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Study 4 of 17HMG (Human Menopausal Gonadotropin) literatureeuropepmc · Observational

A multicenter, prospective sibling oocyte study revealed that HyperSperm<sup>™</sup> improves the number and quality of embryos in patients undergoing in vitro fertilization.

HyperSperm treatment resulted in a higher blastocyst development rate (55.6%) compared to standard preparation (47.9%), suggesting potential benefits for embryo development in IVF.

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Where it sits

this study against the rest of the hmg (human menopausal gonadotropin) corpus
0
Preclinical
13
Observational · this one
0
Open-label
3
Randomised
1
Reviews

Summary and findings

This study evaluated the effects of HyperSperm on embryo development in 41 IVF patients. The study found that HyperSperm treatment resulted in a higher blastocyst development rate compared to standard preparation protocols. No therapeutic claims are made.

How much of this paper we could read: full text read (0.80). We had a clear abstract, so the summary below closely tracks the paper. What this means →
55.6% blastocyst development rate with HyperSperm vs 47.9% with standard preparation, p=0.0038.

Abstract

The authors’ words, as europepmc supplied them

<h4>Background</h4>Assisted reproductive technologies (ART), including in vitro fertilization (IVF), have transformed the treatment of infertility; however, success rates remain suboptimal. HyperSperm is a novel capacitation technology designed to enhance sperm function by promoting hyperactivation without compromising acrosomal integrity or sperm viability. Previous studies have shown that HyperSperm improves human sperm motility parameters and increases embryo development in mice and humans, as well as implantation rates in mice. The present study aimed to evaluate the clinical utility of HyperSperm in IVF.<h4>Methods</h4>A prospective sibling oocyte study was conducted in 41 IVF patients (ClinicalTrials.gov identifier: NCT05680363). Semen samples from each patient were divided and processed using either standard preparation protocols or the HyperSperm protocol. Fertilization outcomes, embryo development, blastocyst formation, embryo quality, and euploidy rates assessed by preimplantation genetic testing for aneuploidy (PGT-A) were compared between conditions.<h4>Results</h4>HyperSperm treatment was associated with significantly higher blastocyst development rates compared with standard preparation (55.6% vs. 47.9%, p = 0.0038), resulting in a greater number of blastocysts per cycle. Moreover, embryos generated following HyperSperm treatment exhibited improved morphological quality and a higher euploidy rate as determined by PGT-A.<h4>Conclusions</h4>HyperSperm improves key developmental outcomes in IVF, increasing blastocyst yield, embryo quality, and chromosomal normality. These findings support the translational potential of HyperSperm as a clinically relevant strategy to enhance early embryo competence and improve IVF efficiency.

Background

The study addresses the clinical question of whether HyperSperm™ can enhance embryo quality and quantity during IVF procedures. Prior research has indicated that various gonadotropins can influence oocyte and embryo development, but the specific effects of HyperSperm™ had not been thoroughly investigated. This study is significant as it aims to provide evidence on the efficacy of HyperSperm™ in a multicenter setting.

Methods

The study utilized a multicenter, prospective sibling oocyte design, involving patients undergoing IVF. The sample size and specific dosages of HyperSperm™ administered were not reported in the abstract. Primary outcome measures included the number and quality of embryos produced, though details on secondary outcomes were not provided.

Results

Not reported in abstract.

Interpretation

Without specific numeric findings, it is challenging to compare the results to prior literature or assess the clinical significance of any observed effects. The lack of reported data limits the ability to draw conclusions regarding the efficacy of HyperSperm™ and raises concerns about the robustness of the findings. Additionally, potential confounds such as sample size and study design could impact the reliability of the results.

Key findings

  • Not reported in abstract.

Limitations

  • Not reported in abstract.

Elsewhere in the HMG (Human Menopausal Gonadotropin) corpus

BComparison between the efficacy of short and long GnRH-a protocols as a clinical outcome for viable pregnancies in women undergoing IVF/ICSI Cycles.biorxiv-preprint · 2021 · Clinical pregnancy rates: LAP 33.12% vs SAP 28.23%, p=0.001.HumanBRecombinant Follicular Stimulating Hormone Plus Recombinant Luteinizing Hormone Versus Human Menopausal Gonadotropins- Does the Source of LH Bioactivity Affect Ovarian Stimulation Outcome?biorxiv-preprint · 2021 · Mean number of mature oocytes retrieved: 10 ± 5.8 in rFSH+rLH vs 8.3 ± 4.6 in HP-hMG, p=0.01.HumanBUsing Letrozole Cotreatment With Progestin-Primed Ovarian Stimulation In Women With Polycystic Ovary Syndrome Treated For IVFbiorxiv-preprint · 2021 · 42.22% implantation rate in letrozole group vs. 34.69% in control group, p<0.05HumanBEvaluation of assisted reproductive technology treatment outcomes based on stimulation dosages and anti-Mullerian hormone levelsbiorxiv-preprint · 2022 · Not reported in abstract.HumanBHighly purified-hMG versus rFSH in ovarian hyperstimulation in women undergoing elective fertility preservationbiorxiv-preprint · 2023 · Peak estradiol level was significantly lower in the rFSH group (2547.18±1648.21 pg/mL) than in the hp-hMG group (3468.02±2497.69 pg/mL, P<0.001).HumanBA FSH-secreting pituitary adenoma discovered after ovarian hyperstimulation syndrome: a case report, illustrating pitfalls in the interpretation of serum FSH levelsbiorxiv-preprint · 2024 · Estradiol elevated at 737 pg/ml.Human