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Andrologia ◽  
2021 ◽  
Author(s):  
Umberto Basile ◽  
Edoardo Vergani ◽  
Cecilia Napodano ◽  
Carmine Bruno ◽  
Mariapaola Marino ◽  
...  


Author(s):  
Somadina I. Okwelogu ◽  
Joseph I. Ikechebelu ◽  
Nneka R. Agbakoba ◽  
Kingsley C. Anukam

BackgroundBacterial infections are usually suspected in infertile couples seeking IVF with no clear understanding of the microbial compositions present in the seminal fluids and vaginal niche of the patients. We used next-generation sequencing technology to correlate microbiota compositions with IVF clinical outcomes.MethodsThirty-six couples were recruited to provide seminal fluids and vaginal swabs. Bacterial DNA was extracted, and V4 region of the 16S rRNA was amplified and sequenced in a pair-end configuration on the Illumina MiSeq platform rendering 2 × 150 bp sequences. Microbial taxonomy to species level was generated using the Greengenes database. Linear discriminant analysis (LDA) effect size (LEfSe) was used to identify biologically and statistically significant differences in relative abundance.ResultsSeminal fluid microbiota compositions had lower bacterial concentrations compared with the vagina, but species diversity was significantly higher in seminal fluid samples. Azoospermic subjects had more relative abundance of Mycoplasma and Ureaplasma. In Normospermic semen, Lactobacillus (43.86%) was the most abundant, followed by Gardnerella (25.45%), while the corresponding vaginal samples, Lactobacillus (61.74%) was the most abundant, followed by Prevotella (6.07%) and Gardnerella (5.86%).ConclusionsSemen samples with positive IVF were significantly colonized by Lactobacillus jensenii (P=0.002), Faecalibacterium (P=0.042) and significantly less colonized by Proteobacteria, Prevotella, Bacteroides, and lower Firmicutes/Bacteroidetes ratio compared with semen samples with negative IVF. Vaginal samples with positive IVF clinical outcome were significantly colonized by Lactobacillus gasseri, less colonized by Bacteroides and Lactobacillus iners. This study has opened a window of possibility for Lactobacillus replenishments in men and women before IVF treatment.



Andrologia ◽  
2021 ◽  
Author(s):  
Lida Gholizadeh ◽  
Azam Agha‐Rahimi ◽  
Saeed Ghasemi‐Esmailabad ◽  
Behnam Maleki ◽  
Abdul Munaf Sultan Ahamed ◽  
...  


2021 ◽  
pp. 002580242199291
Author(s):  
Şükriye Karadayı ◽  
Beytullah Karadayı ◽  
Dilara Öner ◽  
Gürsel Çetin

In some cases of sexual assault that are not reported to judicial authorities within a certain time, it is important to detect and identify seminal stains on laundered fabrics. In this study, we aimed to reveal the effect of the time from staining to laundering on the detectability and identification of seminal stains on laundered clothes. A total of 180 pieces of fabric (four different colours and five different types) were stained with seminal fluids, and three different lag times (12 hours, 1 week and 1 month) from staining to laundering were used. Three different laundering protocols were applied to these fabrics after staining. The built-in camera of the Mobile Multispectral UV-VIS-IR Imaging System® was used to take photos (1260 in total) of the stains with seven different wavelength and filter options, and the obtained images were evaluated. The Seratec® PSA Semiquant test was used to analyse the presence of prostate-specific antigen (PSA) in the seminal stains laundered after different lag times. We observed that in examining with the forensic light source (FLS) system, the time from staining to laundering affected the detectability of seminal stains on pieces of cloth. The best fluorescence was obtained in the examination of semen-stained fabric with FLS, particularly when the fabric was not laundered for one month after staining. On the other hand, the time from staining to laundering had a more limited effect on PSA test positivity than on the results of the examination with FLS.



2020 ◽  
Vol 9 (1) ◽  
pp. 39
Author(s):  
Giuseppina Campisciano ◽  
Valerio Iebba ◽  
Gabriella Zito ◽  
Stefania Luppi ◽  
Monica Martinelli ◽  
...  

Infertile couples undergoing the use of assisted reproductive technology are a good study model to evaluate the microbiological signatures affecting reproductive health. We tested vaginal lavages, follicular fluids, embryo culture mediums, and seminal fluids from 47 couples for their microbiome composition and HPV infection. Twenty-five infertile couples were diagnosed with unexplained infertility, whereas 22 were diagnosed with explained infertility. Lactobacilli were dominant in the vaginal lavages of both patient groups, and the most abundant species was L. iners (CST III), which is linked to a decreased fertility rate. Besides this, L. gasseri—which is known to be associated with oocyte DNA fragmentation and decreased sperm mobility—was identified in the seminal fluids, follicular fluids, and embryo culture media of the unexplained infertility group. Prevotella was increased in the seminal fluids of the explained infertility group, along with HPV-positive seminal fluids: an infection commonly associated with infertility, especially male infertility. Prevotella has been described to negatively affect sperm motility. Taken together, these results suggest that the profiling of the reproductive tract microbiome can add new perspectives to human reproduction.



