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Pharmacology Collection (#3)

"Exploring the Intricate World of Pharmacology: From Ancient Remedies to Modern Marvels" Step into the fascinating realm of pharmacology

Background imagePharmacology Collection: Assorted pills in a jar C014 / 1200

Assorted pills in a jar C014 / 1200
Assorted pills in a jar. Assorted drugs and food supplement pills, tablets and capsules in a re-sealable jar, along with a vial containing a vaccine

Background imagePharmacology Collection: Sad pill face

Sad pill face. Drug capsules arranged on a plate to represent a sad face

Background imagePharmacology Collection: Assorted pills on a spoon C014 / 1204

Assorted pills on a spoon C014 / 1204
Assorted pills on a spoon. Assorted drugs and food supplement pills, tablets and capsules, on a spoon

Background imagePharmacology Collection: Lomitapide hypercholesterolemia drug F007 / 0160

Lomitapide hypercholesterolemia drug F007 / 0160
Lomitapide hypercholesterolemia drug, molecular model. Lomitapide is used in the treatment of homozygous familial hypercholesterolemia

Background imagePharmacology Collection: Healthcare, conceptual image F006 / 9061

Healthcare, conceptual image F006 / 9061
Healthcare, conceptual image

Background imagePharmacology Collection: Vortioxetine antidepressant drug F007 / 0207

Vortioxetine antidepressant drug F007 / 0207
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Vortioxetine antidepressant drug F007 / 0206

Vortioxetine antidepressant drug F007 / 0206
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Vortioxetine antidepressant drug F007 / 0205

Vortioxetine antidepressant drug F007 / 0205
Vortioxetine antidepressant drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Vemurafenib melanoma drug F007 / 0204

Vemurafenib melanoma drug F007 / 0204
Vemurafenib melanoma drug, molecular model. Vemurafenib is a B-Raf enzyme inhibitor used in the treatment of melanoma skin cancer

Background imagePharmacology Collection: Vemurafenib melanoma drug F007 / 0203

Vemurafenib melanoma drug F007 / 0203
Vemurafenib melanoma drug, molecular model. Vemurafenib is a B-Raf enzyme inhibitor used in the treatment of melanoma skin cancer

Background imagePharmacology Collection: Treprostinil drug, molecular model F007 / 0200

Treprostinil drug, molecular model F007 / 0200
Treprostinil drug, molecular model. Treprostinil is used in the treatment of pulmonary arterial hypertension. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey)

Background imagePharmacology Collection: Treprostinil drug, molecular model F007 / 0199

Treprostinil drug, molecular model F007 / 0199
Treprostinil drug, molecular model. Treprostinil is used in the treatment of pulmonary arterial hypertension. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey)

Background imagePharmacology Collection: Trametinib melanoma cancer drug F007 / 0198

Trametinib melanoma cancer drug F007 / 0198
Trametinib melanoma cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow)

Background imagePharmacology Collection: Trametinib melanoma cancer drug F007 / 0197

Trametinib melanoma cancer drug F007 / 0197
Trametinib melanoma cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow)

Background imagePharmacology Collection: Tofacitinib rheumatoid arthritis drug F007 / 0196

Tofacitinib rheumatoid arthritis drug F007 / 0196
Tofacitinib rheumatoid arthritis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Tofacitinib rheumatoid arthritis drug F007 / 0195

Tofacitinib rheumatoid arthritis drug F007 / 0195
Tofacitinib rheumatoid arthritis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Teriflunomide multiple sclerosis drug F007 / 0194

Teriflunomide multiple sclerosis drug F007 / 0194
Teriflunomide multiple sclerosis drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imagePharmacology Collection: Sumatriptan migraine headache drug F007 / 0192

Sumatriptan migraine headache drug F007 / 0192
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Sumatriptan migraine headache drug F007 / 0190

Sumatriptan migraine headache drug F007 / 0190
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Sumatriptan migraine headache drug F007 / 0191

Sumatriptan migraine headache drug F007 / 0191
Sumatriptan migraine headache drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), sulfur (yellow) and nitrogen (blue)

Background imagePharmacology Collection: Riociguat pulmonary hypertension drug F007 / 0189

Riociguat pulmonary hypertension drug F007 / 0189
Riociguat pulmonary hypertension drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imagePharmacology Collection: Riociguat pulmonary hypertension drug F007 / 0188

