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Dive into the research topics where C.A.P. Lopes is active.

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Featured researches published by C.A.P. Lopes.


Reproduction, Fertility and Development | 2008

Chilling ovarian fragments during transportation improves viability and growth of goat preantral follicles cultured in vitro

R.N. Chaves; F.S. Martins; M.V.A. Saraiva; J.J.H. Celestino; C.A.P. Lopes; J. C. Correia; I.B. Lima Verde; Maria Helena Tavares de Matos; Sônia Nair Báo; K.P.O. Name; C.C. Campello; J.R.V. Silva; J.R. Figueiredo

The aim of the present study was to evaluate the effects of storage of goat ovarian fragments at different temperatures and for different incubation times on the viability and growth of cultured preantral follicles in vitro. Caprine ovaries were collected and divided into 19 fragments, with one fragment being fixed immediately (fresh control). The remaining fragments were placed in minimal essential medium (MEM) and maintained at 4, 20 or 35 degrees C for 2 or 4 h. After each incubation period, some of the fragments were fixed (non-cultured), whereas others were cultured in vitro for 1 or 7 days. Fragments were processed to enable routine histological and transmission electron microscopic examination. After 7 days of culture, only ovarian fragments stored at 4 degrees C for 4 h maintained a percentage of morphologically normal follicles similar to that in the fresh control. For all other treatments groups, there was a significant increase in follicular activation observed. In addition, there was an increase in oocyte and follicular diameter after culture of ovarian cortex that had been chilled previously at 4 degrees C for 2 or 4 h. In conclusion, the present study demonstrated that chilling ovarian fragments at 4 degrees C during transportation is best for maintaining follicle viability and to increase follicular growth during in vitro culture.


Theriogenology | 2011

In vitro production of a caprine embryo from a preantral follicle cultured in media supplemented with growth hormone

D.M. Magalhães; A.B.G. Duarte; Valdevane Rocha Araújo; I.R. Brito; T.G. Soares; Isadora Machado Teixeira Lima; C.A.P. Lopes; C.C. Campello; A.P.R. Rodrigues; J.R. Figueiredo

The objective was to evaluate the effects of growth hormone (GH) on the survival, growth, maturation, and fertilization of oocytes derived from caprine preantral ovarian follicles cultured in vitro. Preantral follicles were isolated from the cortex of caprine ovaries and individually cultured for 18 d in the absence (control) or presence of bovine GH at concentrations of 10 or 50 ng/mL (GH10 and GH50, respectively). Follicle development was evaluated on the basis of survival, antral cavity formation, diameter increase, and the presence of healthy cumulus-oocyte complexes and mature oocytes. After culture, oocytes were subjected to in vitro maturation (IVM) and in vitro fertilization (IVF). The rate of antrum formation after Day 6 of culture was higher in both GH10 and GH50 than in the control (81.0, 92.7, and 47.6%, respectively, P < 0.05). Percentages of grown oocytes that were acceptable for IVM were also higher (P < 0.05) in GH-treated groups than in the control (54.8, 48.8, and 11.9% for GH10, GH50, and Control). A higher percentage of oocytes in the GH50 treatment underwent meiotic resumption (50.0%), produced mature oocytes, and enabled production of an embryo after IVF than in the control group (0.0%; P < 0.05). In conclusion, GH promoted in vitro growth and maturation of goat preantral follicle oocytes and enabled production of an embryo. Furthermore, this study was apparently the first to produce a caprine embryo by in vitro fertilization of oocytes derived from preantral follicles grown in vitro.


Animal Reproduction Science | 2009

Short-term preservation of canine preantral follicles: effects of temperature, medium and time.

C.A.P. Lopes; Regiane R. Santos; J.J.H. Celestino; Mônica Aline Parente Melo; R.N. Chaves; C.C. Campello; José Roberto Viana Silva; Sônia Nair Báo; Katarina Jewgenow; J.R. Figueiredo

The use of the large pool of preantral follicles is a promising alternative to provide high numbers of fertilizable oocytes to reproductive biotechnology. This issue is particularly important to canids, since current rates of success of in vitro techniques using oocytes are very limited, and many species within this family are threatened by extinction. The aim of this study was to evaluate effects of temperature, medium and time on morphology and viability of canine preantral follicles during short-term preservation. Canine ovaries were cut into fragments which were incubated in 0.9% NaCl solution or in minimum essential medium (MEM) at 4, 20 or 38 degrees C for 2, 6, 12 or 24 h. Afterwards, preantral follicles were analyzed by histology, transmission electron microscopy and viability testing using trypan blue, calcein-AM and ethidium homodimer-1. Percentages of morphological normal and viable follicles were maintained similar to control (time 0 h) after incubation in 0.9% NaCl at 4 or 20 degrees C for up to 6h and at 38 degrees C for 2 h. Using MEM, such preservation was possible for 12h at 4 or 20 degrees C, and for 6h at 38 degrees C. These results indicate that preservation of canine preantral follicles might be better accomplished through hypothermic (4 or 20 degrees C) storage in MEM, which ensures maintenance of morphology and viability for up to 12h.


