Anti-infectives are drugs that can either kill an infectious agent or inhibit it from spreading. Anti-infectives include antibiotics and antibacterials, antifungals, antivirals and antiprotozoals.

Antibiotics specifically treat infections caused by bacteria, most commonly used types of antibiotics are: Aminoglycosides, Penicillins, Fluoroquinolones, Cephalosporins, Macrolides, and Tetracyclines. New other approaches such as photodynamic therapy (PDT) and antibacterial peptides have been considered as alternatives to kill bacteria.

The high rates of morbidity and mortality caused by fungal infections are associated with the current limited antifungal arsenal and the high toxicity of the compounds. The most common antifungal targets include fungal RNA synthesis and cell wall and membrane components, though new antifungal targets are being investigated.

Viral infections occur when viruses enter cells in the body and begin reproducing, often causing illness. Viruses are classified as DNA viruses or RNA viruses, RNA viruses include retroviruses, such as HIV, are prone to mutate. The currently available antiviral drugs target 4 main groups of viruses: herpes, hepatitis, HIV and influenza viruses. Drug resistance in the clinical utility of antiviral drugs has raised an urgent need for developing new antiviral drugs.

Antiprotozoal drugs are medicines that treat infections caused by protozoa. Of which, malaria remains a major world health problem following the emergence and spread of Plasmodium falciparum that is resistant to the majority of antimalarial drugs. At present, antimalarial discovery approaches have been studied, such as the discovery of antimalarials from natural sources, chemical modifications of existing antimalarials, the development of hybrid compounds, testing of commercially available drugs that have been approved for human use for other diseases and molecular modelling using virtual screening technology and docking.

References:
[1] Scorzoni L, et al. Front Microbiol. 2017 Jan 23;8:36.
[2] Dehghan Esmatabadi MJ, et al. Cell Mol Biol (Noisy-le-grand). 2017 Feb 28;63(2):40-48.
[3] Raymund R, et al. Mayo Clin Proc. 2011 Oct; 86(10):1009-1026.
[4] Aguiar AC, et al. Mem Inst Oswaldo Cruz. 2012 Nov;107(7):831-45.


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Ys-II

Ys-II (Compound 1) is a spirostanol glycoside that can be isolated from the stem of Yucca elephantipe. Ys-II has antifungal activity against the growth of Candida albicans and Cryptococcus neoformans (IC50: 5 and 6 μg/mL respectively)[1].

  • CAS Number: 897386-27-5
  • MF: C45H76O19
  • MW: 921.07
  • Catalog: Fungal
  • Density: 1.45±0.1 g/cm3(Predicted)
  • Boiling Point: 1033.6±65.0 °C(Predicted)
  • Melting Point: N/A
  • Flash Point: N/A

cis-ccc_R08

cis-ccc_R08 (compound 1) is a flavonoid derivative that can be used in the study of hepatitis B virus (HBV) infection. cis-ccc_R08 is a cccDNA (covalently closed circular DNA) inhibitor[1].

  • CAS Number: 2413192-48-8
  • MF: C22H19ClO6
  • MW: 414.84
  • Catalog: HBV
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Chloramphenicol palmitate

Chloramphenicol palmitate is an orally active broad spectrum antibiotic and has a broad spectrum of activity against gram positive and gram negative bacteria. Chloramphenicol palmitate inhibits bacterial protein synthesis by blocking the peptidyl transferase step. Chloramphenicol palmitate can be used as bacterial selection agent in transformed cells containing chloramphenicol resistance genes[1].

  • CAS Number: 530-43-8
  • MF: C27H42Cl2N2O6
  • MW: 561.538
  • Catalog: Bacterial
  • Density: 1.2±0.1 g/cm3
  • Boiling Point: 691.6±55.0 °C at 760 mmHg
  • Melting Point: 90ºC
  • Flash Point: 372.1±31.5 °C

Isosativan

Isosativan is a natural product that can be found in Trifolium hybridum. Isosativan shows antifungal activity[1].

  • CAS Number: 60102-29-6
  • MF: C17H18O4
  • MW: 286.32
  • Catalog: Fungal
  • Density: 1.2±0.1 g/cm3
  • Boiling Point: 414.9±45.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 204.7±28.7 °C

Nucleozin

Nucleozin targets influenza A nucleoprotein (NP), a multifunctional, RNA-binding protein necessary for virus replication. IC50 Value: Target: Influenza Virus NPNucleozin targets influenza A nucleoprotein, a multifunctional, RNA-binding protein necessary for virus replication. It induces the formation of nucleoptotein aggregates and inhibits its accumulation, interfering with viral replication. EC50 is in the nM range. Nucleozin is effective in H1N1, H3N2, and H5N1 flu virus strains.

