来源:Marine Drugs 发布时间:2026/9/3 16:17:17
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文献清单:2025年封面文章合集 | MDPI Marine Drugs

期刊名: Marine Drugs

期刊主页:https://www.mdpi.com/journal/marinedrugs

Marine Drugs是一个国际、同行评审、开放获取的期刊,内容涉及海洋生物和治疗活性化合物的研究、开发和生产,由MDPI每月在线出版。本期文献清单将与您分享Marine Drugs期刊2025年的12篇封面文章,希望能为您的学术研究提供灵感!

1. Optimization of the Extraction Protocol for Pacific Ciguatoxins from Marine Products Prior to Analysis Using the Neuroblastoma Cell-Based Assay

基于神经母细胞瘤细胞分析法的海产品中太平洋雪卡毒素提取方案优化

https://www.mdpi.com/1660-3397/23/1/42

Yon, T.; Cruchet, P.; Viallon, J.; Murray, J.S.; Passfield, E.; Chinain, M.; Darius, H.T.; Roué, M. Optimization of the Extraction Protocol for Pacific Ciguatoxins from Marine Products Prior to Analysis Using the Neuroblastoma Cell-Based Assay. Mar. Drugs 2025, 23, 42. https://doi.org/10.3390/md23010042

2. Bioprospecting Bioactive Peptides in Halobatrachus didactylus Body Mucus: From In Silico Insights to Essential In Vitro Validation

腋孔蟾魚Halobatrachus didactylus体表黏液中活性肽的生物勘探:从计算机模拟分析到关键体外验证

https://www.mdpi.com/1660-3397/23/2/82

Fernandez Cunha, M.; Coscueta, E.R.; Brassesco, M.E.; Almada, F.; Gonçalves, D.; Pintado, M.M. Bioprospecting Bioactive Peptides in Halobatrachus didactylus Body Mucus: From In Silico Insights to Essential In Vitro Validation. Mar. Drugs 2025, 23, 82. https://doi.org/10.3390/md23020082

3. Nannochloropsis Lipids and Polyunsaturated Fatty Acids: Potential Applications and Strain Improvement

微拟球藻Nannochloropsis脂质与多不饱和脂肪酸的潜在应用及菌株改良

https://www.mdpi.com/1660-3397/23/3/128

Navalho, S.; Ferrer-Ledo, N.; Barbosa, M.J.; Varela, J. Nannochloropsis Lipids and Polyunsaturated Fatty Acids: Potential Applications and Strain Improvement. Mar. Drugs 2025, 23, 128. https://doi.org/10.3390/md23030128

4. Antibacterial Methyl Ester Cembranoids from the Soft Coral Sarcophyton ehrenbergi and Their Structural Elucidation

来自软珊瑚 Sarcophyton ehrenbergi的抗菌性甲基酯西松烷类化合物及其结构鉴定

https://www.mdpi.com/1660-3397/23/4/170

Wu, M.-J.; Li, S.-W.; Xu, F.; Su, M.-Z.; Guo, Y.-W. Antibacterial Methyl Ester Cembranoids from the Soft Coral Sarcophyton ehrenbergi and Their Structural Elucidation. Mar. Drugs 2025, 23, 170. https://doi.org/10.3390/md23040170

5. Jellyfish Collagen in the Mediterranean Spotlight: Transforming Challenges into Opportunities

地中海水母胶原蛋白研究聚焦:化挑战为机遇

https://www.mdpi.com/1660-3397/23/5/200

Ballesteros, A.; Torres, R.; Pascual-Torner, M.; Revert-Ros, F.; Tena-Medialdea, J.; García-March, J.R.; Lloret, J.; Gili, J.-M. Jellyfish Collagen in the Mediterranean Spotlight: Transforming Challenges into Opportunities. Mar. Drugs 2025, 23, 200. https://doi.org/10.3390/md23050200

6. Bioactive Polyketides from Amphidinium spp.: An In-Depth Review of Biosynthesis, Applications, and Current Research Trends

前沟藻属Amphidinium spp.中活性聚酮类化合物的生物合成、应用及研究进展综述

https://www.mdpi.com/1660-3397/23/6/255

Russo, N.; Quaini, G.; Ziaco, M.; Castiglia, D.; Ruggiero, A.; D’Amelia, V.; Di Napoli, C.; Esposito, S.; Fontana, A.; Nuzzo, G.; et al. Bioactive Polyketides from Amphidinium spp.: An In-Depth Review of Biosynthesis, Applications, and Current Research Trends. Mar. Drugs 2025, 23, 255. https://doi.org/10.3390/md23060255

