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Biomedical subjects

Takumi Takeuchi

Publications and source records attributed to Takumi Takeuchi.

31 records · Page 2Linked to original sources

Engineered FGF-2 expression induces glandular epithelial hyperplasia in the murine prostatic dorsal lobe.

OBJECTIVE: It is known that androgens and stromal-epithelial interactions are required for the formation and growth of the prostate. FGF-2 is overexpressed in prostatic stromal cells in benign prostatic hypertrophy (BPH)/prostate cancer. This supports the paracrine/autocrine growth of prostatic epithelial/stromal cells in the pathogenesis of BPH and invasive prostate cancer. METHODS: We established transgenic mice expressing FGF-2 under the control of a short rat probasin promotor. FGF-2 transgenic founder mice expressing FGF-2 in the prostate were infertile. Thus, male founder mice were sacrificed for histological analysis. RESULTS: FGF-2 was expressed in epithelial cells in glands of the dorsal, lateral, and ventral prostatic lobes of two FGF-2 transgenic founder mice, but not in the anterior lobe of transgenic mice or in any lobe of non-transgenic control littermates. Acinar epithelial glands in dorsal prostatic lobes of FGF-2 transgenic mice expressing FGF-2 were more dense and showed simple papillary hyperplasia of epithelial cells compared with those of control littermate mice. Glandular and luminal enlargement without epithelial growth was observed in the ventral lobe of FGF-2 transgenic mice compared with the controls. CONCLUSION: In conclusion, FGF-2 transgenic mice under the control of rat probasin promoter showed simple epithelial hyperplasia in glands of the prostatic dorsal lobe and glandular enlargement without epithelial growth in the prostatic ventral lobe.

Animals↗

Genetic and epigenetic modifications associated with human ooplasm donation and mitochondrial heteroplasmy - considerations for interpreting studies of heritability and reproductive outcome.

The mitochondrial heteroplasmy present in offspring from IVF and human ooplasm donation is troublesome and merits further exploration in a debate that is already complex and controversial. Improving the understanding of mitochondrial genomics in this context is important because mitochondriopathies can impact crucial cellular processes in renal, cardiovascular, central nervous, and endocrine systems. Relevant epigenetic consequences of mitochondrial heteroplasmy include associated abnormalities in mitochondrial translation products. Furthermore, as transmission and inheritance patterns of mtDNA are species-specific, it remains to be proven if findings derived from animal studies are applicable to human offspring. As an alternative to gamete research and proteomics based on animal experimentation, continued molecular characterization of the de novo human mitochondriopathies is posed to offer further insights regarding mitochondrial heteroplasmy. In this context, because knowledge of human mitochondrial genetics remains limited and the risks associated with ooplasm donation cannot be quantified, we do not favor its use for our patients at present. However, the small number of infants already conceived from this experimental approach warrant careful longitudinal evaluation. In particular, observational study of the few children born after ooplasm donation could provide opportunities to assess human mtDNA transmission and inheritance. Such findings could help identify features distinguishing natural mtDNA heteroplasmy from heteroplasmy observed after ooplasm donation. Future investigations should also quantify the degree any such heteroplasmy can exist innocuously. Disclosure of mtDNA mutations potentially affecting children conceived from IVF and ooplasm donation must be included during patient education at centers contemplating such treatment.

Animals↗

Y chromosome assessment and its implications for the development of ICSI children.

