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Molecular Model Collection (page 5)

Molecular models offer a glimpse into the intricate world of science and medicine, revealing the hidden secrets of life at a microscopic level

Background imageMolecular Model Collection: DNA molecule, artwork F008 / 3371

DNA molecule, artwork F008 / 3371
DNA molecule and chromosome, artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3355

Buckyball, artwork F008 / 3355
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3347

Buckyball, artwork F008 / 3347
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecules, artwork F008 / 3372

DNA molecules, artwork F008 / 3372
DNA molecules, artwork

Background imageMolecular Model Collection: Buckyballs, artwork F008 / 3359

Buckyballs, artwork F008 / 3359
Buckyballs, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3344

Buckyball, artwork F008 / 3344
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecule, artwork F008 / 2034

DNA molecule, artwork F008 / 2034
DNA molecule, computer artwork

Background imageMolecular Model Collection: DNA molecule, artwork F008 / 3370

DNA molecule, artwork F008 / 3370
DNA molecule, artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3358

Buckyball, artwork F008 / 3358
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecules, artwork F008 / 3264

DNA molecules, artwork F008 / 3264
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageMolecular Model Collection: Buckytube, artwork F008 / 3352

Buckytube, artwork F008 / 3352
Buckytube, computer artwork

Background imageMolecular Model Collection: Nanomedicine, conceptual artwork F008 / 3361

Nanomedicine, conceptual artwork F008 / 3361
Nanomedicine, conceptual computer artwork

Background imageMolecular Model Collection: Nanomedicine, conceptual artwork F008 / 3360

Nanomedicine, conceptual artwork F008 / 3360
Nanomedicine, conceptual computer artwork

Background imageMolecular Model Collection: Buckyballs, artwork F008 / 3349

Buckyballs, artwork F008 / 3349
Buckyballs, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3354

Buckyball, artwork F008 / 3354
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckytube, artwork F008 / 3353

Buckytube, artwork F008 / 3353
Buckytube, computer artwork

Background imageMolecular Model Collection: Nanomedicine, conceptual artwork F008 / 3362

Nanomedicine, conceptual artwork F008 / 3362
Nanomedicine, conceptual computer artwork

Background imageMolecular Model Collection: Human genome, conceptual artwork F008 / 3292

Human genome, conceptual artwork F008 / 3292
Human genome, conceptual computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3346

Buckyball, artwork F008 / 3346
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecule, artwork F008 / 2036

DNA molecule, artwork F008 / 2036
DNA molecule, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3342

Buckyball, artwork F008 / 3342
Buckyball, artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3345

Buckyball, artwork F008 / 3345
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3348

Buckyball, artwork F008 / 3348
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3343

Buckyball, artwork F008 / 3343
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3351

Buckyball, artwork F008 / 3351
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyballs, artwork F008 / 3350

Buckyballs, artwork F008 / 3350
Buckyballs, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3356

Buckyball, artwork F008 / 3356
Buckyball, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3341

Buckyball, artwork F008 / 3341
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecules, artwork F008 / 3266

DNA molecules, artwork F008 / 3266
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageMolecular Model Collection: Buckyball, artwork F008 / 3357

Buckyball, artwork F008 / 3357
Buckyball, computer artwork

Background imageMolecular Model Collection: DNA molecules, artwork F008 / 3265

DNA molecules, artwork F008 / 3265
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageMolecular Model Collection: DNA molecule, artwork F008 / 2040

DNA molecule, artwork F008 / 2040
DNA molecule, computer artwork

Background imageMolecular Model Collection: Human genome, conceptual artwork F008 / 3302

Human genome, conceptual artwork F008 / 3302
Human genome, conceptual computer artwork

Background imageMolecular Model Collection: Rosuvastatin cholesterol-lowering drug

Rosuvastatin cholesterol-lowering drug, molecular model. This is statin class works by blocking the effects of the enzyme HMG-CoA reductase

Background imageMolecular Model Collection: Insulin A chain molecule

Insulin A chain molecule
Insulin A chain. Computer model of an A chain of human insulin that has been synthesized on a crosslinked polystyrene solid support. This is an example of solid phase peptide synthesis (SPPS)

Background imageMolecular Model Collection: Obesity drug molecule

Obesity drug molecule. Molecular models of phentermine (left) and topiramate (right). These two drugs are combined to the obesity drug Qsymia (formerly Qnexa)

Background imageMolecular Model Collection: Lorcaserin obesity drug molecule

Lorcaserin obesity drug molecule
Lorcaserin obesity drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), nitrogen (blue) and chlorine (green)