  • CAS Number: 341001-38-5
  • MF: C21H19ClN4O4
  • MW: 426.85300
  • Catalog: Influenza Virus
  • Density: 1.371
  • Boiling Point: 673.8ºC at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 361.3ºC

Sapienic acid

Sapienic acid is a fatty acid commonly found on the skin and in mucosa. Sapienic acid has variable antimicrobial activities against Gram-positive and Gram-negative bacteria found on the skin and in the oral cavity. Sapienic acid is active against Streptococcus sanguinis, Streptococcus mitis and Fusobacterium nucleatum with MBC values of 31.3 μg/mL, 375.0 μg/mL and 93.8 μg/mL, respectively[1].

  • CAS Number: 17004-51-2
  • MF: C16H30O2
  • MW: 254.40800
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Pimaricin

Natamycin (pimaricin) is an antifungal macrolide polyene that binds to cell membrane sterols.Target: AntifungalNatamycin (INN), also known as pimaricin and sometimes sold as Natacyn, is a naturally occurring antifungal agent produced during fermentation by the bacterium Streptomyces natalensis, commonly found in soil. Natamycin has a very low solubility in water; however, natamycin is effective at very low levels. There is an MIC (minimum inhibitory concentration) of less than 10 ppm for most molds. Natamycin is classified as a macrolide polyene antifungal and, as a drug, is used to treat fungal keratitis. It is especially effective against Aspergillus and Fusarium corneal infections. Other common members of the polyene macrolide antifungal family are amphotericin B, nystatin, and filipin. Natamycin is also used in the food industry as a natural preservative.Natamycin is used to treat fungal infections, including Candida, Aspergillus, Cephalosporium, Fusarium and Penicillium. It is applied as a cream, in eyedrops, or (for oral infections) in a lozenge. Natamycin shows negligible absorption into the body when administered in these ways. When taken orally, little or none is absorbed from the gastrointestinal tract, making it inappropriate for systemic infections.

  • CAS Number: 7681-93-8
  • MF: C33H47NO13
  • MW: 665.725
  • Catalog: Fungal
  • Density: 1.4±0.1 g/cm3
  • Boiling Point: 952.2±65.0 °C at 760 mmHg
  • Melting Point: 2000ºC
  • Flash Point: 529.7±34.3 °C

quinoline-3-carboxylic acid

Norfloxacin nicotinate (MK-0366 nicotinate) is a fluoroquinolones antibiotic, an adduct of Norfloxacin (NOR) and nicotinic acid. Norfloxacin nicotinate has been widely used for replacing NOR in animal husbandry and fishery industry. Norfloxacin nicotinate can induce innate immune response at a high concentration[1].

  • CAS Number: 118803-81-9
  • MF: C22H23FN4O5
  • MW: 442.440
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: 555.8ºC at 760 mmHg
  • Melting Point: 277-280ºC(lit.)
  • Flash Point: 289.9ºC

(15E)-12,18-Dihydroxysenecionan-11,16-dione

Usaramine is a pyrrolizidine alkaloid isolated from seeds of Crolatalaria pallida. Usaramine demonstrates a highlighted antibiofilm activity against Staphylococcus epidermidis by reducing more than 50% of biofilm formation without killing the bacteria[1].

  • CAS Number: 15503-87-4
  • MF: C18H25NO6
  • MW: 351.394
  • Catalog: Bacterial
  • Density: 1.3±0.1 g/cm3
  • Boiling Point: 583.2±50.0 °C at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 306.5±30.1 °C

KAMP-19

KAMP-19, a keratin-derived antimicrobial peptide, is an antimicrobial peptide against P. aeruginosa. [1].

  • CAS Number: 1404488-98-7
  • MF: C75H127N23O26
  • MW: 1766.95
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Chrysophanol 1-O-beta-tetraglucoside

Chrysophanol tetraglucoside possesses anti-hypolipidemic and antibacterial activities[1][2].

