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Biological protein and molecule, 3d rendering. 3D illustration.
A ball and stick model of a molecule of Human Interferon. Interferons are proteins important in the working of the immune system and are produced in large numbers in the presence of viruses, bacteria, tumors and parasites.  Interferons are used in drugs to combat cancer, multiple sclerosis, hepatitis B and C and other diseases. Isolated on white.
alien structure made of white spheres and flowing glass liquid, molecular, hi-tech concept, abstract design element
3d Rendering Molecular Structure,Ozone,Hydrogen and oxygen
3D cartoon and Gaussian surface models, PDB 6h5i, white background
Inside protein molecule
3d rendering of benzene molecules conjugated gold (Au) nanoparticles (NPs) on the black background
Science or medical concept. Molecular structure on black background
Molecule with biology and chemical concept, 3d rendering. Digital drawing.
Molecular structure of Methane CH4
Ambroxol molecule structure. Three dimensional model render
3D rendered microscopic molecular model
Yohimbine(quebrachine), is an indole alkaloid. C21H26N2O3. Chemical structure model: Ball and Stick + Balls + Space-Filling. 3D illustration.
A molecular model of the flavonoid Quercetin.  An antioxidant and anti-inflamatory, it is used as a nutritional suplement.  It is commonly found in many fruits and vegetables and is a significant chemical component of tea.  Isolated on white.
White spheres surrounded blue water liquid. Futuristic, water splash, abstract 3D illustration
Trippy Abstract Shapes on white background
Science background with molecule or atom
Structural model of Benzene molecule
Omega-3 fatty acids, docosahexaenoic acid (DHA) molecule with oil background 3d rendering
Model of DNA Base Pair adenine (A) and thymine (T)\n\nFind more molecules in the Lightbox [url=http://www.istockphoto.com/search/lightbox/7500191][i] 'World of Molecules'[/i][/url], or contact me on customized design/rendering of any molecules in 3D (see some examples below). \n\n[img]http://www.drugmodel.com/360/superglassy900.jpg[/img] \n[img]http://www.drugmodel.com/360/capsule900.jpg[/img] \n[img]http://www.drugmodel.com/360/glassy900.jpg[/img] \n[img]http://www.drugmodel.com/360/heart900.jpg[/img] \n[img]http://www.drugmodel.com/360/viruskiller900.jpg[/img] \n[img]http://www.drugmodel.com/360/mesh900.jpg[/img] \n[img]http://www.drugmodel.com/360/cartoon900.jpg[/img] \n[img]http://www.drugmodel.com/360/photo900.jpg[/img] \n[img]http://www.drugmodel.com/360/ovoid900.jpg[/img]  \n[img]http://www.drugmodel.com/360/swirlcone900.jpg[/img] \n[img]http://www.drugmodel.com/360/super900.jpg[/img] \n[img]http://www.drugmodel.com/360/glowing900.jpg[/img]
Bacterial multidrug efflux pumps (E-CmeB) expel antibiotics  from inside the bacterium (bottom): ciprofloxacin (yellow), chloramphenicol (violet),  ampicillin (red).
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Biological protein and molecule, 3d rendering. 3D illustration.
3D rendering blue transparent icon
Abstract molecular structure with glass material. Isolated on white background. 3d render
Molecular structure of Chloroform CHCl3
Proliferating cell nuclear antigen (PCNA) is a DNA clamp that acts as a processivity factor for DNA polymerase δ in eukaryotic cells and is essential for replication. PCNA is a homotrimer and achieves its processivity by encircling the DNA, where it acts as a scaffold to recruit proteins involved in DNA replication, DNA repair, chromatin remodeling and epigenetics. 3D cartoon and Gaussian surface models, chain instance color scheme, based on PDB 3wgw, white background.
Crystal Lattice
A 3D rendering of a polymer chain. The chain is made up of individual monomers, which are linked together by chemical bonds
A model of a molecule of arginine, an amino acid. Amino acids are the building blocks of proteins and have many functions in metabolism. In particular, Arginine has an important function in the immune system, wound healing and cell division.
