birth weight at delivery for singletons were 38.4 +/- 2.0 weeks (range, 33-41.6 weeks) and 3,252 +/- 516 g (1,750-4,100 g), respectively. For twins these were 36.7 +/- 1.9 weeks (34.6-39 weeks) and 2,361 +/- 304 g (1,900-2,990 g), respectively. Pregnancy complications occurred in five patients (13.2%); these included preterm labor (n = 3) and placenta previa (n = 2). Two patients (5.3%) had a major congenital anomaly diagnosed by ultrasonography. CONCLUSION(S): The abortion rate, gestational age and birth weight at delivery, and obstetric complications of pregnancies conceived by IVM-ET in women with PCOS were comparable with those of other women with PCOS being treated by conventional IVF-ET. In vitro maturation followed by IVF-ET seems to be a useful treatment option for women with PCOS, thus avoiding the risk of ovarian hyperstimulation syndrome.

Adult↗

Biodegradable microspheres alone do not stimulate murine macrophages in vitro, but prolong antigen presentation by macrophages in vitro and stimulate a solid immune response in mice.

The purpose of this study was to analyze the potential of various types of biodegradable microspheres (MS) (i) to activate in vitro cell line-derived macrophages (RAW 264.7, Mphi), and primary peritoneal and bone marrow-derived mouse Mphi, to prolong the release and presentation of microencapsulated synthetic malaria antigens by Mphi after uptake of antigen-loaded MS, and (ii) to stimulate an immune response in mice against a microencapsulated synthetic malaria antigen. The MS were made of various types of poly(lactide-co-glycolide) (PLGA) or chitosan cross-linked with tripolyphosphate. PLGA, but not chitosan MS, were efficiently ingested by Mphi. Upon exposure to the various MS types, Mphi increased only the production of reactive oxygen intermediates (ROI), while the production of nitric oxide (NO), tumor necrosis factor alpha (TNF-alpha), and the expression of cyclooxigenase-2 (COX-2), inducible NO synthase (iNOS), the cell surface markers MHC class I and II, and CD 86 remained unaffected. In vitro release of the microencapsulated antigen from PLGA50:50 MS followed a pulsatile pattern and extended over 14 weeks. This prolonged antigen release was also mirrored in the significantly prolonged antigen presentation over more than 7 days by Mphi after uptake of antigen-loaded PLGA MS. Finally, antigen-loaded PLGA MS induced a solid immune response in mice after a single s.c.-injection, which was only slightly inferior to the antibody titers measured with the control formulation with Montanide ISA720. These results suggest that MS are well tolerated by Mphi. The prolonged antigen presentation by Mphi, as measured in vitro, along with the capacity to induce a strong immune response in animals emphasize that biodegradable MS are a very promising delivery system for both preventive and immunotherapeutic vaccines.

Animals↗

The effect of gamete co-incubation time during in vitro fertilization with frozen-thawed unsorted and sex-sorted ram spermatozoa on the development of in vitro matured adult and prepubertal ewe oocytes.

In vitro matured adult (Experiment 1) and prepubertal (Experiment 2) ewe oocytes were co-incubated with unsorted or sex-sorted frozen-thawed spermatozoa for 2 to 3 h (short) or 18 to 20 h (long) to determine the effects of reducing the gamete co-incubation time during IVF on subsequent embryonic development in vitro. For oocytes derived from adult ewes, there were no differences in oocyte fertilization and cleavage at 24 h post insemination (hpi) between types of spermatozoa or co-incubation times (P > 0.05). By 48 hpi, oocyte cleavage was higher after a short (390/602, 64.8%) compared with a long (381/617, 61.7%) co-incubation (P < 0.05), and was not significantly different for unsorted (266/372, 71.5%) and sex-sorted (505/849, 59.9%) spermatozoa. Blastocyst formation from cleaved oocytes was similar for unsorted (150/266, 56.4%) and sex-sorted (295/505, 58.4%) spermatozoa, but was higher after a short (240/390, 61.5%) than long (205/381, 53.8%) co-incubation (P < 0.05). Oocyte development to the blastocyst stage was not different for unsorted (150/372; 40.3%) and sex-sorted (295/847; 34.8%) spermatozoa but was significantly increased by a short (240/602, 39.9%) compared with a long (205/617, 33.2%) co-incubation. Fertilization of oocytes from prepubertal ewes was similar for types of spermatozoa and for duration of co-incubation. Oocyte cleavage (48 hpi) was similar for a short (241/377, 63.9%) and long (226/349, 64.8%) co-incubation with unsorted spermatozoa, but was increased (P < 0.05) by a long co-incubation (286/500, 57.2% versus 163/517, 31.5%) with sex-sorted spermatozoa. Blastocyst formation from cleaved oocytes was similar for unsorted (230/467, 49.3%) and sex-sorted (186/449, 41.4%) spermatozoa, and a short (200/404, 49.5%) or long (216/512, 42.1%) co-incubation. However, oocyte development to the blastocyst stage was higher (P < 0.05) after IVF with unsorted (230/726, 37.1%) than sex-sorted (186/1017, 18.3%) spermatozoa. Reducing the duration of gamete co-incubation did not deleteriously affect the in vitro development of adult and prepubertal ewe derived oocytes after IVF with unsorted and sex-sorted spermatozoa. In general, sex-sorting had no substantial influence on fertilization and embryo development rates.

