Skip to main content
OpenTrials
Not Yet Recruiting

NCT Number: NCT07109622

Effect of Herbal Supplement on Improving Sperm Virility

The purpose of this study is to evaluate the efficacy of LN18178 on improving sperm virility.

Not Yet Recruiting

Trial opening soon.

Get Notified

Key information

Age range

25 year–45 year

Sex eligibility

Male

Study type

Interventional

Phase

Not applicable

About this study

A total of 40 Males aged between 25-45 years will be included in the study. Assessment of inclusion and exclusion criteria will be done based on clinical and laboratory investigations. The eligible subjects will be randomized as per the computer-generated randomization list. The subjects will be assigned to either LN18178 - 400 mg or placebo arms at 1:1 ratio. The subjects will be instructed to take one capsule daily in the morning after breakfast for 12 weeks. A part from primary and secondary outcomes, the study will also record the vital signs and adverse events to evaluate the herbal composition safety and tolerability. The safety assessment of the LN18178 will also include routine laboratory investigations on blood, urine and clinical chemistry at screening and the final visit of the intervention.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Males aged between 25-45 years with a Body Mass Index (BMI) of 20-29 kg/m2.
  • Subjects with a history of infertility of at least 12 months despite regular unprotected intercourse.
  • Subjects with semen analysis showing abnormal sperm concentration (< 16 million/ml), progressive motility (< 30%), and total motility (< 42%), normal morphology (< 4%). (WHO guidelines- 6th edition, 2021)
  • Subjects with total testosterone ≥300 ng/dL.
  • Subjects who are willing to abstain from sexual activity that results in ejaculation for 3 to 5 days before semen analysis.
  • Subjects who are in a stable sexual relationship and sexually active during the study.
  • Subjects willing to use contraceptives during study period.
  • Subjects agree to maintain current diet and activity level.
  • No urogenital infection or anatomical abnormality of this system, including varicocele; no prior history of surgery in the pelvic area; no uncontrolled systemic illness, such as liver and gallbladder cancers, renal failure, thyroid disorders, and cerebral haemorrhage; no prior history of trauma to the testes; no unilateral testicular atrophy; no previous history of chemotherapy or treatment with anticoagulants, corticosteroids, testosterone and anti-androgen medications during the 8 weeks before the study.
  • Subject considered generally healthy as per health history and routine clinical investigations during screening.
  • Ability to understand the risks/benefits of the protocol and willing to sign the written informed consent.

Exclusion criteria

  • Employees working on night shifts.
  • Subjects with identifiable cause for Oligoasthenoteratozoospermia (OAT) (includes Cryptorchidism, Orchitis and Radiation or chemotherapy etc.).
  • Subjects with Systolic >140 and Diastolic >90 mmHg blood pressure and Fasting blood glucose (FBG) >125 mg/dl.
  • Smokers and alcoholics.
  • Subjects underwent treatment for COVID 19 within the last 3 months or tested positive during the study will be excluded.
  • Subject with any physical disability that may limit sexual function.
  • Subjects with history of taking medications for oligospermia or any other sexual problems, including PDE-5 inhibitors, and dysfunctions related to genito-urinary system, muscular dystrophy and coagulation.
  • Subjects with clinical history of genital surgery, endocrine disorders e.g. hypopituitarism, pituitary tumors, hypo- and hyperthyroidism, hypogonadism, inherited (genetic and chromosomal) disorders, etc.
  • Subjects diagnosed with sleep apnea or related disorders.
  • Subjects consuming medications that can interfere with muscle mass such as corticosteroids, testosterone replacement or anabolic drugs.
  • Subjects who consume recreational drugs (such as cocaine, methamphetamine, marijuana, etc.) or chewable tobacco products.
  • Subjects having history of Benign Prostate Hyperplasia (BPH), stroke, myocardial infarction, coronary artery disease, cardiac failure, angina, life-threatening arrhythmia within the past 6 months.
  • Subjects under medications including vitamins, antidepressants, anticholinergics, inhaled beta agonists, anti- hyperlipidemic, psychotropics etc.
  • Subjects using any centrally acting anorectic agents, drugs that inhibit the absorption of nutrients and endocannabinoid neuromodulators during the two weeks prior to enrolment into the study.
  • Subjects who underwent major surgical procedures in last 6 months, which may affect their quality of life.
  • Subject with HIV positive or any other STDs.
  • History of psychiatric disorder that may impair the ability of subjects to provide written informed consent.
  • Subject has participated in a clinical study within the last 90 days prior to recruitment or concurrently participating in another study.

Treatment and study plan

LN18178

Dietary Supplement

400 mg, One capsule to be consumed in the morning after breakfast for 12 weeks.

Placebo

Dietary Supplement

One capsule to be consumed in the morning after breakfast for 12 Weeks

Primary outcomes

  1. Change in motility (% Motile Sperms) using manual microscopic examination.

    Time frame: Screening, weeks 8, 12 & 16

    Assessed through manual microscopic examination according to WHO guidelines. The percentage of motile sperm (progressive + non-progressive) will be calculated. A higher percentage reflects improved reproductive function.

Secondary outcomes

  1. Change in semen Concentration (millions/mL) using manual microscopic examination.

    Time frame: Screening, weeks 8, 12 & 16

    Measured manually using a Makler counting chamber. Concentration is expressed in millions of sperm per milliliter. Higher concentration indicates better fertility potential.

  2. Change from baseline to the end of the study period in Morphology of sperm (% normal forms) using manual microscopic examination.

