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  • Cornell University Breakthrough Marks Significant Advance Toward Long-Acting Nonhormonal Male Contraceptive
Stem Cell & Regenerative Medicine

Cornell University Breakthrough Marks Significant Advance Toward Long-Acting Nonhormonal Male Contraceptive

Dwi Wanna Jul 20, 2026 0

In a landmark development for reproductive medicine, researchers at Cornell University have identified a biological pathway that could lead to…

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Stem Cell & Regenerative Medicine

Yale Researchers Uncover Molecular Mechanism of Anti-Sperm Antibodies Providing New Pathways for Infertility Treatment and Contraceptive Innovation

Dwi Wanna Jul 16, 2026 0

A multidisciplinary research team led by Yale University has successfully mapped the precise biological mechanism by which a naturally occurring…

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Stem Cell & Regenerative Medicine

Cornell University Scientists Achieve Breakthrough in Developing Reversible and Nonhormonal Male Contraceptive Through Targeted Meiotic Interruption

Dwi Wanna Jul 13, 2026 0

In a landmark development for reproductive medicine, researchers at Cornell University have announced a significant advancement in the pursuit of…

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Environmental & Analytical Chemistry

Short-acting methods matched long-acting options in a contraceptive initiative that centered users

Abdurrohim Arsyad Jul 10, 2026 0

A groundbreaking contraceptive initiative in Salt Lake City has revealed that when individuals are empowered to choose their preferred birth…

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Stem Cell & Regenerative Medicine

Cornell University Researchers Develop Breakthrough Reversible Nonhormonal Male Contraceptive Method Targeting Meiosis

Dwi Wanna Jul 5, 2026 0

In a significant advancement for reproductive medicine, scientists at Cornell University have identified a viable pathway toward a safe, reversible,…

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Stem Cell & Regenerative Medicine

Yale Researchers Uncover Molecular Mechanism Behind Sperm-Egg Recognition Barrier Offering New Pathways for Fertility and Contraceptive Science

Dwi Wanna Jun 27, 2026 0

In a landmark study published in the Proceedings of the National Academy of Sciences, a research team led by Yale…

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Stem Cell & Regenerative Medicine

Yale Researchers Uncover Molecular Mechanism Preventing Fertilization Offering New Paths for Infertility Treatment and Contraceptive Development

Dwi Wanna Jun 19, 2026 0

A multi-institutional research team, led by scientists at Yale University, has successfully decoded the molecular architecture of a biological mechanism…

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Stem Cell & Regenerative Medicine

Michigan State University Researchers Identify Molecular Switch Boosting Sperm Energy for Fertilization and Contraceptive Potential

Dwi Wanna Jun 14, 2026 0

In a significant advancement for reproductive biology, a team of researchers at Michigan State University has successfully identified a molecular…

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Stem Cell & Regenerative Medicine

Cornell University Researchers Develop Breakthrough Nonhormonal Male Contraceptive Targeting Cellular Meiosis

Dwi Wanna Jun 6, 2026 0

In a landmark achievement for reproductive science, researchers at Cornell University have announced a significant advancement in the pursuit of…

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Stem Cell & Regenerative Medicine

Cornell University Scientists Identify New Pathway for Reversible Nonhormonal Male Contraceptive Targeting Meiosis

Dwi Wanna Jun 5, 2026 0

In a landmark development for reproductive medicine, researchers at Cornell University have announced a significant breakthrough in the quest for…

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Remepy, a startup that pairs drugs with AI-driven apps, clears a Phase IIa test in Parkinson’sKing’s College London Researchers Identify Potential Breakthrough Alzheimer’s Treatment Through Repurposed Spinal Cord Injury Drug KCL-286Living Plastics That Self-Destruct: Scientists Engineer Microbe-Embedded Polymers for Complete and Rapid DecompositionSanofi Discontinues Amlitelimab Development in Atopic Dermatitis, Citing Lack of Meaningful Differentiation
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King’s College London Researchers Identify Potential Breakthrough Alzheimer’s Treatment Through Repurposed Spinal Cord Injury Drug KCL-286
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Sanofi Discontinues Amlitelimab Development in Atopic Dermatitis, Citing Lack of Meaningful Differentiation
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