Rare & Orphan Lab · DeCure for X

DeCure for Spermatogenic failure 63

DeCure's autonomous Rare AI scientist is researching a drug-repurposing hypothesis for spermatogenic failure 63 — screening already-approved drugs against its 1-gene Open Targets disease module to publish open-access research. Research is fast; the path to publication is funded in milestone stages.

Disease module1 genesLead labRare & Orphan
All cures
Rare & OrphanDOID:0112356$DeCureRare

The disease map

Disease moduleSpermatogenic failure 63 maps to a 1-gene Open Targets module — the target space DeCure's AI scientist screens approved drugs against.
DeCure.ai methodSignature reversal (LINCS) plus network proximity (STRING) rank already-approved drugs likely to perturb this module — the same engine that produces DeCure.ai's repurposing hypotheses.
Repurposing thesisScreening approved medicines against this disease module, then publishing the evidence for the strongest candidate. Known pharmacology and human exposure data make the first question sharper — they do not establish safety or efficacy in a new indication.

Research record

01
ResearchComing soon
Candidate research + dossier — target rationale, drug-repurposing thesis and evidence pack.proof: Published dossier + on-chain hash
02
ValidationComing soon
In-vitro biological validation at a contract research org (CRO).proof: CRO contract + in-vitro report
03
Peer review & paperComing soon
Peer-reviewed paper published open-access (preprint + journal).proof: DOI + open-access link + on-chain hash

Current lead

No approved-drug candidate for spermatogenic failure 63 is corroborated in the literature DeepSearch retrieved. Some conditions are managed with non-pharmacological care — a device, surgery or physical therapy — rather than a medicine; that may be the case here, or the literature we found may simply be too sparse yet to support a drug-repurposing angle.

What the evidence adds up to

No medical therapy for primary spermatogenic failure has consistently shown efficacy in clinical studies. A 2011 review states that treatment with hormones and antioxidants remains largely ineffective, and that no treatment has demonstrated consistent benefit across trials. The review notes that idiopathic spermatogenic failure likely results from multiple unidentified defects in sperm production, and that empiric medical therapy has been largely replaced by assisted reproductive techniques.

A 1988 study of 8879 vasectomies performed with uniform technique found 97 failures of all types, including 32 early overt failures (0.60%) and 61 technical failures (1.14%) involving persistence of small numbers of spermatozoa. Four late overt failures (0.08%) occurred at least four years after two azoospermic test results, each discovered because of a pregnancy. The remaining failures were attributed to recanalisation or missed vasa deferentia.

A 2013 study describes optimisation of an aCGH protocol on single human sperm, noting that future application might give information on sperm chromosome aberrations in infertile men and other groups. The study was not designed to determine percentages of alterations in normal or pathological conditions.

What is still missing is identification of the discrete molecular defects that cause spermatogenic failure, a reliable method to triage patients to specific therapies, and a trial design that can test combination approaches rather than single agents.

Evidence

Retrieved by DeepSearch across 234,678,978 indexed works and resolved on OpenAlex — ranked by citations, including the results that did not work.

Asian Journal of Andrology · 2011 · 57 citations · open access

Medical therapy for spermatogenic failure

AbstractMedical treatment of men with primary spermatogenic failure remains largely ineffective in contrast to those with secondary testicular failure. Treatment has been attempted with a multitude of agents ranging from hormones to nutritional supplements (antioxidants). While some studies have demonstrated benefit to some treatments, no treatments have consistently demonstrated efficacy nor has it been possible to reliably identify patients likely to benefit. Idiopathic spermatogenic failure likely results from multiple discrete defects in sperm production that are as yet unidentified. A better understanding of these defects will yield more effective treatment options and appropriate triage of patients to specific therapeutic regimens. This review focuses on the rationale and current evidence for hormonal and antioxidant therapy in medical treatment of male infertility, spermatogenic failure in particular. Although empiric medical therapy for spermatogenic failure has been largely replaced by assisted reproductive techniques, both treatment modalities could play a role, perhaps as combination therapy.

