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1
Antibacterial metals and alloys for potential biomedical implants
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Antibacterial metals and alloys for potential biomedical implants

Bioactive materials, 2021-08, Vol.6 (8), p.2569-2612 [Peer Reviewed Journal]

2021 The Authors ;2021 The Authors. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. ;2021 The Authors. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. 2021 The Authors ;ISSN: 2452-199X ;EISSN: 2452-199X ;DOI: 10.1016/j.bioactmat.2021.01.030 ;PMID: 33615045

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2
Abstract 1943 Strategies for new anti-folate development targeting the dihydroneopterin aldolase enzyme
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Abstract 1943 Strategies for new anti-folate development targeting the dihydroneopterin aldolase enzyme

The Journal of biological chemistry, 2024-03, Vol.300 (3) [Peer Reviewed Journal]

2024 The American Society for Biochemistry and Molecular Biology, Inc. ;ISSN: 0021-9258 ;EISSN: 1083-351X ;DOI: 10.1016/j.jbc.2024.106209

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3
Recent Advancements on Photothermal Conversion and Antibacterial Applications over MXenes-Based Materials
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Recent Advancements on Photothermal Conversion and Antibacterial Applications over MXenes-Based Materials

Nano-micro letters, 2022-12, Vol.14 (1), p.178-178, Article 178 [Peer Reviewed Journal]

The Author(s) 2022 ;The Author(s) 2022. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;ISSN: 2311-6706 ;EISSN: 2150-5551 ;DOI: 10.1007/s40820-022-00901-w ;PMID: 36001173

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4
Chemical Composition of Essential Oils from Natural Populations of IArtemisia scoparia/I Collected at Different Altitudes: Antibacterial, Mosquito Repellent, and Larvicidal Effects
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Chemical Composition of Essential Oils from Natural Populations of IArtemisia scoparia/I Collected at Different Altitudes: Antibacterial, Mosquito Repellent, and Larvicidal Effects

Molecules (Basel, Switzerland), 2024-03, Vol.29 (6) [Peer Reviewed Journal]

COPYRIGHT 2024 MDPI AG ;ISSN: 1420-3049 ;EISSN: 1420-3049 ;DOI: 10.3390/molecules29061359

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5
Applications of cellulose and chitin/chitosan derivatives and composites as antibacterial materials: current state and perspectives
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Applications of cellulose and chitin/chitosan derivatives and composites as antibacterial materials: current state and perspectives

Applied microbiology and biotechnology, 2019-03, Vol.103 (5), p.1989-2006 [Peer Reviewed Journal]

Springer-Verlag GmbH Germany, part of Springer Nature 2019 ;COPYRIGHT 2019 Springer ;Applied Microbiology and Biotechnology is a copyright of Springer, (2019). All Rights Reserved. ;ISSN: 0175-7598 ;EISSN: 1432-0614 ;DOI: 10.1007/s00253-018-09602-0 ;PMID: 30637497

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6
Green Synthesis and Potential Antibacterial Applications of Bioactive Silver Nanoparticles: A Review
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Green Synthesis and Potential Antibacterial Applications of Bioactive Silver Nanoparticles: A Review

Polymers, 2022-02, Vol.14 (4), p.742 [Peer Reviewed Journal]

2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;2022 by the authors. 2022 ;ISSN: 2073-4360 ;EISSN: 2073-4360 ;DOI: 10.3390/polym14040742 ;PMID: 35215655

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7
Biofilm Formation in ICampylobacter concisus/I: The Role of the IluxS/I Gene
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Biofilm Formation in ICampylobacter concisus/I: The Role of the IluxS/I Gene

Microorganisms (Basel), 2023-12, Vol.12 (1) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 2076-2607 ;EISSN: 2076-2607 ;DOI: 10.3390/microorganisms12010046

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8
Self-assembling dipeptide antibacterial nanostructures with membrane disrupting activity
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Self-assembling dipeptide antibacterial nanostructures with membrane disrupting activity

Nature communications, 2017-11, Vol.8 (1), p.1365-10, Article 1365 [Peer Reviewed Journal]

2017. This work is published under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;The Author(s) 2017 ;ISSN: 2041-1723 ;EISSN: 2041-1723 ;DOI: 10.1038/s41467-017-01447-x ;PMID: 29118336

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9
Actinomycins from Soil-Inhabiting IStreptomyces/I as Sources of Antibacterial Pigments for Silk Dyeing
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Actinomycins from Soil-Inhabiting IStreptomyces/I as Sources of Antibacterial Pigments for Silk Dyeing

Molecules (Basel, Switzerland), 2023-08, Vol.28 (16) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 1420-3049 ;EISSN: 1420-3049 ;DOI: 10.3390/molecules28165949

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10
Synthesis, Characterization, PXRD Studies, Theoretical Calculation, and Antitumor Potency Studies of a Novel N,O-Multidentate Chelating Ligand and Its Zr Complexes
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Synthesis, Characterization, PXRD Studies, Theoretical Calculation, and Antitumor Potency Studies of a Novel N,O-Multidentate Chelating Ligand and Its Zr Complexes

Bioinorganic chemistry and applications, 2022-06, Vol.2022 [Peer Reviewed Journal]

COPYRIGHT 2022 Hindawi Limited ;ISSN: 1565-3633 ;EISSN: 1687-479X ;DOI: 10.1155/2022/2006451

