Research map: A novel quinoline and manganese‐based carbon monoxide‐releasing molecule for intravesical therapy of bladder cancer
Back to the article
Papers in this map
Global cancer statistics 2022: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries
· Freddie Bray · 2024 · 26051 citations · Cited by this paper
Activation of sigma non‐opioid intracellular receptor 1 (S1R) receptor inhibits plexin domain containing 2 (Plxdc2) driven microglial inflammation to ameliorate depressive‐like behaviours in mice
· 2026 · Related
AMPK: guardian of metabolism and mitochondrial homeostasis
· Sébastien Herzig · 2017 · 4196 citations · Cited by this paper
Acute anaphylactic and multiorgan inflammatory effects of Comirnaty in pigs: evidence of spike protein mRNA transfection and paralleling inflammatory cytokine upregulation
· 2026 · Related
Animal research: Reporting in vivo experiments: The ARRIVE guidelines
· Carol Kilkenny · 2010 · 3671 citations · Cited by this paper
Serotonin engages divergent 5‐HT receptor pathways for cell type‐resolved modulation of prefrontal layer 5 microcircuits
· 2026 · Related
Mechanisms of mitophagy
· Richard J. Youle · 2010 · 3289 citations · Cited by this paper
Decoding functional specialization in G protein‐coupled receptors (GPCRs) through evolution‐guided residue profiling
· 2026 · Related
Bladder Cancer
· Andrew Thomas Lenis · 2020 · 1849 citations · Cited by this paper
Arrhythmias associated with immune checkpoint inhibitor therapy—A clinical perspective
· 2026 · Related
The therapeutic potential of carbon monoxide
· Roberto Motterlini · 2010 · 1645 citations · Cited by this paper
Thirty‐day dapagliflozin therapy improves the nanomechanical properties of red blood cells in patients with type 1 diabetes
· 2026 · Related
Experimental design and analysis and their reporting II: updated and simplified guidance for authors and peer reviewers
· Michael J. Curtis · 2018 · 1371 citations · Cited by this paper
Targeting sphingosine‐1‐phosphate receptor‐2 attenuates spinal cord injury by preventing neuronal ferroptosis
· 2026 · Related
Implementing guidelines on reporting research using animals ( ARRIVE etc.): new requirements for publication in BJP
· John Christie McGrath · 2015 · 1336 citations · Cited by this paper
Virtual cell construction for artificial intelligence‐driven drug discovery
· 2026 · Related
ARRIVE 2.0 and the British Journal of Pharmacology: Updated guidance for 2020
· Elliot J. Lilley · 2020 · 1200 citations · Cited by this paper
A covalent peptide engager approach to equip immunotherapeutic monoclonal and pan IgG serum antibodies with new tumour‐targeting function
· 2026 · Related
AMP-activated protein kinase mediates mitochondrial fission in response to energy stress
· Erin Quan Toyama · 2016 · 1106 citations · Cited by this paper
Paecilomyces cicadae ‐fermented Radix astragali modulates short‐chain fatty acids metabolism in the intestine through gut microbiota and ameliorates hyperuricaemia
· 2026 · Related
The ARRIVE guidelines 2.0: Updated guidelines for reporting animal research
· Nathalie Percie du Sert · 2020 · 1087 citations · Cited by this paper
New insights into activation and function of the AMPK
· Gregory R. Steinberg · 2022 · 1041 citations · Cited by this paper
Carbon Monoxide-Releasing Molecules
· Roberto Motterlini · 2002 · 999 citations · Cited by this paper
Goals and practicalities of immunoblotting and immunohistochemistry: A guide for submission to the British Journal of Pharmacology
· Steve P H Alexander · 2018 · 886 citations · Cited by this paper
Advances in diagnosis and treatment of bladder cancer
· Antonio López-Beltrán · 2024 · 496 citations · Cited by this paper
AMPK: restoring metabolic homeostasis over space and time
· Elijah Trefts · 2021 · 471 citations · Cited by this paper
Carbon Monoxide Expedites Metabolic Exhaustion to Inhibit Tumor Growth
· Barbara Wegiel · 2013 · 378 citations · Cited by this paper
Carbon Monoxide and Its Controlled Release: Therapeutic Application, Detection, and Development of Carbon Monoxide Releasing Molecules (CORMs)
· Ken Ling · 2017 · 317 citations · Cited by this paper
8-Hydroxyquinolines in medicinal chemistry: A structural perspective
· Valentina Oliveri · 2016 · 281 citations · Cited by this paper
Guidance on the planning and reporting of experimental design and analysis
· Michael J. Curtis · 2025 · 258 citations · Cited by this paper
Modification of the deoxy-myoglobin/carbonmonoxy-myoglobin UV-vis assay for reliable determination of CO-release rates from organometallic carbonyl complexes
· Anthony J. Atkin · 2011 · 190 citations · Cited by this paper
AMPK activation induces mitophagy and promotes mitochondrial fission while activating TBK1 in a PINK1‐Parkin independent manner
· Alex Peter Seabright · 2020 · 169 citations · Cited by this paper
Harnessing carbon monoxide-releasing platforms for cancer therapy
· Yang Zhou · 2020 · 150 citations · Cited by this paper
Quinoline anticancer agents active on DNA and DNA-interacting proteins: From classical to emerging therapeutic targets
· Antonino Lauria · 2021 · 99 citations · Cited by this paper
Controlled therapeutic delivery of CO from carbon monoxide-releasing molecules (CORMs)
· Ho-Ik Choi · 2022 · 87 citations · Cited by this paper
Mitochondria‐Targeted Nanosystem with Reactive Oxygen Species‐Controlled Release of CO to Enhance Photodynamic Therapy of PCN‐224 by Sensitizing Ferroptosis
· Futing Yang · 2023 · 86 citations · Cited by this paper
The potentials of carbon monoxide-releasing molecules in cancer treatment: An outlook from ROS biology and medicine
· Thi Thuy Tien Vo · 2021 · 80 citations · Cited by this paper
Discovery of new quinolines as potent colchicine binding site inhibitors: design, synthesis, docking studies, and anti-proliferative evaluation
· Mohamed Hagras · 2021 · 79 citations · Cited by this paper
Carbon Monoxide as a Potential Therapeutic Agent: A Molecular Analysis of Its Safety Profiles
· Shubham Bansal · 2024 · 79 citations · Cited by this paper
Source: OpenAlex (CC0)