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Molecular Structure Collection (page 2)

"Molecular Structure: Unlocking the Secrets of Life's Building Blocks" From anaesthetics inhibiting ion channels to antidepressant molecules

Background imageMolecular Structure Collection: Sindbis virus capsid protein

Sindbis virus capsid protein, molecular model

Background imageMolecular Structure Collection: Fluticasone asthma drug molecule

Fluticasone asthma drug molecule
Fluticasone, molecular model. This corticosteroid is used to treat asthma attacks. Atoms are represented as spheres and are colour-coded: carbon (grey), hydrogen (white) oxygen (red)

Background imageMolecular Structure Collection: Tobacco necrosis virus research, artwork

Tobacco necrosis virus research, artwork
Tobacco necrosis virus research, computer artwork

Background imageMolecular Structure Collection: Parathyroid hormone molecule

Parathyroid hormone molecule. Computer model showing the structure of parathyroid hormone (PTH), or parathormone. Atoms are colour-coded (carbon: dark grey, hydrogen: light grey, oxygen: red)

Background imageMolecular Structure Collection: Ghrelin hormone molecule

Ghrelin hormone molecule. Computer model showing the crystal structure of the human hormone ghrelin. The crystal structure consists of both the secondary structure

Background imageMolecular Structure Collection: Molecular model of Formic Acid, digital illustration

Molecular model of Formic Acid, digital illustration

Background imageMolecular Structure Collection: Molecular model of Hydrogen Sulphide, digital illustration

Molecular model of Hydrogen Sulphide, digital illustration

Background imageMolecular Structure Collection: Molecular model of Ammonia, digital illustration

Molecular model of Ammonia, digital illustration

Background imageMolecular Structure Collection: Three dimensional digital illustration of molecular structure of Ozone

Three dimensional digital illustration of molecular structure of Ozone

Background imageMolecular Structure Collection: Digital illustration of protein development within cells

Digital illustration of protein development within cells

Background imageMolecular Structure Collection: Illustration of water molcules

Illustration of water molcules

Background imageMolecular Structure Collection: Digital illustration of blue atom on white background

Digital illustration of blue atom on white background

Background imageMolecular Structure Collection: Buckyballs floating in interstellar space near a region of current star-formation

Buckyballs floating in interstellar space near a region of current star-formation
This artists conception shows buckyballs floating in interstellar space, near a region of current star-formation. Buckyballs are the largest molecule ever discovered floating between the stars

Background imageMolecular Structure Collection: Artists concept showing carbon balls ejecting out from a dying white star in a planetary

Artists concept showing carbon balls ejecting out from a dying white star in a planetary
Artists concept showing carbon balls coming out from the type of object where they were discovered, a dying star and the material it sheds, known as a planetary nebula

Background imageMolecular Structure Collection: Artists concept of a quest to find new forms of energy

Artists concept of a quest to find new forms of energy
No matter how advanced mankind becomes, the quest to find new forms of energy is always given a priority

Background imageMolecular Structure Collection: An android learns to use the power of the atom

An android learns to use the power of the atom
When mankind learned how to use the power of the atom, science fiction became science fact. As we progress into the 21st century, who knows what other ways this discovery will be used

Background imageMolecular Structure Collection: Conceptual image of polyomavirus

Conceptual image of polyomavirus

Background imageMolecular Structure Collection: Microscopic view of DNA binding

Microscopic view of DNA binding

Background imageMolecular Structure Collection: Conceptual image of enterokinase

Conceptual image of enterokinase. Also known as enteropeptidase, it is an enzyme produced by cells of the duodenum and involved in human and animal digestion

Background imageMolecular Structure Collection: Microscopic view of DNA

Microscopic view of DNA

Background imageMolecular Structure Collection: Conceptual image of a ubiquitous virus

Conceptual image of a ubiquitous virus. A ubiquitous virus is contagious in early childhood through the respiratory tract

Background imageMolecular Structure Collection: Conceptual image of DNA

Conceptual image of DNA

Background imageMolecular Structure Collection: Cluster of DNA strands

Cluster of DNA strands of human DNA or deoxyribonucleic acid

Background imageMolecular Structure Collection: Model of a glucose molecule, showing the atomic structure of Oxygen

Model of a glucose molecule, showing the atomic structure of Oxygen, Carbon and Hydrogen involved in photosynthesis

Background imageMolecular Structure Collection: Model of Ethanol (C2H5OH) molecule, close-up

Model of Ethanol (C2H5OH) molecule, close-up

Background imageMolecular Structure Collection: Molecular structure of Vitamin D

Molecular structure of Vitamin D

Background imageMolecular Structure Collection: Space-filling Models showing the Molecules in Decomposition of Sugar to Ethanol

