Dual-action Pt(Ⅳ) prodrugs and targeted delivery in metal-organic frameworks : overcoming cisplatin resistance and improving anticancer activity
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- Material Type
- 記事
- Author/Editor
- Larasati LarasatiWitri Wahyu LestariMaulidan Firdaus
- Publication, Distribution, etc.
- Publication Date
- 2022-11-15
- Publication Date (W3CDTF)
- 2022-11-15
- Periodical title
- Bulletin of the Chemical Society of Japan
- No. or year of volume/issue
- 95(11)
- Volume
- 95(11)
- ISSN (Periodical Title)
- 1348-0634
- ISSN-L (Periodical Title)
- 0009-2673
- Text Language Code
- eng
- DOI
- 10.1246/bcsj.20220218
- Persistent ID (NDL)
- info:ndljp/pid/12686461
- Collection
- Collection (Materials For Handicapped People:1)
- Collection (particular)
- 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > 学術機関 > 学協会
- Acquisition Basis
- オンライン資料収集制度
- Date Accepted (W3CDTF)
- 2023-03-07T17:43:09+09:00
- Date Captured (W3CDTF)
- 2023-01-20
- Format (IMT)
- application/pdf
- Access Restrictions
- 国立国会図書館内限定公開
- Service for the Digitized Contents Transmission Service
- 図書館・個人送信対象外
- Availability of remote photoduplication service
- 可
- Periodical Title (URI)
- Periodical Title (Persistent ID (NDL))
- info:ndljp/pid/12686459
- Data Provider (Database)
- 国立国会図書館 : 国立国会図書館デジタルコレクション
- Summary, etc.
- コレクション : 国立国会図書館デジタルコレクション > 電子書籍・電子雑誌 > 学術機関 > 学協会
- DOI
- 10.1246/bcsj.20220218
- Related Material (URI)
- Is Referenced By
- Liquid–Liquid and Liquid–Solid Interfacial NanoarchitectonicsBio-gel nanoarchitectonics in tissue engineeringInterface-interactive nanoarchitectonics: solid and/or liquidMaterials Nanoarchitectonics: Collaboration between Chem, Nano and MatRecent Advancements in Novel Sensing Systems through NanoarchitectonicsDisease Diagnosis with Chemosensing, Artificial Intelligence, and Prospective Contributions of NanoarchitectonicsLayered nanoarchitectonics for condensed hard matter, soft matter, and living matterNanoarchitectonics: the method for everything in materials science
- References
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are we en route to the holy grail or to a dead end?Synthesis of aspirin-ligated cisplatin derivatives and its slow release study over MIL-101(Fe)Innovative approaches for cancer treatment: current perspectives and new challengesCisplatin and beyond: molecular mechanisms of action and drug resistance development in cancer chemotherapyAdvanced Ordered Nanoporous MaterialsUpdate of the Preclinical Situation of Anticancer Platinum Complexes: Novel Design Strategies and Innovative Analytical ApproachesCarboxylation of Dihydroxoplatinum(IV) Complexes via a New Synthetic PathwayThe Discovery and Development of CisplatinBiochemical Modulation of Cisplatin Mechanisms of Action: Enhancement of Antitumor Activity and Circumvention of Drug ResistanceCisplatin: a review of toxicities and therapeutic applicationsThe rediscovery of platinum-based cancer therapyRedox‐Active Metal Complexes for Anticancer TherapyMetal–Organic Framework Nanocarriers for Drug Delivery in Biomedical ApplicationsPt(IV) complexes as prodrugs for cisplatinNSAID’s and selectively COX-2 inhibitors as potential chemoprotective agents against cancerPlatinum drugs: from Pt(II) compounds, Pt(IV) prodrugs, to Pt nanocrystals/nanoclustersA Pt(IV) Prodrug Combining Chlorambucil and Cisplatin: A Dual-Acting Weapon for Targeting DNA in Cancer CellsRecent Approaches to Platinum(IV) Prodrugs: A Variety of Strategies for Enhanced Delivery and EfficacyBiocompatibility and biodegradability of metal organic frameworks for biomedical applicationsDual-targeting antitumor conjugates derived from platinum(IV) prodrugs and microtubule inhibitor CA-4 significantly exhibited potent ability to overcome cisplatin resistanceCisplatin-modified isonicotinic acid as a potential linker in bio-MOFs: synthesis and characterizationHarnessing chemoselective imine ligation for tethering bioactive molecules to platinum(iv) prodrugsIncorporation of