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March 2, 20260 citations

Addressing multiple pregnancies in in vitro fertilization-embryo transfer: Current status, challenges, and solutions.

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XWXi WuYLYu LiangXYXiaoling Yang

Key Points

  • This review analyzes the challenges of multiple pregnancies in IVF-ET and explores potential solutions.
  • Review of clinical, ethical, and technological research evidence
  • Analysis of factors driving multiple pregnancy rates
  • Evaluation of the efficacy of single versus double embryo transfer
  • Assessment of technological advancements in embryonic evaluation
  • Multiple pregnancy rates in IVF-ET remain high despite global efforts
  • Single embryo transfer (SET) adoption varies, causing regional disparities
  • SET has a lower clinical pregnancy rate compared to double embryo transfer (DET)
  • Technological advancements like AI and molecular biology show promise for improving outcomes

Abstract

With the rising global incidence of infertility and the growing proportion of infants conceived via in vitro fertilization-embryo transfer (IVF-ET), multiple pregnancies have emerged as a prominent and pressing challenge in assisted reproductive technology. This review synthesizes evidence from clinical, ethical, and technological research to comprehensively analyze the current status and underlying causes of and the potential solutions to this issue. Despite global efforts to curb it, the multiple pregnancy rate in IVF-ET remains persistently high, with significant regional disparities primarily driven by variations in the adoption of single embryo transfer (SET), a key strategy for reducing multiple pregnancies. The widespread implementation of SET is hindered by a long-standing clinical dilemma: its lower clinical pregnancy rate (CPR) compared to double embryo transfer (DET), which leads clinicians and patients to prefer DET despite the associated risks. The fundamental resolution to this impasse lies in enhancing the accuracy of embryonic developmental potential assessment. Currently, two technological directions show substantial promise: the integration of time-lapse imaging with artificial intelligence for objective morphological and kinetic evaluation, and the continuous advancement of molecular biology techniques (e.g., non-invasive preimplantation genetic testing and multi-omics-based biomarker screening). While no transformative breakthroughs have been achieved to date, the ongoing refinement of these technologies, coupled with standardized clinical practices and multicenter validation, offers significant potential to optimize SET success rates, narrow the CPR gap with DET, and ultimately address the multiple pregnancy challenge in IVF-ET at its source.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/69a52dabf1e85e5c73bf0b55https://doi.org/10.1002/ijgo.70917
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Multiple Pregnancies Following Assisted Conception (Scientific Impact Paper No. 22, 2026 Third Edition)2026
  2. 2The future of embryo engineering and fertility research in interdisciplinary collaboration2025
  3. 3Possible mechanisms and clinical innovations of sequential embryo transfer in assisted reproduction2026
  4. 4P-745 effectiveness and safety of consecutive single embryo transfer compared to double embryo transfer: results from UK HFEA registry2024
  5. 5Innovations in assisted reproductive technologies: evaluating efficacy, safety, and long-term outcomes in female infertility2025