![]() PSA is commonly used as a screening tool for prostate enlargement. Men greatly benefit from DIM due to its ability to free up bound testosterone and optimize its performance in the body, which can help to support healthy hormone function and lay the groundwork for sexual, physical, and mental health benefits.ĭIM supplements for men show a promising ability to promote normal sized prostates and healthy cell replication within the prostate.* Research indicates that unmetabolized estrogen in men can accumulate in prostate tissue over time, which could be a precursor to increased production of prostate-specific antigen protein (PSA). ![]() In fact, testosterone is the main driver of sperm production in adult men, playing a key role in paternal behavior and mating efforts. It is also a key player in the control of sex drive and mood. As an anabolic hormone, testosterone promotes the protein synthesis that supports muscle growth and bone strength. Testosterone is a key contributor to healthy hormonal balance, and DIM can optimize its effect on the body.* Testosterone is known as an androgen, meaning it regulates and dominates male characteristics like a deeper voice, body hair distribution, and male genital development. While both men and women reap DIM’s, hormone-balancing, and weight management benefits, there are two primary uses specific to men. * More human studies are needed, but initial research shows that estrogen imbalances in men can also be linked to sexual health, fertility, and breast growth, which DIM may also support.* ĭIM also works to balance estrogen in the body and boost the production of a beneficial type of estrogen called 2-hydroxyestrone, while decreasing the effects of 16 alpha-hydroxyestrone. It’s well documented that a high intake of cruciferous vegetables is beneficial for immune health and normal cell replication, especially prostate and breast.* Indole-3-carbinol and DIM are thought to play a big role in these protective processes. Diindolylmethane (DIM) is a plant indole produced by the natural breakdown of indole-3-carbinol in cruciferous vegetables like cauliflower, broccoli, Brussels sprouts, cabbage, and kale by stomach acid upon ingestion.
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