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Recent Advances in the Biological Investigation of Organometallic Platinum-Group Metal (Ir, Ru, Rh, Os, Pd, Pt) Complexes as Antimalarial Agents
بواسطة
Smith, Gregory S
, Mbaba, Mziyanda
, Golding, Taryn M
في
Amines - chemistry
/ Aminoquinolines - chemistry
/ Animals
/ Antimalarials - pharmacology
/ Benzimidazoles - chemistry
/ bioorganometallic chemistry
/ Coordination Complexes - chemistry
/ Coordination Complexes - pharmacology
/ Ferrous Compounds - chemistry
/ HEK293 Cells
/ Humans
/ Imidazoles - chemistry
/ Iridium - chemistry
/ Ligands
/ malaria
/ Malaria - drug therapy
/ mechanism of action
/ Metallocenes - chemistry
/ Molecular Structure
/ Organometallic Compounds - chemistry
/ Organometallic Compounds - pharmacology
/ Osmium - chemistry
/ Palladium - chemistry
/ Plasmodium falciparum
/ Platinum - chemistry
/ Platinum - pharmacology
/ platinum-group metals
/ Quinolines - chemistry
/ Review
/ Rhodium - chemistry
/ Ruthenium - chemistry
/ Salicylates - chemistry
/ Silanes - chemistry
/ Tamoxifen - chemistry
/ Thiosemicarbazones - chemistry
2020
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Recent Advances in the Biological Investigation of Organometallic Platinum-Group Metal (Ir, Ru, Rh, Os, Pd, Pt) Complexes as Antimalarial Agents
بواسطة
Smith, Gregory S
, Mbaba, Mziyanda
, Golding, Taryn M
في
Amines - chemistry
/ Aminoquinolines - chemistry
/ Animals
/ Antimalarials - pharmacology
/ Benzimidazoles - chemistry
/ bioorganometallic chemistry
/ Coordination Complexes - chemistry
/ Coordination Complexes - pharmacology
/ Ferrous Compounds - chemistry
/ HEK293 Cells
/ Humans
/ Imidazoles - chemistry
/ Iridium - chemistry
/ Ligands
/ malaria
/ Malaria - drug therapy
/ mechanism of action
/ Metallocenes - chemistry
/ Molecular Structure
/ Organometallic Compounds - chemistry
/ Organometallic Compounds - pharmacology
/ Osmium - chemistry
/ Palladium - chemistry
/ Plasmodium falciparum
/ Platinum - chemistry
/ Platinum - pharmacology
/ platinum-group metals
/ Quinolines - chemistry
/ Review
/ Rhodium - chemistry
/ Ruthenium - chemistry
/ Salicylates - chemistry
/ Silanes - chemistry
/ Tamoxifen - chemistry
/ Thiosemicarbazones - chemistry
2020
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Recent Advances in the Biological Investigation of Organometallic Platinum-Group Metal (Ir, Ru, Rh, Os, Pd, Pt) Complexes as Antimalarial Agents
بواسطة
Smith, Gregory S
, Mbaba, Mziyanda
, Golding, Taryn M
في
Amines - chemistry
/ Aminoquinolines - chemistry
/ Animals
/ Antimalarials - pharmacology
/ Benzimidazoles - chemistry
/ bioorganometallic chemistry
/ Coordination Complexes - chemistry
/ Coordination Complexes - pharmacology
/ Ferrous Compounds - chemistry
/ HEK293 Cells
/ Humans
/ Imidazoles - chemistry
/ Iridium - chemistry
/ Ligands
/ malaria
/ Malaria - drug therapy
/ mechanism of action
/ Metallocenes - chemistry
/ Molecular Structure
/ Organometallic Compounds - chemistry
/ Organometallic Compounds - pharmacology
/ Osmium - chemistry
/ Palladium - chemistry
/ Plasmodium falciparum
/ Platinum - chemistry
/ Platinum - pharmacology
/ platinum-group metals
/ Quinolines - chemistry
/ Review
/ Rhodium - chemistry
/ Ruthenium - chemistry
/ Salicylates - chemistry
/ Silanes - chemistry
/ Tamoxifen - chemistry
/ Thiosemicarbazones - chemistry
2020
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Recent Advances in the Biological Investigation of Organometallic Platinum-Group Metal (Ir, Ru, Rh, Os, Pd, Pt) Complexes as Antimalarial Agents
Journal Article
Recent Advances in the Biological Investigation of Organometallic Platinum-Group Metal (Ir, Ru, Rh, Os, Pd, Pt) Complexes as Antimalarial Agents
2020
اطلب الآن
واختر طريقة الاستلام
نظرة عامة
In the face of the recent pandemic and emergence of infectious diseases of viral origin, research on parasitic diseases such as malaria continues to remain critical and innovative methods are required to target the rising widespread resistance that renders conventional therapies unusable. The prolific use of auxiliary metallo-fragments has augmented the search for novel drug regimens in an attempt to combat rising resistance. The development of organometallic compounds (those containing metal-carbon bonds) as antimalarial drugs has been exemplified by the clinical development of ferroquine in the nascent field of Bioorganometallic Chemistry. With their inherent physicochemical properties, organometallic complexes can modulate the discipline of chemical biology by proffering different modes of action and targeting various enzymes. With the beneficiation of platinum group metals (PGMs) in mind, this review aims to describe recent studies on the antimalarial activity of PGM-based organometallic complexes. This review does not provide an exhaustive coverage of the literature but focusses on recent advances of bioorganometallic antimalarial drug leads, including a brief mention of recent trends comprising interactions with biomolecules such as heme and intracellular catalysis. This resource can be used in parallel with complementary reviews on metal-based complexes tested against malaria.
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