The aetiology of compromised spermatogenesis is often genetic in nature. There are only a few reports of father/son cohorts that have been evaluated to assess heritability of mutations associated with male factor infertility and the psychological well-being of the children. In the present study, multiple tissues were sampled from consenting male patients and their sons derived from intracytoplasmic sperm injection (ICSI) and underwent chromosomal and genetic analyses. Paediatric and psychological examinations were also conducted. In 87 men and 47 boys, 22 sequence tagged sites (STS) were analysed by multiplex PCR and deletion breakpoints were defined with additional loci. In one patient, the breakpoints map to the highly unstable palindrome-rich region within AZFb and proximal AZFc was investigated. A total of 86 blood, 26 semen, and 73 cheek cells samples were collected from adults, and 36 blood samples and 44 cheek cell specimens were obtained from the boys. Though all of the fathers had normal karyotypes, the incidence of chromosomal abnormalities in the somatic cells of male progeny was 8.3% (3/36). The incidence of germ line aneuploidy in these men was 0.5-2.8%. A CF mutation (Delta508) was detected in one of 87 men (1.2%) and microdeletions in Yq AZF were detected in 3.4% of 87 adults and in 2.1% of their sons (n = 47). In conclusion, screening for Y chromosome microdeletions provides crucial information in the counselling of couples seeking infertility treatment. Moreover, DNA extraction and Y deletion assessments of cheek cells provide a non-invasive approach. Inheritance of Yq deletions appears not to affect the psychological and physical development of children derived from ICSI.

Adult↗

Implications of cloning technique for reproductive medicine.

The birth of Dolly following the transfer of mammary gland nuclei into enucleated eggs established cloning as a feasible technique in mammals, but the moral implications and high incidence of developmental abnormalities associated with cloning have induced the majority of countries to legislate against its use with human gametes. Because of such negative connotations, restrictive political reactions could jeopardize the therapeutic and scientific promise that certain types of cloning may present. For example, in addition to its proposed use as a way of generating stem cells, the basic technique of nuclear transplantation has proven useful in other ways, including its application to immature eggs as a new approach to the prevention of the aneuploidy common in older women, and for some recent advances in preimplantation genetic diagnosis. Thus, while attempts at reproductive cloning in man would seem premature and even dangerous at present, this field will require rational rather than emotional reactions as a basis for legislation if the therapeutic promise of stem cell research and the experimental potential of nuclear transplantation techniques are to be fully realized.

Cloning, Organism↗

Does ICSI require acrosomal disruption? An ultrastructural study.

BACKGROUND: Aggressive immobilization of sperm prior to ICSI significantly improves fertilization rates, but the mechanism of this effect is not yet clear. This study was performed in order to assess the characteristics of mechanically immobilized human sperm by transmission electron microscope (TEM). METHODS: Sperm obtained from ejaculated semen samples from three different donors were immobilized in a standard manner for ICSI. They were then injected into the perivitelline space of mouse oocytes in order to be able to locate them by TEM. Intact motile sperm injected subzonally served as controls (n=160). Finally, the 'carrier' oocytes were fixed and processed for TEM. RESULTS: A total of 300 sperm were mechanically immobilized and inserted into the perivitelline space of mouse oocytes. Ultrathin sections revealed consistent alterations in the acrosomal region including disruption of the plasma membrane, and disruption, vesiculation or even loss of the acrosome. Thus, all of the sperm assessed had undergone some disorganization of the head, in contrast to a majority of control sperm. CONCLUSIONS: Immobilization of sperm for ICSI by compressing and rolling the sperm tails induces a variable disruption and sometimes loss of the acrosome. This could well be a reason for the higher success rates when ICSI is performed using immobilized sperm.

Acrosome↗

Tiny nodule in the testicle: case report of a sertoli cell tumor.

Sex cord-stromal tumors of the testis are rare. We report on a small Sertoli cell tumor in the testicle. According to published reports, a nodular lesion on the testicle has a variety of differential diagnoses. Preoperatively, it is very difficult to differentiate between a tumorous lesion and an inflammatory change. When a tiny nodule in the testicle is encountered, we propose limited, testicular-sparing surgery according to the frozen section diagnosis.

Adult↗

Interleukin-2 blocks the antitumour activity caused by depletion of CD25 cells in a murine renal adenocarcinoma model.

