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      Influence of transcervical infusion of seminal plasma on the farrowing rate and litter size in artificially inseminated sows Translated title: [Influência da infusão transcervical de plasma seminal na taxa de partos e tamanho da ninhada em porcos inseminados artificialmente]

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          Abstract

          ABSTRACT Recent studies have focused on the use of seminal plasma to increase sow fertility after classical intracervical artificial insemination (AI). The aim of the present study was to investigate the influence of seminal plasma infusion, prior to the application of conventional AI dose, on the fertility rate in sows. A total of 114 sows were treated with intrauterine infusion of 30ml seminal plasma (SP), while 114 control sows were infused by physiological solution (PS), immediately before the application of conventional AI dose. The experiment was conducted at one commercial pig farm in Serbia, which is comprised of 1,500 sows in the breeding herd. Intrauterine infusion of seminal plasma produced significantly (P<0.05) higher farrowing rate (93.8%) and significantly (P<0.01) more live-born piglets per litter (12.27), compared with the control sows (83.33% farrowing rate and 10.48 piglets). The present results show that intrauterine infusion of seminal plasma can be a useful tool for increasing the fertility rate in artificially inseminated sows, under the conditions of practical intensive pig production.

          Translated abstract

          RESUMO Estudos recentes concentraram no uso de plasma seminal para aumentar a fertilidade de porcos após inseminação artificial intracervical clássica (AI). O objetivo do presente estudo foi investigar a influência da infusão de plasma seminal, antes da aplicação da dose de AI convencional, na taxa de fertilidade de porcas. 114 porcas foram tratadas com infusão intrauterina de 30ml plasma seminal, e 114 porcas de controle receberam infusão de solução fisiológica (PS) imediatamente antes da aplicação da dose convencional de AI. O experimento foi realizado em uma fazenda de porcos comercial na Serbia, que é composta de 1.500 porcas no rebanho de reprodução. A infusão intrauterina de plasma seminal produziu uma taxa de fertilidade (93,8%) significativamente maior (P<0.05), e significativamente mais (P<0.01) leitões nascidos vivos por ninhada (12,27) comparado com as porcas de controle (83,33% taxa de fertilidade e 10,48 leitões). Os resultados mostram que infusão intrauterina com plasma seminal pode ser uma ferramenta útil para aumentar a taxa de fertilidade em porcas inseminadas artificialmente, sob as condições de prática de produção intensiva de porcos.

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          Seminal plasma proteins: what role do they play?

          Semen is a heterogeneous and complex cell suspension in a protein-rich fluid with different functions, some of them well known, others still obscure. This paper reviews, comparatively, our current knowledge on the growing field of proteomics of the SP and its relevance in relation to the in vivo situation, for the sake of reproductive biology, diagnostics and treatment. Ejaculated spermatozoa, primarily bathing in cauda epididymal fluid, are (in vitro) bulky, exposed to most, if not all, secretions from the accessory sexual glands. In vivo, however, not all spermatozoa are necessarily exposed to all secretions from these glands, because sperm cohorts are delivered in differential order and bathe in seminal plasma (SP) with different concentrations of constituents, including peptides and proteins. Proteins are relevant for sperm function and relate to sperm interactions with the various environments along the female genital tract towards the oocyte vestments. Specific peptides and proteins act as signals for the female immune system to modulate sperm rejection or tolerance, perhaps even influencing the relative intrinsic fertility of the male and/or couple by attaining a status of maternal tolerance towards embryo and placental development. Proteins of the seminal plasma have an ample panorama of action, and some appear responsible for establishing fertility. © 2011 John Wiley & Sons A/S.
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            Seminal fluid signaling in the female reproductive tract: lessons from rodents and pigs.