Animals↗

Pregnancies and deliveries after in vitro maturation culture followed by in vitro fertilization and embryo transfer without stimulation in women with polycystic ovary syndrome.

OBJECTIVE: To improve the efficacy of an IVF-ET program for unstimulated patients with polycystic ovary syndrome (PCOS) with the use of culture for oocyte maturation. DESIGN: Prospective studies with the comparison of different ET procedures from March 1995 through February 1998. SETTING: University-affiliated hospital. PATIENT(S): Ninety-four cycles in 64 consenting patients with PCOS. INTERVENTION(S): Immature oocytes were retrieved from unstimulated patients with PCOS and subsequently cultured and fertilized in vitro. Zygote intrafallopian transfer (ZIFT), uterine ET, or a combined approach of ZIFT + uterine ET was subsequently performed. MAIN OUTCOME MEASURE(S): Laboratory and clinical data. RESULT(S): Among 1, 280 immature oocytes (13.6 +/- 7.5 oocytes per patient) retrieved, 89% (1,139) were morphologically normal, and 62.2% (708/1,139) of the normal oocytes matured in vitro after culture for 48 hours. When intracytoplasmic sperm injection was performed, 68% (481/708) developed to the normal pronuclear stage, and 88.1% of the embryos cocultured with Vero cells (266/302) cleaved. Eighty-five ET cycles were conducted and pregnancy was established in 23 cycles (27.1%), which consisted of 8 after uterine ET and 15 after a combined approach. Seventeen patients delivered 20 normal infants. CONCLUSION(S): The IVF-ET method using no ovarian stimulation followed by in vitro maturation culture can be a feasible assisted reproductive technology for treatment of PCOS with various complications.

Adult↗

In vitro culture and in vitro maturation of mouse preantral follicles with recombinant gonadotropins.

OBJECTIVE: To develop an effective method for in vitro maturation of preantral follicles isolated from mice ovarian tissue. DESIGN: Isolated preantral follicles were randomly allocated to designed experimental groups for study. SETTING: University-based research lab. PATIENT(S): Healthy, normal mice. INTERVENTION(S): Superovulation with pregnant mare serum gonadotropin and hCG. MAIN OUTCOME MEASURE(S): Morphological changes and E(2) production were assessed. RESULT(S): To obtain competent oocytes, preantral follicles must be cultured with medium containing insulin and recombinant gonadotropins (i.e., recombinant FSH and recombinant LH), with a change of medium daily. A high initial recombinant LH or recombinant FSH facilitates E(2) secretion, enhances granulosa cell outgrowth, and has earlier antral formation. However, prolonged culture in high-recombinant LH or recombinant FSH triggers early differentiation and luteinization of granulosa cells, which results in low metaphase II oocyte and blastocyst formation. CONCLUSION(S): We have developed a culture system that allows the successful maturation of preantral follicles in vitro. The matured follicles are a physiologically functional unit that not only secrete E(2) but also generate competent oocytes. In a special condition, 90% of the cultured follicles survived, 53.5% of them produced MII oocytes, and 50% of the derived MII oocytes were fertilized and reached the blastocyst stage after culture in vitro.

Animals↗