Research map: False Novelty in Antibacterial Natural-Product Discovery: Rediscovery, Structural Misassignment, and a Checkpoint Framework for Early Verification
Back to the article
Papers in this map
Sharing and community curation of mass spectrometry data with Global Natural Products Social Molecular Networking
· Mingxun Wang · 2016 · 4828 citations · Cited by this paper
Sarcosine-Based Pharmacokinetic Optimization and Fluorescent Dye Library Evaluation of Dual-Labeled PSMA Inhibitors for Fluorescence-Guided Surgery
· 2026 · Related
Innovation in the pharmaceutical industry: New estimates of R&D costs
· Joseph A. DiMasi · 2016 · 3386 citations · Cited by this paper
Antibody–Drug Conjugates Targeting HER2 and Trop-2: A New Force in Precision Treatment for Solid Tumors
· 2026 · Related
A Deep Learning Approach to Antibiotic Discovery
· Jonathan Stokes · 2020 · 2411 citations · Cited by this paper
Fucoidan Ameliorates Contrast-Induced Acute Kidney Injury in Mice by Modulating the TLR4/NF-κB and Nrf2/GPX4 Pathways
· 2026 · Related
Towards the sustainable discovery and development of new antibiotics
· Marcus Miethke · 2021 · 1196 citations · Cited by this paper
Pharmacological Switching in Minor Phytocannabinoids: A Mechanistic Framework for Compound–Indication Matching and Precision Neurotherapeutic Development
· 2026 · Related
The WHO Bacterial Priority Pathogens List 2024: a prioritisation study to guide research, development, and public health strategies against antimicrobial resistance
· Hatim F. Sati · 2025 · 846 citations · Cited by this paper
Potential Adjunctive Effects of Quercetin–Curcumin Co-Supplementation in Adults with Mild-to-Moderate Long COVID: Results from a Pragmatic Exploratory Real-World Clinical Study
· 2026 · Related
Chasing Molecules That Were Never There: Misassigned Natural Products and the Role of Chemical Synthesis in Modern Structure Elucidation
· Kyriacos Costa Nicolaou · 2005 · 627 citations · Cited by this paper
Multiclass Machine Learning-Based Discovery of Novel Scaffold Inhibitors Targeting ALK
· 2026 · Related
Molecular Networking as a Dereplication Strategy
· Jane Y. Yang · 2013 · 614 citations · Cited by this paper
Empirical-Null Calibration Challenges Comparative CNS Safety Signals for Androgen-Receptor Pathway Inhibitors: A FAERS Re-Analysis
· 2026 · Related
Novel classes of antibiotics or more of the same?
· Anthony R. M. Coates · 2011 · 610 citations · Cited by this paper
ELOVL6: A Key Factor in the Gender Differences of Olanzapine-Induced Weight Gain
· 2026 · Related
Marine natural products
· John W. Blunt · 2011 · 481 citations · Cited by this paper
Continuous Inhibition-Zone Modeling and Binary Classification for Pseudomonas aeruginosa Hit Prioritization: A Retrospective QSAR Evaluation
· 2026 · Related
Quantitative 1H NMR. Development and Potential of an Analytical Method: An Update
· Guido F. Pauli · 2012 · 372 citations · Cited by this paper
Complementary Time-Kill Activity Displayed by Povidone-Iodine and Hydrogen Peroxide Against Shoulder Arthroplasty–Associated Pathogens, Envisaging Intraoperative Irrigation
· 2026 · Related
A Convolutional Neural Network-Based Approach for the Rapid Annotation of Molecularly Diverse Natural Products
· Raphael Reher · 2020 · 226 citations · Cited by this paper
Predicting NMR Spectra by Computational Methods: Structure Revision of Hexacyclinol
· Scott D. Rychnovsky · 2006 · 192 citations · Cited by this paper
A critical review on the use of DP4+ in the structural elucidation of natural products: the good, the bad and the ugly. A practical guide
· Maribel O. Marcarino · 2021 · 180 citations · Cited by this paper
The value of universally available raw NMR data for transparency, reproducibility, and integrity in natural product research
· James B. McAlpine · 2018 · 126 citations · Cited by this paper
Small Molecule Accurate Recognition Technology (SMART) to Enhance Natural Products Research
· Chen Zhang · 2017 · 121 citations · Cited by this paper
Rediscovery of known natural compounds: Nuisance or goldmine?
· Martin Tulp · 2005 · 108 citations · Cited by this paper
The Natural Products Atlas 3.0: extending the database of microbially derived natural products
· Ella F Poynton · 2024 · 106 citations · Cited by this paper
Hidden antibiotics in actinomycetes can be identified by inactivation of gene clusters for common antibiotics
· Elizabeth J. Culp · 2019 · 99 citations · Cited by this paper
Natural products discovery and potential for new antibiotics
· Olga Genilloud · 2019 · 93 citations · Cited by this paper
Total Synthesis and Structure Assignment of (+)‐Hexacyclinol
· John A. Jr. Porco · 2006 · 83 citations · Cited by this paper
Pitfalls in the structural elucidation of small molecules. A critical analysis of a decade of structural misassignments of marine natural products
· Shou‐Mao Shen · 2022 · 69 citations · Cited by this paper
DU8ML: Machine Learning-Augmented Density Functional Theory Nuclear Magnetic Resonance Computations for High-Throughput In Silico Solution Structure Validation and Revision of Complex Alkaloids
· Ivan M. Novitskiy · 2022 · 61 citations · Cited by this paper
Machine learning-assisted structure annotation of natural products based on MS and NMR data
· Guilin Hu · 2023 · 48 citations · Cited by this paper
Total Synthesis and Structural Revision of Antibiotic CJ‐16,264
· Kyriacos Costa Nicolaou · 2015 · 46 citations · Cited by this paper
Misassigned natural products and their revised structures
· Hye‐Dong Yoo · 2015 · 36 citations · Cited by this paper
Minimizing the risk of deducing wrong natural product structures from NMR data
· Darcy C. Burns · 2019 · 36 citations · Cited by this paper
Modern Trends in Natural Antibiotic Discovery
· Anna A. Baranova · 2023 · 34 citations · Cited by this paper
Heterologous Expression of a Cryptic Gene Cluster from Streptomyces leeuwenhoekii C34 T Yields a Novel Lasso Peptide, Leepeptin
· Juan Pablo Gomez‐Escribano · 2019 · 31 citations · Cited by this paper
Statistical reanalysis of natural products reveals increasing chemical diversity
· Michael A. Skinnider · 2017 · 21 citations · Cited by this paper
Source: OpenAlex (CC0)