Riociguat pulmonary hypertension drug F007 / 0188
Riociguat pulmonary hypertension drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), fluorine (dark yellow) and nitrogen (blue)

Background imagePharmacology Collection: Regorafenib colorectal cancer drug F007 / 0187

Regorafenib colorectal cancer drug F007 / 0187
Regorafenib colorectal cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), chlorine (green)

Background imagePharmacology Collection: Regorafenib colorectal cancer drug F007 / 0186

Regorafenib colorectal cancer drug F007 / 0186
Regorafenib colorectal cancer drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red), chlorine (green)

Background imagePharmacology Collection: Prostaglandin I2 drug molecule F007 / 0185

Prostaglandin I2 drug molecule F007 / 0185
Prostaglandin I2 (PGI2, epoprostenol) pulmonary hypertension drug, molecular model. PGI2 is an eicosanoid drug that inhibits platelet activation and causes vasodilation

Background imagePharmacology Collection: Prostaglandin I2 drug molecule F007 / 0184

Prostaglandin I2 drug molecule F007 / 0184
Prostaglandin I2 (PGI2, epoprostenol) pulmonary hypertension drug, molecular model. PGI2 is an eicosanoid drug that inhibits platelet activation and causes vasodilation

Background imagePharmacology Collection: Prostaglandin E1 drug molecule F007 / 0179

Prostaglandin E1 drug molecule F007 / 0179
Prostaglandin E1 (alprostadil, PGE1) erectile dysfunction drug, molecular model. PGE1 is a prostaglandin used in the treatment of erectile dysfunction

Background imagePharmacology Collection: Prostaglandin E1 drug molecule F007 / 0178

Prostaglandin E1 drug molecule F007 / 0178
Prostaglandin E1 (alprostadil, PGE1) erectile dysfunction drug, molecular model. PGE1 is a prostaglandin used in the treatment of erectile dysfunction

Background imagePharmacology Collection: Ponatinib leukemia drug F007 / 0176

Ponatinib leukemia drug F007 / 0176
Ponatinib leukemia drug, molecular model. Ponatinib is approved for the treatment of chronic myelogenous leukemia. Atoms are represented as spheres and are colour-coded: hydrogen (white)

Background imagePharmacology Collection: Pomalidomide cancer drug F007 / 0175

Pomalidomide cancer drug F007 / 0175
Pomalidomide cancer drug, molecular model. Pomalidomide is a derivative of the notorious drug thalidomide and inhibits angiogenesis, the formation of new blood vessels

Background imagePharmacology Collection: Pomalidomide cancer drug F007 / 0174

Pomalidomide cancer drug F007 / 0174
Pomalidomide cancer drug, molecular model. Pomalidomide is a derivative of the notorious drug thalidomide and inhibits angiogenesis, the formation of new blood vessels

Background imagePharmacology Collection: Pomalidomide cancer drug F007 / 0173

Pomalidomide cancer drug F007 / 0173
Pomalidomide cancer drug, molecular model. Pomalidomide is a derivative of the notorious drug thalidomide and inhibits angiogenesis, the formation of new blood vessels

Background imagePharmacology Collection: Perampanel antiepileptic drug F007 / 0172

Perampanel antiepileptic drug F007 / 0172
Perampanel antiepileptic drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Perampanel antiepileptic drug F007 / 0171

Perampanel antiepileptic drug F007 / 0171
Perampanel antiepileptic drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Perampanel antiepileptic drug F007 / 0170

Perampanel antiepileptic drug F007 / 0170
Perampanel antiepileptic drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Ocriplasmin vitreomacular adhesion drug F007 / 0165

Ocriplasmin vitreomacular adhesion drug F007 / 0165
Ocriplasmin (microplasmin) vitreomacular adhesion drug, molecular model. Ocriplasmin is a protease enzyme that dissolves the proteins holding the eye vitreous and macula together

Background imagePharmacology Collection: Omacetaxine mepesuccinate leukemia drug F007 / 0169

Omacetaxine mepesuccinate leukemia drug F007 / 0169
Omacetaxine mepesuccinate leukemia drug, molecular model. This drug inhibits protein synthesis and is used in the treatment of chronic myelogenous leukemia (CML)