Theriogenology | 2011

Influence of vitrification techniques and solutions on the morphology and survival of preantral follicles after in vitro culture of caprine ovarian tissue

Adeline de Andrade Carvalho; Luciana Rocha Faustino; C.M.G. Silva; Simone Vieira Castro; Hiédely Kenia Machado Luz; R. Rossetto; C.A.P. Lopes; C.C. Campello; J.R. Figueiredo; A.P.R. Rodrigues; A.P.R. Costa

The objective was to compare the efficiency of various vitrification techniques and solutions for preserving morphology and viability of preantral caprine follicles enclosed in ovarian tissue. Fragments of ovarian cortex were cryopreserved by conventional vitrification (CV) in French straws, vitrification in macrotubes (MTV), or solid-surface vitrification (SSV). Six solutions containing 6 M ethylene glycol, with or without sucrose (SUC; 0.25 or 0.50 M) and/or 10% fetal calf serum (FCS) were tested (Experiment I). After 1 wk, samples were warmed and preantral follicles were examined histologically. To evaluate follicular viability (Experiment II), ovarian fragments were vitrified with the three techniques listed above, in a solution containing 0.25 M SUC and 10% FCS. After warming, follicles were assessed by the trypan blue dye exclusion test. In Experiment III, preantral follicles enclosed in ovarian tissue were vitrified using the protocol which yielded the highest percentage of viable preantral follicles (SSV with 0.25 M SUC and 10% SFB). After warming, the preantral follicles enclosed in ovarian tissue were cultured in vitro and then, were analyzed by histology and fluorescence microscopy (calcein-AM and ethidium homodimer-1). Every vitrification protocol significantly reduced the percentages of morphologically normal follicles relative to the control (88.0%); however, the addition of 0.25 M SUC and 10% FCS to the vitrification solution improved preservation of follicular morphology (67.4, 67.4, and 72.0% for CV, MTV, and SSV, respectively). Although follicular viability after SSV (80.7%) did not differ from that in fresh (non-vitrified) ovarian tissues (88.0%), after in vitro culture, percentages of viable follicles were significantly reduced (70.0%). Percentages of morphologically normal follicles after in vitro culture of vitrified ovarian tissue were similar (76.0%) to those in ovarian cortex fragments cultured without previous vitrification (83.2%). In conclusion, SSV using a solution containing 0.25 M SUC and 10% FCS, was the most efficient method for vitrifying caprine ovarian tissue.


Biology of Reproduction | 2012

The Effects of Insulin and Follicle-Simulating Hormone (FSH) During In Vitro Development of Ovarian Goat Preantral Follicles and the Relative mRNA Expression for Insulin and FSH Receptors and Cytochrome P450 Aromatase in Cultured Follicles

R.N. Chaves; A.B.G. Duarte; Giovanna Quintino Rodrigues; J.J.H. Celestino; Gerlane M. Silva; C.A.P. Lopes; A.P. Almeida; M.A.M. Donato; Christina Alves Peixoto; Arlindo A. Moura; Carlos Henrique Lobo; Y. Locatelli; Pascalle Mermillod; C.C. Campello; J.R. Figueiredo

ABSTRACT The actions of different concentrations of insulin alone or in combination with follicle-stimulating hormone (FSH) were evaluated by in vitro follicular development and mRNA expression of cytochrome P450 aromatase (CYP19A1) and as receptors for insulin (INSR) and FSH (FSHR) from isolated, cultured goat preantral follicles. Goat preantral follicles were microdissected and cultured for 18 days in the absence or presence of insulin (5 and 10 ng/ml or 10 μg/ml) alone or in combination with FSH. After 18 days, the addition of the maximum concentration of insulin to the culture medium reduced follicular survival and antrum formation rates significantly compared to the other treatments. However, when FSH was added to the culture medium, no differences between these two parameters were observed. Preantral and antral follicles from the fresh control as well as from all cultured follicles still presented a normal ultrastructural pattern. In medium supplemented with FSH, only insulin at 10 ng/ml presented oocytes with higher rates of meiosis resumption compared to control, as well as oocytes in metaphase II. Treatment with insulin (10 ng/ml) plus FSH resulted in significantly increased levels of INSR and CYP19A1 mRNA compared to that with other treatments. In conclusion, 10 ng/ml insulin associated with FSH was more efficient in promoting resumption of oocyte meiosis, maintaining survival, stimulating follicular development, and increasing expression of the INSR and CYP19A1 genes in goat preantral follicles. Low concentration of insulin with follicle-stimulating hormone is essential for promoting oocyte meiosis resumption in goat preantral follicles.