OBJECTIVE: To test the effectiveness of antimouse CD25 monoclonal antibody (mAb) against murine renal adenocarcinoma (RENCA) cells, as immunoregulatory/suppressor cells are known to be involved in tumour development in vivo, but the functions of these cells are not yet clear, and eliminating naive CD25 (interleukin-2 receptor alpha)-positive T cells elicits potent immune responses to syngeneic tumours in vivo. MATERIALS AND METHODS: Aliquots of 1 x 10(4) or 1 x 10(5) RENCA cells were implanted into the subcapsule of the left kidney of syngeneic male Balb/c mice. Mice were injected with 125 micro g of antimouse CD25 mAb to deplete CD25(+) cells before RENCA implantation. Then 10(4) units of recombinant human interleukin-2 (rhIL-2) were subcutaneously injected twice daily for 7 days. Fourteen or 25 days later the tumour size was determined by laparotomy, and cells sorted using two-colour flow cytometry. RESULTS: Depletion of naive CD25(+) cells with anti-CD25 mAb and rhIL-2 administration effectively induced anti-RENCA tumour activity in Balb/c hosts. However, co-administration of anti-CD25 mAb and rhIL-2 abrogated this significant suppression of RENCA tumour growth. RENCA implantation reduced the proportion of CD4(+) cells among splenocytes, whereas anti-CD25 mAb treatment increased it. The proportion of CD25(+)CD8(+) cells among splenocytes and that of CD25(+) cells among CD8(+) cells were markedly reduced by co-administration of anti-CD25 mAb and rhIL-2 with RENCA implantation. Both CD4(+) and CD8(+) cells were stained around the remnant microscopic RENCA tumour after anti-CD25 mAb treatment. CONCLUSION: Either depletion of naive CD25(+) cells or rhIL-2 administration suppressed RENCA tumour growth in murine hosts. However, co-administration of anti-CD25 mAb and rhIL-2 abrogated this significant suppression of RENCA tumour growth.

Animals↗

Dendritic cell immunotherapy for patients with metastatic renal cell carcinoma: University of Tokyo experience.

BACKGROUND: Dendritic cells (DC) are the most potent antigen-presenting cells and induce host antitumor immunity through the T-cell response. A clinical study of immunotherapy using cultured DC loaded with tumor antigen, for patients with metastatic renal cell carcinoma (RCC) was performed. METHODS: Dendritic cells were generated by culturing monocytes from peripheral blood for 7 days in the presence of granulocyte-macrophage colony-stimulating factor and interleukin-4. On day 6 the DC were pulsed with lysate from autologous tumor as the antigen and with keyhole limpet hemocyanin (KLH) as immunomodulator. The patients were given four doses of lysate-pulsed DC by intradermal injection with a 2-week interval between doses. Clinical effect and immune response were, respectively, evaluated by radiological examination and delayed-type hypersensitivity (DTH) test. RESULTS: Three patients were enrolled and the immunotherapy was well tolerated without significant toxicity. The vaccination induced a positive DTH reaction to tumor lysate in two patients and to KLH in all patients. Clinical responses consisted of one case of no change and two cases of progression of disease. However, we did not see a significant reduction of tumor volume in any case. CONCLUSION: Dendritic cell vaccination can safely induce an immunological response against RCC. Further trials are needed to fully evaluate its efficacy.

Adult↗

Technical approaches to correction of oocyte aneuploidy.