    Time frame: Screening, weeks 8, 12 & 16

    Assessed through microscopic evaluation following WHO criteria. The percentage of sperm with normal morphology will be reported. Greater % indicates enhanced fertility potential.

  3. Change from baseline to the end of the study period in Sperm DNA fragmentation Index (% DFI) using Sperm Chromatin Dispersion method.

    Time frame: Screening, Weeks 12 & 16

    Assessed using the SCD (Sperm Chromatin Dispersion) method. The DNA Fragmentation Index (DFI) represents the percentage of sperm with fragmented DNA. A decrease in DFI is associated with improved fertilization potential.

  4. Change from baseline to the end of the study period in International Index of Erectile Function (IIEF-15)

    Time frame: Baseline (day 1), Weeks 4, 8,12 & 16

    A validated, self-administered questionnaire consisting of 15 items covering erectile function, orgasmic function, sexual desire, intercourse satisfaction, and overall satisfaction. Each item scored from 0 to 5; total score ranges from 0 to 75. Higher scores indicate better sexual function.

  5. Change from baseline to the end of the study period in Quality of life short form (SF-36)

    Time frame: Baseline (day 1), Weeks 4, 8,12 & 16

    The 36-Item Short Form (SF-36) is a self-reported questionnaire used to assess overall health and quality of life. It consists of 8 domains, each scored on a scale from 0 to 100. Higher scores indicate a better quality of life and improved health status.

  6. Change from baseline to the end of the study period in Serum hormonal biomarkers: Total Testosterone (ng/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Testosterone is a male sex hormone produced by the gonadal tissue. An increase in both total testosterone levels enhances sexual drive and supports sperm production

  7. Change from baseline to the end of the study period in Serum hormonal biomarkers: Free Testosterone (pg/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Testosterone is a male sex hormone produced by the gonadal tissue. An increase in both free testosterone levels enhances sexual drive and supports sperm production

  8. Change from baseline to the end of the study period in Serum hormonal biomarkers: Follicle-Stimulating Hormone (mIU/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Follicle-stimulating hormone (FSH), produced by the pituitary gland, plays a key role in supporting spermatogenesis. Any deviation from normal FSH levels can disrupt sperm production and affect sexual development.

  9. Change from baseline to the end of the study period in Serum hormonal biomarkers: Luteinizing Hormone (mIU/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Luteinizing hormone (LH), released by the pituitary gland, stimulates testosterone production. Maintenance LH levels within the normal range is important for healthy sexual function.

  10. Change from baseline to the end of the study period in Serum hormonal biomarkers: Inhibin B (pg/ml) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Inhibin B is produced exclusively by the testes and plays a key role in regulating FSH secretion from the pituitary gland. Improvement in Inhibin B is an indication of healthy testicular volume and an adequate sperm count.

  11. Change from baseline to the end of the study period in Semen oxidative stress markers MDA: Malondialdehyde (ng/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    MDA, an end product of lipid peroxidation. High lipid peroxidation as represented by MDA levels may cause changes in the sperm and diminish fertility. It is reported that the high MDA production in the male with low fertilization rates. Reduction of MDA by using antioxidant therapy was correlated with the improvement of fertilization rates. A decrease high MDA level of semen favours spermatogenesis.

  12. Change from baseline to the end of the study period in Semen inflammation markers IL-6: Interleukin 6 (pg/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    IL-6 is a pro-inflammatory cytokine and high levels of IL-6 in seminal plasma are often linked to decreased sperm motility. Increased IL-6 levels in seminal plasma indicate inflammation in male reproductive tract, that affects sperm quality.

  13. Change from baseline to the end of the study period in Semen oxidative stress markers GSH: Glutathione (µM) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    GSH is a powerful antioxidant that neutralizes harmful free radicals (reactive oxygen species or ROS) within sperm cells. GSH helps maintain the integrity of sperm membranes, including the plasma membrane, which is essential for sperm motility and fertilization. Sperm motility is positively correlated with seminal reduced glutathione (GSH) levels. GSH deficiency has been shown to lead to the instability of the spermatozoa midpiece, thus resulting in defective motility and morphology of the spermatozoa.

  14. Change from baseline to the end of the study period in Semen oxidative stress markers TAC: Total Antioxidant Capacity (mM) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    Low seminal plasma antioxidants have been found to be implicated in reducing sperm concentration, motility and morphology. Total antioxidant capacity (TAC) has shown to be strongly correlated with semen quality and male infertility.

  15. Change from baseline to the end of the study period in Semen inflammation markers TNF-alpha: Tumor Necrosis Factor-Alpha (pg/mL) using Enzyme-Linked Immunosorbent Assay method

    Time frame: Baseline (day 1), Weeks 12 &16

    TNF-alpha, a cytokine involved in inflammation, can negatively impact sperm quality. Studies indicate that elevated TNF-alpha levels in seminal fluid are associated with reduced sperm motility, viability, and increased DNA damage. TNF-alpha can trigger programmed cell death (apoptosis) in sperm cells, leading to a reduction in sperm count.

Study contacts

Contact information is provided by the study sponsor or research team.

Mr Machiraju Garga

CONTACT

[email protected]

+91 8331015019

Sponsors and collaborators

Lead sponsor

GENCOR Lifestage Solutions

Other

Registry information

Official study title

A Randomized, Double-blind, Placebo-controlled Pilot Study to Evaluate the Efficacy of LN18178 on Improving Sperm Virility (Sperm Motility, Sperm Concentration, and Sperm Morphology)

Important dates

Study start
2025
Primary completion
2026
Study completion
2026
First posted
Aug 7, 2025
Registry last updated
Aug 7, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

Published trials that share one or more normalized conditions with this study.