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Sulfacetamide Sodium

Antiinfectives for treatment of acne · Sulfonamides · given by ophthalmic, topical · on the market since 1988

5
Leads
15.7M
People
4
Makers
27
How abandoned
01

What it's made of

Each functional group on the molecule does a specific, predictable job.

No standard functional groups matched.

02

Where it can get to

Predicted from molecular weight, lipophilicity, polar surface area and hydrogen-bond donor count. A drug can only act where it distributes, so this constrains which conditions are addressable before any biology is considered. derived

Easily
Systemic circulation
Absorbed from the gut and distributed in plasma.
Partly
Central nervous system
Crosses the blood–brain barrier.
No
Intestinal lumen only
Poorly absorbed. Acts locally in the gut with minimal systemic exposure.
Partly
Skin
Crosses the stratum corneum. Viable as a topical.
Easily
Urinary tract
Cleared unchanged in urine. Local concentration exceeds plasma.
03

What it binds — and whether we can reach it

Binding affinity is only meaningful against the plasma concentration reached at the approved dose. A target requiring higher concentrations cannot be engaged in a patient, whatever the in vitro potency. Most repurposing hypotheses fail at this step, and it is rarely checked before a trial is proposed. measured

Values are pAct — the negative logarithm of the molar concentration at which the drug half-occupies the target. Each whole step is a tenfold difference in potency: 9.0 = 1 nanomolar, 6.0 = 1 micromolar, 5.0 = 10 micromolar. Oral drugs typically reach 0.1–10 micromolar in plasma, so roughly 6.0 is the threshold below which a target cannot be reached at a tolerated dose. Figures come from DrugCentral’s curated binding data.
DHFR
Enzyme ·
4.74
Not reachable

This molecule concentrates in urine. Local concentration therefore exceeds plasma, so targets that look unreachable on a plasma reading may still be engaged. assumed

Cytotoxic. Targets core cell-division machinery. Use is limited to conditions severe enough to justify that toxicity; risk-benefit inverts in chronic benign disease.

04

New uses, and who is already trying them

One card per candidate indication: the reasoning link by link, the evidence tier that governs how strongly it can be stated, and any registered trials.

5 of the 58 conditions linked to this drug’s targets have been checked against trial records so far. The rest are not ruled out — they are unchecked.

Not yet used for these — 5

constitutional megaloblastic anemia with severe neur

Wide open

It acts on a target linked to this disease; untested, and the direction of effect is unverified.

The condition
No description on file.
DHFR · dihydrofolate reductase
Catalyzes the reduction of 7,8-dihydrofolate (DHF) to 5,6,7,8-tetrahydrofolate in a NADPH-dependent manner (PubMed:12096917, PubMed:15039552, PubMed:17569517, PubMed:19196009, PubMed:19478082, PubMed:21876184, PubMed:9719595). Key enzyme in folate metabolism. Contributes to the nuclear and mitochondrial de novo thymidylate biosynthesis pathway (PubMed:21876188, PubMed:22235121). Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis. Binds its own mRNA and that of
Nobody has tried this
No registered trial of this drug in this condition.
What would kill it. A null trial, or pharmacokinetic data showing the drug does not reach DHFR in the relevant tissue at tolerated doses.

rheumatoid arthritis

Wide open

It acts on a target linked to this disease; untested, and the direction of effect is unverified.

The condition
A chronic, systemic autoimmune disorder characterized by inflammation in the synovial membranes and articular surfaces. It manifests primarily as a symmetric, erosive polyarthritis that spares the axial skeleton and is typically associated with the presence in the serum of rheumatoid factor.
DHFR · dihydrofolate reductase
Catalyzes the reduction of 7,8-dihydrofolate (DHF) to 5,6,7,8-tetrahydrofolate in a NADPH-dependent manner (PubMed:12096917, PubMed:15039552, PubMed:17569517, PubMed:19196009, PubMed:19478082, PubMed:21876184, PubMed:9719595). Key enzyme in folate metabolism. Contributes to the nuclear and mitochondrial de novo thymidylate biosynthesis pathway (PubMed:21876188, PubMed:22235121). Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis. Binds its own mRNA and that of
Nobody has tried this
No registered trial of this drug in this condition.
What would kill it. A null trial, or pharmacokinetic data showing the drug does not reach DHFR in the relevant tissue at tolerated doses.

non-small cell lung carcinoma

Wide open

It acts on a target linked to this disease; untested, and the direction of effect is unverified.