BACKGROUND: This study describes the technical approaches used in treatment of age-related oocyte aneuploidy, the efficiency of each step of nuclear transplantation into mouse and human oocytes, and the ability of germinal vesicle (GV) transplantation to restore artificially induced ooplasmic damage. Finally, it examines the possibility of constructing viable female gametes by transferring diploid somatic cell nuclei into enucleated oocytes. METHODS: GV stage mouse oocytes were collected from unstimulated ovaries, and human GV oocytes were donated from consenting patients undergoing ICSI. Stromal (somatic) cells were isolated from uterine biopsies of consenting patients. Mouse cumulus cells were obtained after ovarian stimulation. GV ooplasts prepared by removing nuclei were transplanted either with GV nuclei or with somatic cells by micromanipulation. Grafted oocytes were electrofused and cultured to allow maturation, following which they were inseminated or analysed cytogenetically. Ooplasmic dysfunction was induced by photosensitization with a mitochondria-specific fluorescent dye. RESULTS: GV transplantation had an overall efficiency of 87 and 73% in the mouse and humans respectively. Maturation rates of 95 (mouse) and 64% (human) following reconstitution were comparable with those in control oocytes, as was the incidence of aneuploidy for five chromosome-specific probes after aneuploidy among the reconstituted oocytes. Photosensitization of oocytes significantly reduced the maturation rate to 4.2%, whereas 61.9% of oocytes matured after transfer of photosensitized GV karyoplasts into healthy ooplasts, with 52% of these mature oocytes being successfully fertilized by ICSI. Enucleated immature oocytes receiving mouse cumulus or human endometrial cell nuclei extruded a polar body in >40% of cases. Five out of seven successfully transferred aged human nuclei exhibited the expected number of signals with five chromosome-specific probes suggesting an appropriate chromosome separation in young ooplasm. CONCLUSIONS: Nuclear transplantation itself does not appear to interfere with chromosome segregation and can possibly rescue oocytes with damaged mitochondria. Finally, immature mouse ooplasm supported separation of somatic chromosomes to expected numbers, implying that haploidization may be occurring. The roles of genetic imprinting and fidelity of chromosome segregation are unknown.

Aneuploidy↗

EMP combination chemotherapy and low-dose monotherapy in advanced prostate cancer.

Many chemotherapeutic regimens combined with estramustine phosphate (EMP) have been elaborated for the treatment of hormone-refractory prostate cancer over 30 years. However, older EMP-based combination chemotherapies with vinblastine, vinorelbine, doxorubicin or cyclophosphamide showed relatively low PSA response rate (25-58%) accompanied with high toxicities. On the other hand, newly developed EMP-based combination regimens with etoposide, pacitaxel, carboplatin or docetaxel demonstrated promising PSA response rate (43-77%) with moderate to severe toxicity in the rate of thromboembolic event (5-18%) and of neutropenia (9-41%). Treatment-related death was less in the latter combination group (5/615, 0.8%) than that in the former group (3/234, 1.3%). Of note, in the docetaxel combination with EMP, PSA response rate is as high as 77% with high rate (41%) of neutropenia but no treatment-related death was observed. Docetaxel combination with EMP seems to be the best regimen, though not completely justified by randomized trials, to be selected in the modern era, which will be followed by paclitaxel, carboplatin and EMP combination with PSA response rate of 71%. In addition, an interim report in 83 patients was presented. They were not consecutively enrolled but were treated on low-dose EMP monotherapy for previously untreated advanced prostate cancer in Department of Urology of Tokyo University and our 21 affiliated hospitals. Overall PSA response rate was as high as 93.4% out of 76 assessable patients. However, overall toxicity rate was abnormally high (39.5%) with drug discontinuation rate of 32.1%. The reason of low drug compliance may be attributed to gastrointestinal symptoms. To overcome the low drug compliance, appropriate patients for EMP administration should be selected by using gene analysis on the basis of sophisticated tailor-made medicine.

Aged↗

[Surgical outcomes of nephron-sparing surgery for renal tumors].