2020 ◽  
Author(s):  
Somadina I Okwelogu ◽  
Joseph I Ikechebelu ◽  
Nneka R Agbakoba ◽  
Kingsley C Anukam

AbstractBacterial infections are usually suspected in infertile couples seeking IVF with no clear understanding of the microbial compositions present in the seminal fluids and vaginal swabs of the patients. We used next-generation sequencing technology to correlate microbiota compositions with IVF clinical outcomes. Thirty-six couples were recruited to provide seminal fluids and vaginal swabs. Seminal fluid microbiota compositions had lower bacterial concentrations compared with the vagina, but species diversity was significantly higher in seminal fluid samples. Azoospermic subjects had more relative abundance of Mycoplasma and Ureaplasma. In Normospermic semen Lactobacillus (43.86%) was the most abundant, followed by Gardnerella (25.45%), while the corresponding vaginal samples, Lactobacillus (61.74%) was the most abundant, followed by Prevotella (6.07%), and Gardnerella (5.86%). Semen samples with positive IVF were significantly colonized by Lactobacillus jensenii (P=0.002), Faecalibacterium (P=0.042) and significantly less colonized by Proteobacteria, Prevotella, Bacteroides and lower Firmicutes/Bacteroidetes ratio compared with semen samples with negative IVF. Vaginal samples with positive IVF clinical outcome were significantly colonized by Lactobacillus gasseri, less colonized by Bacteroides, and Lactobacillus iners. This study has opened a window of possibility for Lactobacillus replenishments in men and women prior to IVF treatment.



2020 ◽  
Vol 375 (1813) ◽  
pp. 20200073
Author(s):  
Cristina Tuni ◽  
Jutta Schneider ◽  
Gabriele Uhl ◽  
Marie E. Herberstein

Aggressive and cannibalistic female spiders can impose strong selection on male mating and fertilization strategies. Furthermore, the distinctive reproductive morphology of spiders is predicted to influence the outcome of sperm competition. Polyandry is common in spiders, leading to defensive male strategies that include guarding, plugging and self-sacrifice. Paternity patterns are highly variable and unlikely to be determined solely by mating order, but rather by relative copulation duration, deployment of plugs and cryptic female choice. The ability to strategically allocate sperm is limited, either by the need to refill pedipalps periodically or owing to permanent sperm depletion after mating. Further insights now rely on unravelling several proximate mechanisms such as the process of sperm activation and the role of seminal fluids. This article is part of the theme issue ‘Fifty years of sperm competition’.



2020 ◽  
pp. 60-85
Author(s):  
Mika M. J. Tan ◽  
Christopher Tudge ◽  
Miguel A. Penna-Díaz ◽  
Martin Thiel

The morphology and ultrastructure of spermatozoa are very diverse among the classes of the Crustacea, but how this diversity relates to sperm production and sperm economy has been little studied. A brief description of major forms and shapes of crustacean spermatozoa is provided and an overview of sperm ultrastructure is updated. Spermatogenesis is a costly process for males, as it requires considerable energy and time to achieve the required quality and quantity to guarantee success in fertilizing the eggs of females. Sperm are embedded in seminal fluids to preserve stored sperm and/or counteract the risk of sperm competition, which contributes significantly to the energy budget and sperm economy. In general, sperm are transferred in spermatophores of very diverse sizes and shapes within the different crustacean groups. Strategies related to sperm economy depend on the physical size of the partner, mating history, and perception of future mating opportunities. The mechanics involved in spermatogenesis and production of seminal fluids vary among the different crustacean classes and between different taxa. Sperm economy has direct links to sperm limitation in several male-centered fisheries. To better understand the evolutionary processes and to design suitable applied strategies (e.g., fisheries management or aquaculture), better knowledge is required about sperm histochemistry and functional morphology; furthermore, a wider taxonomic coverage is recommended by including commercial and non-commercial crustaceans beyond the decapods.



2019 ◽  
Vol 3 (4) ◽  
pp. 1410-1415
Author(s):  
Marefa Jahan ◽  
Nidhish Francis ◽  
Bing Wang

Abstract Lactoferrin (LF) is a sialylated iron-binding glycoprotein, occurring in several biological secretions like milk, saliva, and seminal fluids and is a major component of a mammalian innate immune system. It plays multiple protective roles against large group of microorganisms and performs anti-inflammatory and anti-cancer activities. The concentration of serum LF in gilt (primiparous sow) and their piglets remains unknown. We determined serum LF concentration in gilts during gestation and lactation to that of 19-d-old piglets, including sow-fed and formula-fed piglets using enzyme-linked immunosorbent assay (ELISA). We found that the concentration of serum LF in gilts varied during gestation (0.77 ± 0.10 µg/mL) and lactation (0.62 ± 0.11 µg/mL). The mean concentration of serum LF in gilts (0.72 ± 0.06 µg/mL) was significantly higher than that of piglets (0.42 ± 0.07 µg/mL, P = 0.004). Additionally, a marginal significant difference (P =0.06) was observed for serum LF concentration in sow-fed piglets (0.42 ± 0.03 µg/mL) at 19 d old compared to that of formula-fed piglets (0.33 ± 0.04 µg/mL) at 37 d old. This study provides noble information regarding the serum LF concentration in the healthy gilts and piglets and thereby the data can be used as a standard reference point for future studies on the role of LF in pig reproduction.



eLife ◽  
2017 ◽  
Vol 6 ◽  
Author(s):  
Colin S Brent ◽  
John A Byers ◽  
Anat Levi-Zada

Passive mechanisms of mate guarding are used by males to promote sperm precedence with little cost, but these tactics can be disadvantageous for their mates and other males. Mated females of the plant bug Lygus hesperus are rendered temporarily unattractive by seminal fluids containing myristyl acetate and geranylgeranyl acetate. These antiaphrodisiac pheromones are gradually released from the female’s gonopore, declining until they no longer suppress male courtship. Because starting quantities of these compounds can vary widely, the repellant signal becomes less reliable over time. Evidence was found of a complimentary mechanism that more accurately conveys female mating status. Once inside the female, geranylgeranyl acetate is progressively converted to geranylgeraniol then externalized. Geranylgeraniol counteracts the antiaphrodisiac effect despite having no inherent attractant properties of its own. This is the first evidence for such an anti-antiaphrodisiac pheromone, adding a new element to the communication mechanisms regulating reproductive behaviors.



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