  • CAS Number: 120181-08-0
  • MF: C39H50O24
  • MW: 902.80
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Leu-AMS

Leu-AMS is a potent inhibitor of leucyl-tRNA synthetase (LRS) with an IC50 of 22.34 nM and inhibits the growth of bacteria.

  • CAS Number: 288591-93-5
  • MF: C16H25N7O7S
  • MW: 459.48
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

(+)-Camphor

(+)-Camphor is an ingredient in cooking, and as an embalming fluid for medicinal purposes,

  • CAS Number: 464-49-3
  • MF: C10H16O
  • MW: 152.233
  • Catalog: Bacterial
  • Density: 1.0±0.1 g/cm3
  • Boiling Point: 207.4±0.0 °C at 760 mmHg
  • Melting Point: 176-180ºC
  • Flash Point: 64 ºC

gamma-Fagarine

γ-Fagarine is a furoquinoline alkaloid naturally occurring in Rutae Herba. γ-Fagarine has strong anti-HCV activities with IC50 of 20.4 μg/mL and is also a sister chromatid exchanges (SCEs) inducer[1][2].

  • CAS Number: 524-15-2
  • MF: C13H11NO3
  • MW: 229.231
  • Catalog: HCV
  • Density: 1.3±0.1 g/cm3
  • Boiling Point: 381.0±37.0 °C at 760 mmHg
  • Melting Point: 142°
  • Flash Point: 184.2±26.5 °C

Antibacterial agent 48

Antibacterial agent 48, an antibacterial agent, significantly lowers MIC value of antibacterial agent Ceftazidime[1].

  • CAS Number: 1426572-53-3
  • MF: C13H18N5NaO7S
  • MW: 411.37
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

The K4 peptide

The K4 peptide is an antimicrobial peptide with strong activity against Gram-positive and Gram-negative bacteria, including human pathogenic bacteria, such as Staphylococcus aureus and Marine Vibrio bacteria[1].

  • CAS Number: 1163064-86-5
  • MF: C87H132N18O15
  • MW: 1670.09
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

micafungin

Micafungin (Mycamine; FK463) is an echinocandin antifungal drug which can inhibit 1,3-beta-D-glucan synthase.

  • CAS Number: 235114-32-6
  • MF: C56H71N9O23S
  • MW: 1270.274
  • Catalog: Fungal
  • Density: 1.6±0.1 g/cm3
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

amphotericin A

Amphotericin A is a potent antifungal antibiotic[1].

  • CAS Number: 1405-32-9
  • MF: C47H75NO17
  • MW: 926.09500
  • Catalog: Fungal
  • Density: 1.33g/cm3
  • Boiling Point: 1132.2ºC at 760mmHg
  • Melting Point: N/A
  • Flash Point: 638.5ºC

Olanexidine

Olanexidine is an antibacterial agent. Olanexidine is active against a wide range of bacteria, imcluding both Gram-positive and Gram-negative bacteria Olanexidine is also an antiseptic. Olanexidine can be used in the research of infection and inflammation[1][2][3].

  • CAS Number: 146510-36-3
  • MF: C17H27Cl2N5
  • MW: 372.33600
  • Catalog: Bacterial
  • Density: 1.22g/cm3
  • Boiling Point: 503.3ºC at 760 mmHg
  • Melting Point: N/A
  • Flash Point: 258.2ºC

JB-11 isethionate

Trimetrexate (CI-898) isethionate is an antibiotic, also a potent and orally active dihydrofolate reductase (DHFR) inhibitor, reducing the production of DNA and RNA precursors and leading to cell death, with IC50 values of 4.74 nM and 1.35 nM for human DHFR and Toxoplasma gondii DHFR. Trimetrexate isethionate can also inhibit the growth of various cancer cells. Trimetrexate isethionate can be used for researching Pneumocystis carinii pneumonia (PCP) and cancer[1][2][3][4][5].

  • CAS Number: 82935-04-4
  • MF: C21H29N5O7S
  • MW: 495.54900
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: 647ºC at 760mmHg
  • Melting Point: N/A
  • Flash Point: 345.1ºC

Soyasapogenol C

Soyasapogenol C is an oleanane-type triterpenoid. Soyasapogenol C exhibits anti-HSV-1 activity, with an IC50 of 18.9 μM[1].