            Seminal fluid contains potent signaling agents that influence female reproductive physiology to improve the chances of conception and pregnancy success. Cytokines and prostaglandins synthesized in the male accessory glands are transferred to the female at insemination, where they bind to receptors on target cells in the cervix and uterus, activating changes in gene expression that lead to modifications in structure and function of the female tissues. The consequences are increased sperm survival and fertilization rates, conditioning of the female immune response to tolerate semen and the conceptus, and molecular and cellular changes in the endometrium that facilitate embryo development and implantation. Male-female tract signaling occurs in rodents, livestock animals, and all other mammals examined thus far, including humans. In mice, the key signaling moieties in seminal plasma are identified as members of the transforming growth factor-beta family. Recent studies indicate a similar signaling function for boar factors in the pig, whereby the sperm and plasma fractions of seminal fluid appear to synergize in activating an inflammatory response and downstream changes in the female tract after insemination. Seminal plasma elicits endometrial changes, with induction of proinflammatory cytokines and cyclooxygenase-2, causing recruitment of macrophages and dendritic cells. Sperm contribute by interacting with seminal plasma factors to modulate neutrophil influx into the luminal cavity. The cascade of changes in local leukocyte populations and cytokine synthesis persists throughout the preimplantation period. Exposure to seminal fluid alters the dynamics of preimplantation embryo development, with an increase in the number of fertilized oocytes attaining the viable blastocyst stage. There is also evidence that seminal factors influence the timing of ovulation, corpus luteum development, and progesterone synthesis. Insight into the molecular basis of seminal fluid signaling in the female reproductive tract may inform new interventions and management practices to ensure maximal fertility and reduce embryo mortality in pigs and, potentially, other livestock species.
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              Seminal plasma regulates endometrial cytokine expression, leukocyte recruitment and embryo development in the pig.

              In pigs, uterine exposure to the constituents of semen is known to increase litter size but the underlying physiological mechanisms remain undefined. Studies in rodents and humans implicate immune modulating moieties in seminal plasma as likely candidates, acting through enhancing the receptivity of the female tract. In this study, the acute and longer term effects of seminal plasma on cytokine expression and leukocyte abundance in the pig endometrium during early pregnancy have been characterised. The reproductive tracts of gonadotrophin-primed pre-pubertal gilts treated with intrauterine infusions of either pooled seminal plasma or phosphate-buffered saline (PBS) were retrieved at 34 h, or on day 5 and day 9 after treatment. Seminal plasma elicited an endometrial inflammatory infiltrate comprised of predominantly macrophages and major histocompatibility complex class II+-activated macrophages and dendritic cells. The abundance of these cells was greatest at the pre-ovulatory (34 h) time-point and their increase relative to PBS-treated tissues was maintained until day 9 after seminal plasma treatment. Seminal plasma induced the expression of the cytokines, granulocyte macrophage colony-stimulating factor, interleukin-6 and monocyte chemoattractant protein-1, and the eicosanoid-synthesising enzyme cyclo-oxygenase-2. Expression was maximal 34 h after treatment but altered expression patterns as a consequence of seminal plasma induction persisted through early pregnancy. These changes were accompanied by altered dynamics in pre-implantation embryo development with an increase in the number of embryos and in their viability after seminal plasma treatment. Together, these findings implicate factors in seminal plasma in programming the trajectory of uterine cytokine expression and leukocyte trafficking during early pregnancy and in regulating pre-implantation embryo development in the pig. Copyright 2004 Society for Reproduction and Fertility
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                Author and article information

                Journal
                abmvz
                Arquivo Brasileiro de Medicina Veterinária e Zootecnia
                Arq. Bras. Med. Vet. Zootec.
                Universidade Federal de Minas Gerais, Escola de Veterinária (Belo Horizonte, MG, Brazil )
                0102-0935
                1678-4162
                September 2020
                : 72
                : 5
                : 1691-1697
                Affiliations
                [1] Novi Sad orgnameUniversity of Novi Sad orgdiv1Faculty of Agriculture Serbia
                [2] Novi Sad orgnameScientific Veterinary Institute Novi Sad Serbia
                [3] Bitola orgnameFaculty of Veterinary Medicine Republic of Macedonia
                Article
                S0102-09352020000501691 S0102-0935(20)07200501691
                10.1590/1678-4162-11227
                7e9c1c7c-422f-4572-b70f-ebcb93d31c6a

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 12 August 2019
                : 18 December 2018
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 49, Pages: 7
                Product

                SciELO Brazil

                Self URI: Full text available only in PDF format (EN)
                Categories
                Veterinary Medicine

                infusion,fertilidade,fertility,sows,infusão AI,AI,plasma seminal,porcas,seminal plasma

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