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11
Chemodiversity and Bioactivity of the Essential Oils of IJuniperus/I and Implication for Taxonomy
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Chemodiversity and Bioactivity of the Essential Oils of IJuniperus/I and Implication for Taxonomy

International journal of molecular sciences, 2023-10, Vol.24 (20) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 1422-0067 ;EISSN: 1422-0067 ;DOI: 10.3390/ijms242015203

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12
Cytotoxic and Antibacterial Meroterpenoids Isolated from the Marine-Derived Fungus ITalaromyces/I sp. M27416
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Cytotoxic and Antibacterial Meroterpenoids Isolated from the Marine-Derived Fungus ITalaromyces/I sp. M27416

Marine drugs, 2024-04, Vol.22 (4) [Peer Reviewed Journal]

COPYRIGHT 2024 MDPI AG ;ISSN: 1660-3397 ;EISSN: 1660-3397 ;DOI: 10.3390/md22040186

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13
Correction: Chiangnoon et al. Antibacterial Hydrogel Sheet Dressings Composed of Poly and Silver Nanoparticles by Electron Beam Irradiation. IGels/I 2023, I9/I, 80
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Correction: Chiangnoon et al. Antibacterial Hydrogel Sheet Dressings Composed of Poly and Silver Nanoparticles by Electron Beam Irradiation. IGels/I 2023, I9/I, 80

Gels, 2023-09, Vol.9 (10) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 2310-2861 ;EISSN: 2310-2861 ;DOI: 10.3390/gels9100778

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14
Metal nanoparticles: understanding the mechanisms behind antibacterial activity
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Metal nanoparticles: understanding the mechanisms behind antibacterial activity

Journal of nanobiotechnology, 2017-10, Vol.15 (1), p.65-20, Article 65 [Peer Reviewed Journal]

COPYRIGHT 2017 BioMed Central Ltd. ;COPYRIGHT 2017 BioMed Central Ltd. ;Copyright BioMed Central 2017 ;The Author(s) 2017 ;ISSN: 1477-3155 ;EISSN: 1477-3155 ;DOI: 10.1186/s12951-017-0308-z ;PMID: 28974225

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15
Guidelines for Antimicrobial Treatment of Uncomplicated Acute Bacterial Cystitis and Acute Pyelonephritis in Women
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Guidelines for Antimicrobial Treatment of Uncomplicated Acute Bacterial Cystitis and Acute Pyelonephritis in Women

Clinical infectious diseases, 1999-10, Vol.29 (4), p.745-759 [Peer Reviewed Journal]

Copyright 1999 The Infectious Diseases Society of America ;1999 INIST-CNRS ;ISSN: 1058-4838 ;EISSN: 1537-6591 ;DOI: 10.1086/520427 ;CODEN: CIDIEL

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16
Antibacterial properties of nanoparticles
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Antibacterial properties of nanoparticles

Trends in biotechnology (Regular ed.), 2012-10, Vol.30 (10), p.499-511 [Peer Reviewed Journal]

Elsevier Ltd ;2012 Elsevier Ltd ;2014 INIST-CNRS ;Copyright © 2012 Elsevier Ltd. All rights reserved. ;Copyright Elsevier Limited Oct 2012 ;ISSN: 0167-7799 ;EISSN: 1879-3096 ;DOI: 10.1016/j.tibtech.2012.06.004 ;PMID: 22884769 ;CODEN: TRBIDM

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17
Electrospun Polycaprolactone/Chitosan Nanofibers Containing ICordia myxa/I Fruit Extract as Potential Biocompatible Antibacterial Wound Dressings
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Electrospun Polycaprolactone/Chitosan Nanofibers Containing ICordia myxa/I Fruit Extract as Potential Biocompatible Antibacterial Wound Dressings

Molecules (Basel, Switzerland), 2023-03, Vol.28 (6) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 1420-3049 ;EISSN: 1420-3049 ;DOI: 10.3390/molecules28062501

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18
Treatment Strategies for Infected Wounds
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Treatment Strategies for Infected Wounds

Molecules (Basel, Switzerland), 2018-09, Vol.23 (9), p.2392 [Peer Reviewed Journal]

2018. This work is licensed under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;2018. This work is licensed under http://creativecommons.org/licenses/by/3.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. ;2018 by the authors. 2018 ;ISSN: 1420-3049 ;EISSN: 1420-3049 ;DOI: 10.3390/molecules23092392 ;PMID: 30231567

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19
Synthesis of 4-Amino-IN/I-[2 Ethyl]Benzamide Tetraphenylborate Ion-Associate Complex: Characterization, Antibacterial and Computational Study
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Synthesis of 4-Amino-IN/I-[2 Ethyl]Benzamide Tetraphenylborate Ion-Associate Complex: Characterization, Antibacterial and Computational Study

Molecules (Basel, Switzerland), 2023-02, Vol.28 (5) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 1420-3049 ;EISSN: 1420-3049 ;DOI: 10.3390/molecules28052256

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20
Correction: Sheng et al. Antibacterial and Angiogenic Poly Hydrogels. IGels/I 2022, I8/I, 476
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Correction: Sheng et al. Antibacterial and Angiogenic Poly Hydrogels. IGels/I 2022, I8/I, 476

Gels, 2023-06, Vol.9 (6) [Peer Reviewed Journal]

COPYRIGHT 2023 MDPI AG ;ISSN: 2310-2861 ;EISSN: 2310-2861 ;DOI: 10.3390/gels9060472

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