https://doi.org/10.1038/aja.2011.63
JAMA · 1988 · 35 citations

The Lurking Sperm

AbstractVasectomy techniques and failure rates vary among surgeons, and the criteria for failure are not often clearly defined. To help establish a yardstick for comparative purposes, a series of 8879 consecutive vasectomies performed with uniform technique over 24 years was reviewed. A subgroup of 5331 men who had returned for at least two postoperative semen tests—the<i>study</i>group—was used for follow-up analysis. Failures were defined as<i>early</i>or<i>late</i>and also were categorized as overt or<i>technical</i>according to the numbers, motility, or persistence of the remaining spermatozoa. There were 97 failures of all types, including 32 (0.60%) early and overt failures and 61 (1.14%) technical failures that involved the persistence of small numbers of spermatozoa, possibly of no significance. Four (0.08%) late overt failures were also seen; each of these was discovered as a result of a pregnancy, and each occurred at least four years after two azoospermic test results. Of the 97 failures, four were recognized as due to missed vasa deferentia, and the remainder were attributed to recanalization. Whether improved and reproducible failure rates can be consistently obtained by other techniques is not yet clear. (<i>JAMA</i>1988;259:3142-3144)

https://doi.org/10.1001/jama.1988.03720210032024
Human Reproduction · 2005 · 29 citations

Messenger RNA transcripts of the meiotic regulator BOULE in the testis of azoospermic men and their application in predicting the success of sperm retrieval

AbstractBACKGROUND: Testicular sperm retrieval can lead to paternity for azoospermic patients with spermatogenic failure. The human BOULE gene, a meiotic regulator of germ cells, is a gene whose altered expression may be associated with sterility. We determined the levels of BOULE transcripts in the testes of azoospermic patients, and evaluated the relationship between BOULE transcript levels and patients' testicular phenotypes, clinical parameters and sperm retrieval results. METHODS AND RESULTS: BOULE transcript levels in the testes of 41 azoospermic patients were examined by quantitative competitive-reverse transcription-polymerase chain reaction. A significant decrease in BOULE transcript levels was detected in patients with spermatogenic failure, and BOULE transcript levels progressively decreased with increasing severity of testicular failure. BOULE transcript levels did not correlate with the serum hormone parameters measured. Significantly higher BOULE transcript levels were detected in 19 patients with successful sperm retrieval than in 12 patients with failed sperm retrieval. When using a cut-off value of 0.5 for BOULE transcript ratio to predict the success of sperm retrieval, both the sensitivity and specificity value were 100%. CONCLUSIONS: We suggest the BOULE transcript plays an important role in human spermatogenesis and that the levels may predict the presence of testicular sperm in patients with spermatogenic failure.

https://doi.org/10.1093/humrep/deh647
Human Reproduction · 2013 · 0 citations · open access

Session 69: Clinical endocrinology

AbstractLimitations, reason for caution: This study was mainly performed to optimize an aCGH protocol on human single sperm, not to have percentage of alterations in normal and pathological conditions. Wider implications of the findings: Future application of this method might give important information on the biology and pathophysiology of spermatogenesis and sperm chromosome aberrations in normal subjects and in patients at higher risk of producing unbalanced sperm, such as infertile men, carriers of karyotype anomalies, men with advanced age, subjects treated with chemotherapy, and partners of couples with repeated miscarriage and repeated failure during assisted reproduction techniques. Study funding/competing interest(s): University of Padova/no competing interests

https://doi.org/10.1093/humrep/det203

Disease module: DeepOracle (Open Targets). Structures: RDKit from PubChem SMILES. Literature: retrieved by DeepSearch across 234,678,978 indexed works (targeted per-candidate search), resolved on OpenAlex.

DeCure is a research and publication project, not medical advice and not a treatment. "DeCure for X" describes a research goal, not a claim that a cure exists. Backing a cure is a contribution to fund the research — it is not an investment, and confers no yield, royalty, equity or IP ownership. Papers are published open-access by the DeCure.ai DAO.