The condition
A group of at least three distinct histological types of lung cancer, including non-small cell squamous cell carcinoma, adenocarcinoma, and large cell carcinoma. Non-small cell lung carcinomas have a poor response to conventional chemotherapy.
DHFR · dihydrofolate reductase
Catalyzes the reduction of 7,8-dihydrofolate (DHF) to 5,6,7,8-tetrahydrofolate in a NADPH-dependent manner (PubMed:12096917, PubMed:15039552, PubMed:17569517, PubMed:19196009, PubMed:19478082, PubMed:21876184, PubMed:9719595). Key enzyme in folate metabolism. Contributes to the nuclear and mitochondrial de novo thymidylate biosynthesis pathway (PubMed:21876188, PubMed:22235121). Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis. Binds its own mRNA and that of
Nobody has tried this
No registered trial of this drug in this condition.
What would kill it. A null trial, or pharmacokinetic data showing the drug does not reach DHFR in the relevant tissue at tolerated doses.

acute lymphoblastic leukemia

Wide open

It acts on a target linked to this disease; untested, and the direction of effect is unverified.

The condition
Leukemia with an acute onset, characterized by the presence of lymphoblasts in the bone marrow and the peripheral blood. It includes the acute B lymphoblastic leukemia and acute T lymphoblastic leukemia.
DHFR · dihydrofolate reductase
Catalyzes the reduction of 7,8-dihydrofolate (DHF) to 5,6,7,8-tetrahydrofolate in a NADPH-dependent manner (PubMed:12096917, PubMed:15039552, PubMed:17569517, PubMed:19196009, PubMed:19478082, PubMed:21876184, PubMed:9719595). Key enzyme in folate metabolism. Contributes to the nuclear and mitochondrial de novo thymidylate biosynthesis pathway (PubMed:21876188, PubMed:22235121). Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis. Binds its own mRNA and that of
Nobody has tried this
No registered trial of this drug in this condition.
What would kill it. A null trial, or pharmacokinetic data showing the drug does not reach DHFR in the relevant tissue at tolerated doses.

psoriasis

Wide open

It acts on a target linked to this disease; untested, and the direction of effect is unverified.

The condition
An autoimmune condition characterized by red, well-delineated plaques with silvery scales that are usually on the extensor surfaces and scalp. They can occasionally present with these manifestations: pustules; erythema and scaling in intertriginous areas, and erythroderma, that are often distributed on extensor surfaces and scalp.
DHFR · dihydrofolate reductase
Catalyzes the reduction of 7,8-dihydrofolate (DHF) to 5,6,7,8-tetrahydrofolate in a NADPH-dependent manner (PubMed:12096917, PubMed:15039552, PubMed:17569517, PubMed:19196009, PubMed:19478082, PubMed:21876184, PubMed:9719595). Key enzyme in folate metabolism. Contributes to the nuclear and mitochondrial de novo thymidylate biosynthesis pathway (PubMed:21876188, PubMed:22235121). Catalyzes an essential reaction for de novo glycine and purine synthesis, and for DNA precursor synthesis. Binds its own mRNA and that of
Nobody has tried this
No registered trial of this drug in this condition.
What would kill it. A null trial, or pharmacokinetic data showing the drug does not reach DHFR in the relevant tissue at tolerated doses.
05

Why nobody will fund it

4 companies make this across 4 approved products. With that many manufacturers the price has fallen to production cost. A company funding a trial could not recover it — competitors could market the same molecule for the new indication immediately, without contributing.

