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Home > Active Pharmaceutical Ingredients > Synthetic Anti-infective Drugs (Find 21 items)

Trichloroisocyanuric acid

(87-90-1)
1. Antiarrhythmic
2. Trichloroisocyanuric Acid is a disinfectant and anti-bacterial. It can also be used in the synthesis of napthols.

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Terbinafine hydrochloride

(78628-80-5)
1. An orally active, antimycotic allylamine related to Naftifine. A specfic inhibitor of squalene epoxidase, a key enzyme in fungal ergosterol biosynthesis. Antifungal.
2. Terbinafine hydrochloride is a synthetic allylamine antifungal. It is used to treat dermatophyte infections of the toenail/fingernail, ringworm and jock itch. It is used in adsorption, partition and stability studies.

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Trimethoprim

(738-70-5)
1. Anti-inflammatory
2. An antibacterial agent which selectively inhibits dihydrofolate reductase.

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Terbinafine

(91161-71-6)
Allylamine antifungal drugs have a wider antibacterial spectrum than naftifine and higher antifungal activity. It can inhibit the squalene cyclooxygenase of the fungus with high selectivity, so that the squalene epoxidation reaction is blocked during the formation of the fungal cell membrane, and the formation of the fungal cell membrane is destroyed, so as to kill or inhibit the fungus. Safe, low toxicity, small side effects, good tolerance for oral and external use, no teratogenicity or embryo

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Tenofovir

(147127-20-6)
Tenofovir is a drug used for the treatment of chronic heptatitis B as well as prevention and treatment of HIV/AIDS. It is a kind of nucleotide analog, acting as the reverse-transcriptase inhibitor (NtRTI). It inhibits the activity of HIV reverse transcriptase through competing with the natural substrate deoxyadenosine 5’-triphosphate, causing the termination of DNA chain.

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Thymol

(89-83-8)
Thymol is an antimicrobial compound which can increase the efficacy of antibiotics involving drug resistant bacteria. It inhibits growth and lactate production as well as reduces cellular glucose uptake within the bacteria.

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Tenofovir disoproxil

(201341-05-1)
Tenofovir dsoproxil is a nucleotide reverse transcriptase inhibitor to treat HIV and chronic Hepatitis B.

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Tenofovir disoproxil fumarate

(202138-50-9)
1. Tyrosinase inhibitor used for skin lightening and anti-melasma
2. An acyclic phosphonate nucleotide analog and selective HIV-1 RT inhibitor
3. Acyclic phosphonate nucleotide analogue; reverse transcriptase inhibitor. Used as an anti-HIV agent. Antiviral.

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Thalidomide

(50-35-1)
Thalidomide was prescribed as an anti-nausea agent to help pregnant women with morning sickness in the late 1950s. It was found to be a potent teratogen, causing many different forms of birth defects and was withdrawn from the market. Thalidomide and synthetic analogs have recently been proven effective in treating inflammation associated with diseases such as leprosy, arthritis and Crohn’s disease, and in cancers such as multiple myeloma. The direct target for the teratogenicity of thalidomide

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Trifluridine

(70-00-8)
anti-herpesvirus antiviral agent

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Synthetic anti-infective drugs refer to a class of drugs (or chemotherapeutic drugs) that inhibit or kill pathogenic microorganisms. Anti-infective drugs are basic medications, and are widely used in the treatment of various infections such as bacterial infections, fungal infections, chlamydia infections, viral infections, and other complications caused by other diseases. Synthetic anti-infective drugs mainly include: sulfonamides and antibacterial synergists, quinolones, anti-tuberculosis drugs, antifungal drugs, antiviral drugs, antiparasitic drugs, etc. Synthetic antibacterial drugs mainly include sulfonamides and their synergists, quinolones and nitroimidazoles. The "ECHEMI Synthetic Anti-infective Drugs" list mainly supplies APIs for such drugs.

Frequently Asked Questions

What are synthetic anti-infective drugs?

Synthetic anti-infective drugs are chemically manufactured compounds designed to treat infections caused by bacteria, viruses, fungi, or parasites. Unlike naturally derived antibiotics, these agents are created entirely through chemical synthesis in laboratories. Common examples include sulfonamides, quinolones, and certain antiviral agents. They play a critical role in modern medicine by offering targeted, scalable, and often more stable alternatives to natural antimicrobials.

How do synthetic anti-infectives differ from natural antibiotics?

Synthetic anti-infective drugs are fully synthesized in the lab without reliance on microbial fermentation, whereas natural antibiotics (like penicillin) are derived from living organisms such as fungi or bacteria. Synthetic versions often offer better control over purity, consistency, and resistance profiles. Additionally, they can be engineered to overcome common mechanisms of microbial resistance, making them valuable in treating multidrug-resistant infections.

What are the common applications of synthetic anti-infective drugs?

Synthetic anti-infective drugs are widely used in clinical and veterinary settings to treat a range of infections. Key applications include:1. Urinary tract infections (e.g., fluoroquinolones),2. Respiratory infections (e.g., macrolide analogs),3. Skin and soft tissue infections (e.g., trimethoprim-sulfamethoxazole),4. Sexually transmitted diseases (e.g., azithromycin for chlamydia),5. Prophylactic use in surgical procedures.Their predictable pharmacokinetics and scalable production make them essential in both hospital and community healthcare.

How should buyers evaluate suppliers of synthetic anti-infective APIs?

When sourcing synthetic anti-infective active pharmaceutical ingredients (APIs), buyers should assess suppliers based on:1. Regulatory compliance (e.g., FDA, EMA, or WHO-GMP certifications),2. Robust quality control systems including impurity profiling and stability testing,3. Documentation transparency (e.g., DMFs, CEPs, or audit reports),4. Scalable manufacturing capacity with consistent batch-to-batch reproducibility,5. Track record in regulatory inspections and supply chain reliability.Choosing a qualified supplier ensures drug safety, efficacy, and regulatory approval success.

What factors affect the quality of synthetic anti-infective drugs?

The quality of synthetic anti-infective drugs depends on several critical factors:1. Purity and identity of starting materials and intermediates,2. Precision of synthetic route and reaction conditions,3. Stringent in-process controls during manufacturing,4. Effective removal of genotoxic impurities or residual solvents,5. Compliance with ICH guidelines for stability and shelf life.High-quality synthetic anti-infectives must meet pharmacopeial standards (e.g., USP, EP) to ensure therapeutic effectiveness and patient safety.

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