  • CAS Number: 595-14-2
  • MF: C30H48O2
  • MW: 440.70100
  • Catalog: HSV
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

2-Thiazolidinone,4-[(1R,4Z,8Z,10S,13R,15R)-15-hydroxy-5,10-dimethyl-3-oxo-2,14-dioxabicyclo[11.3.1]heptadeca-4,8-dien-15-yl]-,(4R)

Latrunculin B, an antimicrobial marine alkaloid, is an actin polymerization inhibitor. Latrunculin B regulates pulmonary vein electrophysiological characteristics and attenuates stretch-induced arrhythmogenesis[1][2]. Antifungal and antiprotozoal activity.

  • CAS Number: 76343-94-7
  • MF: C20H29NO5S
  • MW: 395.51300
  • Catalog: Fungal
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Taribavirin hydrochloride

Taribavirin hydrochloride is an inosine monophosphate dehydrogenase inhibitor, has activity against a wide range of viruses, especially the hepatitis C virus and influenza virus[1]. Taribavirin hydrochloride is a Ribavirin prodrug, is designed to concentrate within the liver to target HCV-infected hepatocytes while minimizing distribution within red blood cells (RBCs) and the development of hemolytic anemia[2].

  • CAS Number: 40372-00-7
  • MF: C8H14ClN5O4
  • MW: 279.68100
  • Catalog: HBV
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Antifungal agent 2

Antifungal agent 2 is a broad-spectrum fungal inhibitor which inhibits growth of pertinent species of Candida, Cryptococcus, and Aspergillus at a concentration as low as 0.5 μg/mL.

  • CAS Number: 2211060-61-4
  • MF: C19H11Br2F3N4O2
  • MW: 544.12
  • Catalog: Fungal
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

RO0335

RO-0335 is a novel and potent diphenylether nonnucleoside reverse transcriptase inhibitor(NNRTI). RO-0335 inhibits Wt HIV-1 with an IC50 of 1.1 nM and retained activity (IC50< 100 nM) against 92% of a large number of NNRTI-resistant clinical isolates[1].

  • CAS Number: 867365-76-2
  • MF: C21H13BrCl2FN3O4S
  • MW: 573.21900
  • Catalog: Reverse Transcriptase
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Mycobactin-IN-1

Mycobactin-IN-1 (compound 44), a pyrazoline analogue, is a mycobactin biosynthesis inhibitor against mycobacteria. Mycobactin-IN-1 binds to salicyl-AMP ligase (MbtA), a key enzyme in the mycobactin biosynthetic pathway[1].

  • CAS Number: 65840-95-1
  • MF: C15H13ClN2O
  • MW: 272.73
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

(3R,4R)-A2-32-01

(3R,4R)-A2-32-01 (compound 2), an anti-virulence drug, is a specific caseinolytic protein proteases (ClpP) inhibitor with an EC50 of 4.5 μM, and shows a tolerable cytotoxicity[1].

  • CAS Number: 1359752-95-6
  • MF: C19H27NO2
  • MW: 301.42
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Nirsevimab

Nirsevimab (MEDI8897) is a recombinant human respiratory syncytial virus (RSV) monoclonal antibody with modified Fc region, which can prolong its half-life. Nirsevimab has an affinity for RSV-B with an Kd value of 1.5 nM. Nirsevimab can be used for RSV research[1][2][3].

  • Density: N/A
  • Boiling Point: N/A
  • Melting Point: N/A
  • Flash Point: N/A

Methenamine hippurate

Methenamine hippurate (Hexamine hippurate) is an orally active urinary antiseptic agent with a wide antibacterial spectrum. Methenamine hippurate is effective against most common urinary tract pathogens[1][2].

  • CAS Number: 5714-73-8
  • MF: C15H21N5O3
  • MW: 319.35900
  • Catalog: Bacterial
  • Density: N/A
  • Boiling Point: 464.1ºC at 760mmHg
  • Melting Point: 89-95ºC
  • Flash Point: 234.5ºC

Lydicamycin

Lydicamycin is an antibiotic isolated from the fermentation broth of an actinomycete strain identified as Streptomyces lydicus. Lydicamycin is active against Gram-positive bacteria and a certain yeast, but inactive against Gram-negative bacteria[1].

  • CAS Number: 133352-27-9
  • MF: C47H74N4O10
  • MW: 855.11
  • Catalog: Bacterial
  • Density: 1.3g/cm3
  • Boiling Point: 1030.3ºC at 760mmHg
  • Melting Point: N/A
  • Flash Point: 576.9ºC