Zygote | 2013

Importance of vascular endothelial growth factor (VEGF) in ovarian physiology of mammals.

Valdevane Rocha Araújo; A.B.G. Duarte; J.B. Bruno; C.A.P. Lopes; J.R. Figueiredo

Ovarian folliculogenesis in mammals is a complex process. Several compounds have been tested during in vitro culture of follicular cells for a better understanding of the mechanisms and factors related to ovarian folliculogenesis in mammals. From these compounds, vascular endothelial growth factor (VEGF) can be highlighted, as it is strongly associated with angiogenesis and, in recent years, its presence in ovarian cells has been investigated extensively. Previous studies have shown that the presence of VEGF protein, as well as mRNA expression of its receptor 2 (VEGFR-2) increases during follicular development. Therefore, it is likely that the interaction between VEGF and VEGFR-2 is crucial to promote follicular development. However, few studies on the influence of this factor on follicular development have been reported. This review addresses aspects related to the structural characterization and mechanism of action of VEGF and its receptors, and their biological importance in the ovary of mammals.


Brazilian Journal of Medical and Biological Research | 2010

Interaction between growth differentiation factor 9, insulin-like growth factor I and growth hormone on the in vitro development and survival of goat preantral follicles

F.S. Martins; J.J.H. Celestino; M.V.A. Saraiva; R.N. Chaves; R. Rossetto; C.M.G. Silva; I.B. Lima-Verde; C.A.P. Lopes; C.C. Campello; J.R. Figueiredo

The objective of this study was to determine the effects of GDF-9, IGF-I, and GH alone or combined on preantral follicle survival, activation and development after 1 and 7 days of in vitro culture. Either fresh (non-cultured) or cultured ovarian tissue was processed for histological and fluorescence analysis. For all media tested, the percent of normal follicles was greater when compared to minimum essential medium supplemented (MEM+) alone, except when ovarian tissue was cultured with GDF-9/IGF-I or GDF-9/GH (P < 0.05). Fluorescence analysis showed that the percent of viable follicles after 7 days of culture was similar for non-cultured tissue and for all treatments tested. The percent of primordial follicles was reduced (P < 0.05) and there was a significant and concomitant increase in the percent of intermediate and primary follicles in all treatments tested after 7 days of culture when compared to non-cultured tissue. After 7 days of culture, the highest percent of intermediate follicles was observed with IGF-I/GH (61.3%), and the highest percent of primary follicles was achieved with IGF-I (57.7%). After 7 days of culture in MEM+ containing GDF-9, IGF-I and GH alone or in all associations, a significant increase in follicular diameter was observed when compared to MEM+ alone and non-cultured tissue. In conclusion, GDF-9, IGF-I and GH alone or in combination maintain preantral follicle survival and promote primordial follicle activation. Nevertheless, the data showed that IGF-I/GH and IGF-I alone are efficient in promoting the transition from primordial to intermediate follicles and from intermediate to primary follicles, respectively.


Domestic Animal Endocrinology | 2013

Interaction between melatonin and follicle-stimulating hormone promotes in vitro development of caprine preantral follicles

Rebeca Magalhães Pedrosa Rocha; Laritza Ferreira de Lima; A. M. C. V. Alves; J.J.H. Celestino; Maria Helena Tavares de Matos; I.B. Lima-Verde; Marcelo Picinin Bernuci; C.A.P. Lopes; S.N. Báo; C.C. Campello; A.P.R. Rodrigues; J.R. Figueiredo

The aim of this study was to investigate the effects of melatonin and follicle-stimulating hormone (FSH) on the in vitro culture of goat preantral follicles. Ovarian fragments were cultured for 7 d in α-minimum essential medium (α-MEM(+)) containing melatonin (100, 250, 500, or 1,000 pM), FSH (50 ng/mL), or a combination of the 2 hormones and further analyzed by histology and transmission electron and fluorescent microscopy. The results showed that after 7 d of culture, tissues cultured in α-MEM(+) alone or supplemented with FSH alone, melatonin (500 and 1,000 pM), or the combination of FSH and melatonin (1,000 pM) maintained percentages of normal preantral follicles similar to the fresh control. In contrast to the noncultured tissues, the percentage of developing follicles was increased under all culture conditions after 7 d (P < 0.05). The addition of 1,000 pM melatonin associated with FSH to the culture medium increased follicular and oocyte diameters compared with α-MEM(+) alone after 7 d of culture (P < 0.05). Ultrastructural and fluorescent analyses confirmed the integrity of follicles cultured with 1,000 pM of melatonin plus FSH for 7 d. In conclusion, this study demonstrated that the interaction between melatonin and FSH maintains ultrastructural integrity and stimulates further growth of cultured caprine preantral follicles.