Background imagePharmacology Collection: Loxapine schizophrenia drug F007 / 0164

Loxapine schizophrenia drug F007 / 0164
Loxapine schizophrenia drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), chlorine (green), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Loxapine schizophrenia drug F007 / 0163

Loxapine schizophrenia drug F007 / 0163
Loxapine schizophrenia drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), chlorine (green), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Loxapine schizophrenia drug F007 / 0162

Loxapine schizophrenia drug F007 / 0162
Loxapine schizophrenia drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), chlorine (green), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Lomitapide hypercholesterolemia drug F007 / 0161

Lomitapide hypercholesterolemia drug F007 / 0161
Lomitapide hypercholesterolemia drug, molecular model. Lomitapide is used in the treatment of homozygous familial hypercholesterolemia

Background imagePharmacology Collection: Lixivaptan hyponatremia drug F007 / 0159

Lixivaptan hyponatremia drug F007 / 0159
Lixivaptan hyponatremia drug, molecular model. Lixivaptan blocks vasopressin from binding the vasopressin 2 receptor, and is used to treat heart failure in hyponatremia patients

Background imagePharmacology Collection: Lixivaptan hyponatremia drug F007 / 0158

Lixivaptan hyponatremia drug F007 / 0158
Lixivaptan hyponatremia drug, molecular model. Lixivaptan blocks vasopressin from binding the vasopressin 2 receptor, and is used to treat heart failure in hyponatremia patients

Background imagePharmacology Collection: Linaclotide irritable bowel syndrome drug F007 / 0156

Linaclotide irritable bowel syndrome drug F007 / 0156
Linaclotide irritable bowel syndrome drug, molecular model. Linaclotide is used for the treatment of abdominal pain in irritable bowel syndrome patients

Background imagePharmacology Collection: Levodopa Parkinsons disease drug

Levodopa Parkinsons disease drug
Levodopa (L-DOPA) Parkinsons disease drug, molecular model. L-DOPA is a precursor of the catecholamine neurotransmitters dopamine

Background imagePharmacology Collection: Hydrocodone opioid analgesic drug F007 / 0152

Hydrocodone opioid analgesic drug F007 / 0152
Hydrocodone opioid analgesic drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Hydrocodone opioid analgesic drug F007 / 0151

Hydrocodone opioid analgesic drug F007 / 0151
Hydrocodone opioid analgesic drug, molecular model. Atoms are represented as spheres and are colour-coded: hydrogen (white), carbon (grey), oxygen (red) and nitrogen (blue)

Background imagePharmacology Collection: Hydrocodone opioid analgesic drug F007 / 0150

Hydrocodone opioid analgesic drug F007 / 0150
Hydrocodone opioid analgesic 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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"Exploring the Intricate World of Pharmacology: From Ancient Remedies to Modern Marvels" Step into the fascinating realm of pharmacology, where science and medicine intertwine to unlock the secrets of healing. Delve deep into this captivating field as we unravel its diverse facets through a series of intriguing hints. In our journey, we encounter an anaesthetic inhibiting an ion channel (C015 / 6718), showcasing how pharmacologists manipulate molecular pathways to induce pain relief during medical procedures. We also stumble upon "The Pharmacy, " a mesmerizing artwork from 1912 that immortalizes the essence of pharmaceutical practice. Immerse yourself in the world of immunoglobulin G antibody molecule (F007 / 9894), marveling at its role in bolstering our immune system against harmful invaders. Witness the impact of Ventolin asthma drug (C018 / 1165) on millions worldwide, providing respite for those battling respiratory ailments. But let's not forget about caffeine – that beloved stimulant found in coffee and tea – whose drug molecule captivates us with its intricate structure. Journey back in time to Persian pharmacy artwork from the 13th century, reminding us that ancient civilizations too sought solace in medicinal remedies. Prepare for a dose of humor as we explore satirical artworks depicting doctors writing prescriptions, shedding light on society's relationship with medication. Peer through a microscope at caffeine crystals' enchanting beauty under a light micrograph, revealing nature's artistry at microscopic levels. Witness Januvia diabetes drug molecule's transformative potential for individuals grappling with this metabolic disorder. Discover praziquantel parasite drug and its remarkable ability to combat parasitic infections plaguing vulnerable populations around the globe. Finally, meet diamorphine hydrochloride (C018 / 1170), commonly known as heroin when used illicitly but serving as a potent painkiller when administered responsibly by healthcare professionals.