Free Images: "bestof:Triheptanoin 3D spacefill.png Space-filling model of the triheptanoin molecule the triglyceride of heptanoic acid Colour code 505050  Carbon  C  black<br>"
aminomethylcyclopropane-cis-model-835640.png
crown-5-3d-spacefill-ether-model-835896.png
crown-4-3d-spacefill-ether-model-835872.png
retinal-cis-3d-spacefill-model-835851.png
bapta-spacefill-model-molecule-895125.png
tetrahydrocannabinol-hydroxy-thc-3d-835853.png
biotin-spacefill-b-vitamin-model-910243.png
azelaic-acid-dicarboxylic-spacefill-884359.png
annulene-cyclotetradecaheptaene-835643.png
amps-sulfonic-acid-acrylamido-876070.png
pyran-heterocycle-spacefill-ball-835809.png
tetramethyluronium-trifluoromethyl-835794.png
octene-spacefill-alkene-ball-model-835813.png
dioxin-heterocycle-spacefill-ball-835807.png
chlorofluorocarbon-fluoroethane-835796.png
aminomethylcyclopropane-cis-model-835639.png
Perxenic-acid-3D-vdW.svg
Xenic-acid-3D-vdW.svg
Bromous-acid-3D-vdW.svg
Thiocarbonic-acid-3D-vdw.svg
Xenic-acid-3D-balls.svg
Hydrogen-sulfide-3D-vdw.svg
Bromous-acid-3D-balls.svg
Triheptanoin 3D spacefill.png
Triheptanoin 3D ball.png
Triformin 3D spacefill.png
Triacetin 3D spacefill.png
Tributyrin 3D spacefill.png
Caprylidene 3D spacefill.png
Triolein 3D spacefill.png
Tristearin 3D spacefill.png
Benzilic-acid-3D-spacefill.png
Fenamic acid 3D spacefill.png
Glyoxylic acid 3D spacefill.png
Penicillic-acid-3D-spacefill.png
Geranic acid 3D spacefill.png
Methylboronic-acid-3D-spacefill.png
Iocarmic-acid-3D-spacefill.png
Ioglicic-acid-3D-spacefill.png
Ioxitalamic-acid-3D-spacefill.png
Iotalamic-acid-3D-spacefill.png
Metrizoic-acid-3D-spacefill.png
Acetonedicarboxylic-acid-3D-spacefill.png
Deoxycholic acid 3D spacefill.png
Perfluorobutyric-acid-3D-spacefill.png
Perfluorobenzenesulfonic-acid-3D-spacefill.png
Croconic-acid-3D-spacefill.png
Methylarsonic-acid-3D-spacefill.png
Pyrazinoic acid 3D spacefill.png
Ipodic-acid-3D-spacefill.png
Diatrizoic-acid-3D-spacefill.png
Acetrizoic-acid-3D-spacefill.png
Euchroic-acid-3D-spacefill.png
Aristolochic-acid-3D-spacefill.png
Picolinic-acid-3D-spacefill.png
Isonicotinic-acid-3D-spacefill.png
Dihydrofolic-acid-3D-spacefill.png
Tetrahydrofolic-acid-3D-spacefill.png
Aurintricarboxylic-acid-3D-spacefill.png
M-Anisic-acid-3D-spacefill.png
O-Anisic-acid-3D-spacefill.png
Pivalamide-3D-spacefill.png
Trichloroisocyanuric-acid-3D-spacefill.png
Trimethylsilyl-propanoic-acid-3D-spacefill.png
Bromopyruvic acid 3D spacefill.png
Camphoric acid 3D spacefill.png
Crotonic acid 3D spacefill.png
Isocrotonic acid 3D spacefill.png
Chloroformic acid 3D spacefill.png
Thioacetic acid 3D spacefill.png
Cinnamic acid 3D spacefill.png
2-Ethoxybenzoic acid 3D spacefill.png
Oxalic acid 3D spacefill.png
Malonic acid 3D spacefill.png
Succinic acid 3D spacefill.png
Glutaric acid 3D spacefill.png
Adipic acid 3D spacefill.png
Pimelic acid 3D spacefill.png
Suberic acid 3D spacefill.png
Azelaic acid 3D spacefill.png
Sebacic acid 3D spacefill.png
Gentisic acid 3D spacefill.png
Ethylenetetracarboxylic-acid-3D-spacefill.png
Perfluorooctanesulfonic-acid-3D-spacefill.png
Pantetheine-3D-spacefill.png
Phenylsulfinic-acid-3D-spacefill.png
Dichloroisocyanuric-acid-3D-spacefill.png
Isobutyric-acid-3D-spacefill.png
2,6-Pyridinedicarbothioic acid 3D spacefill.png
Retinoic acid 3D spacefill.png
Cyclamic acid 3D spacefill.png
Ellagic acid 3D spacefill.png
Isocyanic acid 3D spacefill.png
Pantothenic-acid-3D-spacefill.png
Cacodylic-acid-3D-spacefill.png
Homosalate-3D-spacefill.png
Mellitic-acid-3D-spacefill.png
Glutarimide-3D-spacefill.png
Cyanic acid 3D spacefill.png
Glycolic acid 3D spacefill.png
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