Cells Tissues Organs | 2010

Nerve growth factor promotes the survival of goat preantral follicles cultured in vitro.

R.N. Chaves; A. M. C. V. Alves; A.B.G. Duarte; Valdevane Rocha Araújo; J.J.H. Celestino; Maria Helena Tavares de Matos; C.A.P. Lopes; C.C. Campello; K.P.O. Name; S.N. Báo; J.R. Figueiredo

The aim of this study was to investigate the effects of nerve growth factor (NGF) on the in vitro culture of goat preantral follicles. Ovarian cortex fragments were cultured in α-MEM+ supplemented with 0, 1, 10, 50, 100 or 200 ng/ml NGF for 1 or 7 days. Small fragments of noncultured ovarian tissue as well as those cultured for 1 or 7 days were processed for histology and transmission electron microscopy. The results showed that after 1 or 7 days of culture at all concentrations of NGF, except at 1 ng/ml after 1 day of culture, there was a significant reduction in the percentage of normal follicles compared to noncultured tissues. At higher NGF concentrations (100 and 200 ng/ml) after 7 days of culture, there was a significant reduction in the percentage of normal follicles compared to tissues cultured in α-MEM+ alone or at the other concentrations of NGF. It is important to note that ultrastructural and fluorescent analyses confirmed only the integrity of follicles cultured with 1 ng/ml of NGF after 7 days. In contrast to noncultured control tissues, the percentage of developing follicles was significantly increased at all concentrations of NGF after 1 or 7 days of culture. We observed that follicular diameter was greater at 1 and 10 ng/ml NGF after culture for 7 days than at the other concentrations but was similar to follicles cultured in α-MEM+ alone. In conclusion, NGF improved the survival of goat preantral follicles cultured in vitro in a dose-dependent manner.


Animal Reproduction Science | 2013

Novel wide-capacity method for vitrification of caprine ovaries: Ovarian Tissue Cryosystem (OTC).

Adeline de Andrade Carvalho; Luciana Rocha Faustino; C.M.G. Silva; Simone Vieira Castro; C.A.P. Lopes; Regiane R. Santos; S.N. Báo; J.R. Figueiredo; A.P.R. Rodrigues

In this study we aimed testing the efficiency of a newly developed device for vitrification of ovaries without contact with liquid nitrogen, Ovarian Tissue Cryosystem (OTC). From each ovarian pair, fragments were recovered and immediately fixed for analysis (fresh control) or submitted to vitrification (fragments, hemi-ovary or whole ovary), either or not followed by in vitro culture for two days. Vitrification was performed using the OTC system. The OTC is a cylindrical structure made by stainless steel and composed by three pieces (basis, insert and cover), which can be hermetically closed avoiding contact of the tissue with liquid nitrogen during vitrification. Before and after culture, the ovarian tissue was histologically evaluated. Independently from the size of the ovarian tissue, it was observed a decrease (P<0.05) in the rates of normal preantral follicles when fragments (58.1%), hemi-ovary (54.4%) and whole ovary (54.3%) were vitrified, in comparison with fresh control (68.1%). These data were confirmed by ultrastructural analysis, which showed a great extension of degeneration in follicles vitrified in the whole ovary. Follicular survival after vitrification followed by culture was higher (P<0.05) when ovarian fragments were vitrified (36.1%) than in those enclosed in vitrified hemi-ovary (22.3%) or whole ovary (18.4%). In conclusion, the Ovarian Tissue Cryosystem (OTC) opens a new possibility for successful vitrification of caprine ovarian fragments.

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C.C. Campello

State University of Ceará

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J.R. Figueiredo

State University of Ceará

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R.N. Chaves

State University of Ceará

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J.J.H. Celestino

State University of Ceará

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S.N. Báo

University of Brasília

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A.B.G. Duarte

State University of Ceará

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A.P.R. Rodrigues

State University of Ceará

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A. M. C. V. Alves

State University of Ceará

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