7. Anthelmintic Potential of Agelasine Alkaloids from the Australian Marine Sponge Agelas axifera

澳大利亚海洋海绵Agelas axiferaAgelasine类生物碱的驱虫潜力研究

https://www.mdpi.com/1660-3397/23/7/276

Wijesekera, K.; Taki, A.C.; Byrne, J.J.; Holland, D.C.; Jenkins, I.D.; Ekins, M.G.; Carroll, A.R.; Gasser, R.B.; Davis, R.A. Anthelmintic Potential of Agelasine Alkaloids from the Australian Marine Sponge Agelas axifera. Mar. Drugs 2025, 23, 276. https://doi.org/10.3390/md23070276

8. Novel 3D-Printed Replica Plate Device Ensures High-Throughput Antibacterial Screening of Halophilic Bacteria

新型3D打印复制板装置可实现嗜盐菌的高通量抗菌筛选

https://www.mdpi.com/1660-3397/23/8/295

Berberov, K.; Atanasova, N.; Krumov, N.; Yakimova, B.; Lazarkevich, I.; Engibarov, S.; Damyanova, T.; Boyadzhieva, I.; Kabaivanova, L. Novel 3D-Printed Replica Plate Device Ensures High-Throughput Antibacterial Screening of Halophilic Bacteria. Mar. Drugs 2025, 23, 295. https://doi.org/10.3390/md23080295

9. Analytical Approaches to the Rapid Characterisation of Marine Glycolipids in Bioproduct Discovery

生物制品发现中海洋糖脂快速表征的分析方法

https://www.mdpi.com/1660-3397/23/9/352

Dhakal, S.; Nalder, T.D.; Marshall, S.N.; Barrow, C.J. Analytical Approaches to the Rapid Characterisation of Marine Glycolipids in Bioproduct Discovery. Mar. Drugs 2025, 23, 352. https://doi.org/10.3390/md23090352

10. Novel Discorhabdin Derivatives from Antarctic Sponges of the Genus Latrunculia: Expanding the Chemical Diversity of Polar Marine Natural Products

南极海绵Latrunculia属来源的新型Discorhabdin类衍生物及其对极地海洋天然产物化学多样性的拓展

https://www.mdpi.com/1660-3397/23/10/401

Afoullouss, S.; Olsen, S.S.H.; Morrow, S.; Cruz Rosa, E.; Geu, K.; Wilson, N.G.; Baker, B.J. Novel Discorhabdin Derivatives from Antarctic Sponges of the Genus Latrunculia: Expanding the Chemical Diversity of Polar Marine Natural Products. Mar. Drugs 2025, 23, 401. https://doi.org/10.3390/md23100401

11. Marine Natural Products in Preclinical Cancer Studies: Ten Years of Advanced Total Synthesis

临床前癌症研究中的海洋天然产物:先进合成研究十年回顾

https://www.mdpi.com/1660-3397/23/11/430

Colarusso, E.; Giordano, A.; Chini, M.G.; Bifulco, G.; Lauro, G. Marine Natural Products in Preclinical Cancer Studies: Ten Years of Advanced Total Synthesis. Mar. Drugs 2025, 23, 430. https://doi.org/10.3390/md23110430

12. In Vitro and In Vivo Anti-Phytopathogenic Fungal Activity of a Culture Extract of the Marine-Derived Fungus, Aspergillus unguis KUFA 0098, and Its Major Depsidone Constituents

海洋真菌Aspergillus unguis KUFA 0098 培养提取物及其主要缩酚酸环醚类成分的抗植物病原真菌体内外活性研究

https://www.mdpi.com/1660-3397/23/12/461

Kumla, D.; Pinho, D.I.C.; Sousa, E.; Dethoup, T.; Gales, L.; Mistry, S.; Silva, A.M.S.; Kijjoa, A. In Vitro and In Vivo Anti-Phytopathogenic Fungal Activity of a Culture Extract of the Marine-Derived Fungus, Aspergillus unguis KUFA 0098, and Its Major Depsidone Constituents. Mar. Drugs 2025, 23, 461. https://doi.org/10.3390/md23120461

期刊介绍

主编:Prof. Dr. Bill J. Baker

期刊内容涵盖从海洋栖息地发现、开发、利用和生产生物和治疗活性化合物的相关研究,包括但不限于海洋天然产物结构研究、海洋药理学、海洋毒理学、海洋来源生物材料、与药物发现或生产相关的海洋生物技术、海洋天然产物的合成与药物化学、海洋来源成分的药物、化妆品及营养保健品、药物发现中的海洋化学生态学等方向和领域。期刊已被PubMed, Scopus, SCIE (Web of Science)等数据库收录

2025 Impact Factor:5.7

2025 CiteScore:11.6

Time to First Decision:14.2 Days

Acceptance to Publication:2.8 Days

 
 
 
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