PURPOSE: We retrospectively assessed the surgical outcomes of nephron-sparing surgery (NSS) for patients with renal tumors. PATIENTS AND METHODS: From 1985 to March 2001, a total of 99 NSSs were performed on 94 patients with renal tumors. The patients were divided into three groups. Group I comprised of 22 patients who underwent imperative surgeries for renal cell carcinoma (RCC). The tumors were found in 18 patients bilaterally (including 8 patients with von Hippel-Lindau disease), in 3 with solitary kidney, and in 1 with chronic renal failure. The mean +/- standard deviation of patient age and tumor diameter was 46 +/- 23 years and 36 +/- 23 mm, respectively. Twenty-three in situ NSSs were performed on 18 patients in Group I, and the remaining 4 patients were treated with 3 simultaneous operations for bilateral renal tumors with or without 2 ex vivo surgeries. Group II consisted of 49 patients who had small RCCs with the normal contralateral kidney and underwent NSSs (elective indication). The mean age and tumor diameter was 54 +/- 10 years and 28 +/- 11 mm, respectively. Group III consisted of 23 patients with non-RCC tumor (10 angiomyolipomas, 8 cystic tumors, 2 adenomas, 2 metastatic tumors, and 1 degenerative lesion), all of whom were treated with NSS. The mean age and tumor diameter was 47 +/- 14 years and 41 +/- 29 mm, respectively. RESULTS: In Group I, 3 patients died of cancer including 2 patients who had had multiple lung metastases preoperatively. The five-year tumor specific survival rate was 87.3% with a postoperative follow-up of 49 +/- 36 months. In Group II, there were few peri-operative complications or no local recurrence at follow-up of 52 +/- 38 months. A patient developed lung metastasis, which was removed surgically with no evidence of recurrence at 159 months after NSS. Postoperative renal scintigraphy on 35 patients showed well-preserved renal function of the operated kidney. Improvement in surgical techniques resulted in less-invasive surgery in 22 operations during the last 4 years. The patients of Group III were also operated uneventfully, although 1 experienced postoperative bleeding. In 12 patients with solitary kidney (11 in Group I and 1 in Group III) serum creatinine level increased transiently, decreased to 1.3 times of preoperative values within 3 months, and almost recovered at 1-year follow-up. CONCLUSION: Excellent outcomes in cancer control and preservation of renal function support the validity of nephron-sparing surgery to treat renal tumors. The candidate patients may include those with bilateral kidney tumors, tumor occuring in the solitary kidney or small renal cell carcinomas with the normal contralateral kidney. Earlier detection of small lesions and less invasive surgical techniques will facilitate a wider indication of NSS.

Adult↗

Oocyte-induced haploidization.

This paper describes the technical approach to treatment of age-related oocyte aneuploidy. Although one solution can be oocyte/embryo selection, another is represented by the nuclear transplantation procedure. The efficiency of nuclear transplantation into immature oocytes is described as a way of generating embryos, and the possibility that viable female gametes can be constructed by transfer of diploid somatic cell nuclei into enucleated oocytes. Germinal vesicle (GV)-stage mouse oocytes were collected from unstimulated ovaries and somatic nuclei were obtained from mouse cumulus cells obtained after ovarian stimulation. Spare human GV-stage oocytes were donated from consenting patients undergoing intracytoplasmic sperm injection (ICSI) treatment, and human somatic cells were stromal cells coming from uterine biopsies performed on consenting patients undergoing endometrial cell co-culture. GV ooplasts, prepared by enucleation, were transplanted with either GV or somatic nuclei by micromanipulation. Grafted oocytes were electrofused and cultured to allow maturation, following which they were selected at random for insemination or cytogenetic analysis. GV transplantation was accomplished with an overall efficiency of approximately 80 and 70% in the mouse and the human respectively. The maturation rate of 96% (mouse) and 62% (human) following reconstitution was comparable to that of control oocytes, as was the incidence of aneuploidy among the reconstituted oocytes. The reconstituted human oocytes were successfully fertilized by ICSI at a rate of 52%. After the transfer of mouse cumulus or human endometrial cell nuclei into enucleated immature oocytes, a polar body was extruded in >40%. In a limited number of observations where the nucleus of an aged oocyte was transferred into a younger ooplasm, the chromosomes segregated normally at the time of polar body extrusion. The technique of nuclear transplantation itself did not increase the incidence of chromosomal anomalies in the mouse or human, since their oocytes reconstituted with homologous donor GV resumed meiosis to metaphase II and maintained a normal ploidy. In addition, immature mouse ooplasts induced haploidization of transplanted somatic cell nuclei. Although further evaluation of their genetic status is needed, the procedure may offer a realistic way of producing normal oocytes in cases of aged-related infertility. While the procedure is technically similar to cloning, it would generate a unique individual as a result of the contribution of both parental genomes.

Aneuploidy↗