cisplatin into the metal–organic frameworks UiO66-NH<sub>2</sub> and UiO66 – encapsulation vs. conjugationPt(<scp>iv</scp>) derivatives of cisplatin and oxaliplatin with phenylbutyrate axial ligands are potent cytotoxic agents that act by several mechanisms of actionThe Prodrug Platin‐<i>A</i>: Simultaneous Release of Cisplatin and AspirinCisplatin uptake and release in pH sensitive zeolitic imidazole frameworksMetal-Organic Frameworks (MOFs)-Based Nanomaterials for Drug DeliveryPt(IV) pro-drugs with an axial HDAC inhibitor demonstrate multimodal mechanisms involving DNA damage and apoptosis independent of cisplatin resistance in A2780/A2780cis cellsMicrowave-assisted synthesis of nano Hf- and Zr-based metal-organic frameworks for enhancement of curcumin adsorptionProdrugs for targeted cancer therapyEmerging platinum(<scp>iv</scp>) prodrugs to combat cisplatin resistance: from isolated cancer cells to tumor microenvironmentCurrent Developments in Pt(IV) Prodrugs Conjugated with Bioactive LigandsTriple action Pt(<scp>iv</scp>) derivatives of cisplatin: a new class of potent anticancer agents that overcome resistanceEffective loading of cisplatin into a nanoscale UiO-66 metal–organic framework with preformed defectsPt(IV) hybrids containing a TDO inhibitor serve as potential anticancer immunomodulatorsCisplatin in the Treatment of CancerThe side effects of platinum-based chemotherapy drugs: a review for chemistsPlatinum Compounds: a New Class of Potent Antitumour AgentsMicrotubules and Their Role in Cellular Stress in CancerGlobal Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 CountriesMetal–organic frameworks as potential drug carriersNanoscale Coordination Polymers for Platinum-Based Anticancer Drug DeliveryCancer statistics, 2020Nanoscale Metal–Organic Frameworks for the Co-Delivery of Cisplatin and Pooled siRNAs to Enhance Therapeutic Efficacy in Drug-Resistant Ovarian Cancer CellsMechanisms of resistance to cisplatin and carboplatinCarboxylation of Kinetically Inert Platinum(IV) Hydroxy Complexes. An Entr.acte.ee into Orally Active Platinum(IV) Antitumor AgentsMetal–Organic Framework (MOF)‐Based Drug/Cargo Delivery and Cancer TherapyBiotin-Pt (IV)-indomethacin hybrid: A targeting anticancer prodrug providing enhanced cancer cellular uptake and reversing cisplatin resistanceSynthesis of Metal-Organic Frameworks (MOFs): Routes to Various MOF Topologies, Morphologies, and CompositesCisplatin: The first metal based anticancer drugSynthesis and Characterization of Platinum(IV) Anticancer Drugs with Functionalized Aromatic Carboxylate Ligands: Influence of the Ligands on Drug Efficacies and UptakeCisplatin-Membrane Interactions and Their Influence on Platinum Complexes Activity and ToxicityRole of glutathione <i>S</i> -transferase P1-1 in the cellular detoxification of cisplatinSynthetic Methods for the Preparation of Platinum Anticancer ComplexesMetal–Organic Framework Materials with Ultrahigh Surface Areas: Is the Sky the Limit?The Next Generation of Platinum Drugs: Targeted Pt(II) Agents, Nanoparticle Delivery, and Pt(IV) ProdrugsCisplatin in cancer therapy: Molecular mechanisms of actionToxicity of nanoscale metal organic frameworks: a perspectiveWhat do we know about the reduction of Pt(IV) pro-drugs?Cisplatin as an Anti-Tumor Drug: Cellular Mechanisms of Activity, Drug Resistance and Induced Side EffectsPlatinum(IV) antitumour compounds: their bioinorganic chemistrySynthesis of metal-organic frameworks: A mini reviewNanoscale Metal–Organic Frameworks for Cancer ImmunotherapyToward Multi-Targeted Platinum and Ruthenium Drugs—A New Paradigm in Cancer Drug Treatment Regimens?Cancer and Radiation Therapy: Current Advances and Future DirectionsOctahedral complexes of anti-cancer Pt(IV)(cyclohexyldiamine) agents with 9-methylguanine
- Data Provider (Database)
- 国立情報学研究所 : CiNii Research
- Original Data Provider (Database)
- 雑誌記事索引データベースCrossrefCrossrefCrossrefCrossrefCrossrefCrossrefCrossrefCrossrefCrossref
- Bibliographic ID (NDL)
- 12686461