Background imageMolecular Model Collection: MicroRNA precursor molecule

MicroRNA precursor molecule
MicroRNA (miRNA) precursor, molecular model. This miRNA (micro ribonucleic acid) precursor will be further processed into an even shorter mature miRNA oligonucleotide that can regulate the expression

Background imageMolecular Model Collection: Diclofenac anti-inflammatory drug

Diclofenac anti-inflammatory drug, molecular model. This is a non-steroidal anti-inflammatory drug (NSAID) that is used in the treatment of pain and inflammation

Background imageMolecular Model Collection: Domperidone anti-sickness drug molecule

Domperidone anti-sickness drug molecule
Domperidone anti-sickness drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), nitrogen (blue) and chlorine (green)

Background imageMolecular Model Collection: Fenofibrate cholesterol drug molecule

Fenofibrate cholesterol drug molecule. This drug reduces levels of low-density lipoprotein (LDL, bad cholesterol) and increases the levels of high-density lipoprotein (HDL, good cholesterol)

Background imageMolecular Model Collection: Abiraterone prostate cancer drug molecule

Abiraterone prostate cancer drug molecule
Abiraterone prostate cancer drug, molecular model. Abiraterone blocks the production of testosterone by inhibiting an enzyme involved in its formation. This leads to the death of the cancerous cells

Background imageMolecular Model Collection: Minocycline antibiotic molecule

Minocycline antibiotic molecule
Minocycline antibiotic, molecular model. Minocycline is a tetracycline class antibiotic. It is commonly used to treat acne vulgaris

Background imageMolecular Model Collection: Clopidogrel anti-clotting drug molecule F005 / 6720

Clopidogrel anti-clotting drug molecule F005 / 6720
Clopidogrel anti-clotting drug molecule. This drug (brand name Plavix) is a an antiplatelet drug that inhibits thrombus (blood clot) formation

Background imageMolecular Model Collection: Varenicline smoking cessation drug

Varenicline smoking cessation drug, molecular model. This drug is a partial agonist of the nicotine receptor. Atoms are represented as spheres and are colour-coded: hydrogen (white)

Background imageMolecular Model Collection: MicroRNA molecule

MicroRNA molecule
MicroRNA (miRNA), molecular model. This miRNA (micro ribonucleic acid) oligonucleotide regulates the expression of a target gene

Background imageMolecular Model Collection: Sibutramine anti-obesity drug molecule

Sibutramine anti-obesity drug molecule
Sibutramine anti-obesity drug, molecular model. This drug was withdrawn from the market in 2010 due to safety concerns. Atoms are represented as spheres and are colour-coded: hydrogen (white)

Background imageMolecular Model Collection: Finasteride hair loss drug molecule

Finasteride hair loss drug molecule
Finasteride hair loss drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)




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Molecular models offer a glimpse into the intricate world of science and medicine, revealing the hidden secrets of life at a microscopic level. In one captivating image, an anaesthetic molecule is seen inhibiting an ion channel C015/6718, unlocking new possibilities for pain management. Another striking model showcases the complex structure of a double-stranded RNA molecule, shedding light on its crucial role in gene regulation and viral defense mechanisms. Delving deeper into genetics, we explore DNA transcription through a mesmerizing molecular model that unravels the intricate process of genetic information transfer. The spotlight then shifts to Immunoglobulin G antibody molecules - powerful defenders against pathogens - as their elegant structures are unveiled with precision. From F007/9894 variant to artwork-inspired representations, these models showcase the diversity within our immune system's arsenal. Venturing beyond traditional boundaries, we encounter 2C-B psychedelic drug's molecular model – offering insights into its unique chemical composition and potential therapeutic applications. Art meets science once again as we marvel at an artistic interpretation showcasing secondary structures of proteins; highlighting their vital roles in cellular functions. Inorganic wonders take center stage with the perovskite crystal structure model – unveiling its remarkable properties that revolutionize solar energy technology. Returning to genetics, we witness a computer-generated DNA molecule model providing us with invaluable insights into our blueprint for life. The complexity continues with the intricately designed nucleosome molecule – unraveling how DNA is packaged within our cells' nucleus while maintaining accessibility for essential processes. Finally, awe-inspiring artwork captures antibodies' beauty and significance as they stand tall against invading antigens. These captivating molecular models serve as windows into worlds unseen by the naked eye; bridging gaps between scientific exploration and artistic expression. They inspire curiosity and ignite imagination while propelling breakthroughs in fields ranging from medicine to materials science.