How abandoned it is27 / 100
0 to 100, calculated from manufacturer count, remaining patent or exclusivity, and whether any reformulation route to exclusivity is still open. 100 means no route to commercial return exists. The weights behind it are unsourced.
THE ONE WAY A COMPANY COULD STILL OWN IT
oralinjectableinhaledmodified-release

A new route or dosage form qualifies for a 505(b)(2) application, which carries three years of exclusivity for that formulation. It is the only remaining route to exclusivity on a generic molecule.

06

What it would cost to find out

Derived, not quoted. Events needed is 4(zα+zβ)²/ln(HR)²; enrolment is that divided by the event rate and follow-up. The 1/ln(HR)² term dominates: halving the detectable effect size roughly quadruples enrolment. derived

0.75
Lower = bigger effect = smaller trial
8.0%
2 yr
$32K
Unsourced placeholder
379
Events needed
3K
Patients
$93M
Trial cost
assumed
$16.93
Per person reached
assumed

Cost per person reached is the relevant metric for a non-commercial funder, since there is no revenue to set against the outlay.

07

Ask for ideas nobody has listed

Reasons from the functional groups and distribution above, excluding conditions already listed. Output is hypotheses for falsification, not findings. Not medical advice.

08

Who might pay for the trial

Trials of off-patent drugs are rarely funded by venture capital or pharma. They are paid for by government grants and disease foundations. Here is who has funded work on this molecule before, what federal mechanisms are open now, and which foundations fund trials in the disease areas it touches. measured

Federal grants that name this medicine

No federally funded project currently mentions this drug by name. That means work is either funded privately or has not yet been proposed to federal agencies.

Open federal programmes that would fund this work

Open notices with an explicit mandate to fund work on approved or off-patent molecules.

RFA-CA-25-033National Institutes of HealthForecast — not open yet
Glioblastoma Therapeutics Network (GTN; U19 Clinical Trial Required)
RFA-FD-25-020Food and Drug Administrationcloses 05/16/2028
Reissue of RFA-FD-23-001- Clinical Studies of Orphan Products Addressing Unmet
FOR-FD-25-020Food and Drug AdministrationForecast — not open yet
Clinical Studies of Orphan Products Addressing Unmet Needs of Rare Diseases (R
FOR-FD-25-001Food and Drug AdministrationForecast — not open yet
Clinical Trials Addressing Unmet Needs of Rare Neurodegenerative Diseases (R01
RFA-TR-25-002National Institutes of Healthcloses 07/02/2027
Preclinical Proof of Concept Studies for Rare Diseases (R21 Clinical Trial Not
PAR-25-374National Institutes of Healthcloses 05/07/2028
Translational Bioinformatics and Experimental Approaches to Advance Drug Repos
HT942526PRCRPCTADefense Health Agency Contracting Activity -closes 10/05/2026
DoW Peer Reviewed Cancer, Clinical Trial Award
PAR-26-049National Institutes of HealthForecast — not open yet
Establishing Pediatric CNS Pharmacodynamic Measures as Tools to Enable Psychia
Showing 8 of 990 currently open under this category on Grants.gov, matched to the disease areas this drug touches. derived Browse all 990 on Grants.gov ↗
Funders beyond the federal system

Grants.gov lists US federal money. Many off-patent drug trials are supported by disease foundations and nonprofits. These are matched to the body systems this drug touches. assumed

Matched by disease area, not by molecule — a foundation appearing here funds work in a field this drug touches.
09

Who manufactures it

Companies holding an approved abbreviated application for this molecule in the United States, from the FDA Orange Book. Supply already exists at scale, so a trial would not need a manufacturing programme — but any of these could also be a partner, or an objector.

Bausch And Lomb IncChartwell Rx Sciences LlcFougera Pharmaceuticals Inc
4
Manufacturers
companies with their own approval
4
Approved products
distinct strengths and forms
2
Routes
ophthalmic, topical
1988
Oldest product still sold
approval year of the earliest product still on the market
ALSO SOLD AS
KLARON

Nothing on this page is medical advice. Candidate uses are unproven hypotheses derived from public data; established uses are listed for verification only. Figures carry their provenance inline — anything marked assumed or derived is not a measurement.

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