Space-filling Models showing the Molecules in Decomposition of Sugar to Ethanol and Carbon Dioxide during Fermentation

Background imageMolecular Structure Collection: Lattice of sodium and chlorine atoms, model

Lattice of sodium and chlorine atoms, model

Background imageMolecular Structure Collection: Ball and Stick Model showing arrangement of Carbon Atoms in Diamond

Ball and Stick Model showing arrangement of Carbon Atoms in Diamond

Background imageMolecular Structure Collection: DNA molecule, artwork C017 / 7217

DNA molecule, artwork C017 / 7217
DNA molecule. Computer artwork showing a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageMolecular Structure Collection: DNA molecule, artwork C017 / 0616

DNA molecule, artwork C017 / 0616
DNA molecule. Computer artwork looking along the interior of a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageMolecular Structure Collection: DNA molecule, artwork C017 / 0615

DNA molecule, artwork C017 / 0615
DNA molecule. Computer artwork looking along the interior of a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageMolecular Structure Collection: DNA molecule, artwork C017 / 0617

DNA molecule, artwork C017 / 0617
DNA molecule. Computer artwork looking along the interior of a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageMolecular Structure Collection: DNA components, artwork C017 / 7350

DNA components, artwork C017 / 7350
DNA components. Computer artwork showing the structure of the two molecules that make up the backbone of DNA (deoxyribonucleic acid), phosphate (left) and deoxyribose (right)

Background imageMolecular Structure Collection: Diamond structure, artwork C017 / 7074

Diamond structure, artwork C017 / 7074
Diamond structure. Computer artwork of a model representing the molecular structure of diamond, a form of the element carbon. Carbon atoms are shown as gemstones, linked by rigid bonds

Background imageMolecular Structure Collection: DNA molecule, artwork F007 / 4200

DNA molecule, artwork F007 / 4200
DNA molecule, computer artwork

Background imageMolecular Structure Collection: DNA molecule, artwork F007 / 4196

DNA molecule, artwork F007 / 4196
DNA molecule, computer artwork

Background imageMolecular Structure Collection: DNA molecule, artwork F007 / 4203

DNA molecule, artwork F007 / 4203
DNA molecule, computer artwork

Background imageMolecular Structure Collection: DNA molecule, artwork F007 / 4207

DNA molecule, artwork F007 / 4207
DNA molecule, computer artwork

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7088

Circular DNA molecule, artwork F006 / 7088
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7072

Circular DNA molecule, artwork F006 / 7072
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7095

Circular DNA molecule, artwork F006 / 7095
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7086

Circular DNA molecule, artwork F006 / 7086
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7083

Circular DNA molecule, artwork F006 / 7083
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: Circular DNA molecule, artwork F006 / 7084

Circular DNA molecule, artwork F006 / 7084
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageMolecular Structure Collection: DNA molecule F007 / 6423

DNA molecule F007 / 6423
DNA (deoxyribonucleic acid) molecule



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"Molecular Structure: Unlocking the Secrets of Life's Building Blocks" From anaesthetics inhibiting ion channels to antidepressant molecules, the intricate world holds endless wonders. The C015 / 6718 anaesthetic molecule delicately interacts with ion channels, altering their function and providing relief from pain. Meanwhile, Amitriptyline, an antidepressant molecule, works its magic by modulating neurotransmitters in our brains. In the realm of immunity, Immunoglobulin G antibody F007 / 9894 stands tall as a defender against pathogens. Its unique structure allows it to recognize and neutralize foreign invaders effectively. On another front, DNA artwork showcases the elegance and complexity that underlies all life forms on Earth. Creatine amino acid molecule fuels our muscles during intense physical activities while nanotube technology revolutionizes various industries with its exceptional properties. These tiny tubes hold immense potential for advancements in medicine and materials science alike. Zinc fingers bound to a DNA strand demonstrate how proteins can precisely interact with genetic material. This interaction plays a crucial role in gene regulation and expression. Carbon nanotubes take center stage once again as they exhibit remarkable strength and conductivity at the nano-scale level. Oxytocin neurotransmitter molecule reminds us of love's powerful influence on human connections—its presence promotes bonding between individuals. Manganese superoxide dismutase enzyme F006 / 9423 safeguards our cells by combating harmful free radicals that contribute to aging and disease. Even viruses have their own molecular structures; SARS coronavirus protein represents one such example—a key player in viral replication within host cells. Conceptual artwork further explores nanotube technology's limitless possibilities—the fusion of imagination and scientific innovation knows no bounds here. As we delve deeper into understanding molecular structures, we unravel nature's blueprint for life itself—one atom at a time. These captivating glimpses into the microscopic world remind us of both the fragility and resilience found within the building blocks of existence.