MOLECULAR BIOTECHNOLOGY分子生物技术
MOLECULAR BIOTECHNOLOGY(英文缩写 MOL BIOTECHNOL),ISSN 1073-6085,eISSN 1559-0305,中文译名:分子生物技术 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。
发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。
期刊介绍
历年影响因子趋势
| JCR 数据年份 | 影响因子 | JCR 分区 |
|---|---|---|
| 2021 | 2.860 | Q3 |
| 2022 | 2.600 | Q3 |
| 2023 | 2.400 | Q3 |
| 2024 | 2.500 | Q3 |
| 2025 | 3.200 | Q3 |
MOLECULAR BIOTECHNOLOGY 最新收录文献
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1. PCR-LbCas12a Assay for Genotyping of HPV 16 and 18.
PMID:日期:2026-09-16CRISPR/Cas12a systems have been widely used in nucleic acid detection, because of their high specificity and trans-cleavage activity. We combined the specificity of CRISPR/Cas12a system with the sensitivity of PCR, to develop a new HPV detection assay with high specificity and sensitivity, called PCR-LbCas12a assay. Here, we pre-amplified almost all high-risk HPV genotypes with consensus primer (MY09/11) and added to new tubes containing HPV 16 or 18 CRISPR/Cas12a system for HPV genotyping. The LOD of PCR-LbCas12a for HPV16 or HPV18 DNA was 100 copies and 10 copies per reaction, respectively. In mixed samples of HPV 16 and HPV 18 DNA, PCR-LbCas12a assay could detect HPV16 DNA from samples containing 10 copies of HPV16 and 10 copies of HPV18. On the other hand, HPV18 DNA was detected from samples containing 10 copies of HPV16 and HPV18, respectively. Following validation with HPV-positive and HPV-negative cell lines (SiHa, HeLa, and C-33A), the PCR-LbCas12a assay was evaluated using 39 clinical samples previously characterized by type-specific qPCR. The assay demonstrated a sensitivity of 91.3 (95 CI 71.9-98.9) and a specificity of 100. The PCR-LbCas12a assay can discriminate the HPV 16 and HPV 18 genotypes, and holds great potential in simultaneous detection of most high-risk HPV genotypes including HPV 16 and HPV18.
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2. Quantifying HER-2 for Precision Oncology: The Role of Optical Biosensors.
PMID:日期:2026-09-12The ability to measure the Human Epidermal Growth Factor Receptor 2 (HER-2), a biomarker associated with aggressive breast cancer and other malignancies, is vital to both providing an accurate diagnosis and tailoring individualized therapeutic management of patients. Although traditional approaches to diagnose HER-2 through laboratory testing using immunohistochemical techniques are established methods, they may be slow, semi-quantitative, and dependent on centralized laboratory facilities. This review first provides a concise overview of the biomarker HER-2 and its role in cancer, then proceeds to review recent advances in optical biosensing platforms designed for the sensitive and specific detection of HER-2. We describe how various optical transducers, including fluorescence, surface plasmon resonance (SPR), and colorimetric assays, are being used for quantification of HER-2 in clinical and experimental settings. We also highlight emerging point-of-care (POC) devices that utilize optical technologies for rapid, decentralized HER-2 measurement. In conclusion, this review discusses current challenges associated with the clinical translation of optical biosensors, including standardization, large-scale validation, and regulatory implementation, while also highlighting future directions involving nanotechnology integration, liquid biopsy strategies, and AI-assisted diagnostic systems for precision oncology.
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3. MicroRNA-181a-5p promotes papillary thyroid carcinoma progress via the PTEN/AKT pathway.
PMID:日期:2026-09-01The objective of this investigation was to determine the expression profile and latent mechanism of microRNA-181a-5p (miR-181a-5p) in the genesis and progression of papillary thyroid cancer (PTC). MiR-181a-5p was discovered to be upregulated in PTC tissues and cells in this study, as confirmed by RT‒qPCR and The Cancer Genome Atlas database. Notably, in PTC patients, the miR-181a-5p level was linked to tumor size and thyroid capsule invasion. A series of experiments demonstrated that miR-181a-5p upregulation in PTC cells notably enhanced proliferation, motility, and invasion, whereas suppressing miR-181a-5p hindered these functions. Western blotting revealed that miR-181a-5p suppressed PTEN expression, boosting the activation of phosphorylated AKT (P-AKT). According to predictive bioinformatics research and luciferase reporter gene tests, miR-181a-5p may target a specific binding site on the PTEN 3'UTR. To sum up, this study indicated that miR-181a-5p promoted PTC progression through the PTEN/Akt pathway. This investigation reveals a potential mechanism for PTC progression and provides a foundation for clinical therapies.
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4. Molecular Cloning, Recombinant Expression, and In Silico Structural Analysis of Cu/Zn-Superoxide Dismutase from Trachyspermum ammi.
PMID:日期:2026-09-01Superoxide dismutase (SOD) is an essential antioxidant metalloenzyme that is critical for the cellular defense against oxidative damage, as it scavenges superoxide radicals and maintains the redox status. Cytosolic Cu/Zn-SOD is particularly important in the regulation of oxidative stress among different isoforms in higher plants. While Cu/Zn-SODs from several plant species have been characterized, molecular information is limited for Trachyspermum ammi, a medicinally important member of a family Apiaceae with antioxidant potential.In the present study, an integrated molecular and in silico approach has been taken to clone and analyze a Cu/Zn type SOD gene from T. ammi to get insight into its structural and evolutionary characteristics. PCR amplification yielded an open reading frame of 456 bp encoding a protein of 152 amino acids. Sequence analysis showed that plant Cu/Zn-SODs, especially those from Daucus carota, were highly similar to one another (about 90-95%).Multiple sequence alignment confirmed the presence of conserved catalytic motifs and metal-binding histidine residues, both of which are crucial for enzymatic function. Physicochemical analysis predicted the protein to be stable, hydrophilic and compatible with cytosolic localization. The analysis of secondary structure indicated a predominance of β-strands, consistent with the conserved β-barrel architecture of plant Cu/Zn-SODs.The three-dimensional structure was built by homology modeling using a closely related plant Cu/Zn-SOD template with high sequence identity. Structural validation demonstrated an acceptable stereochemical quality with 86.3% residues in the favored region of Ramachandran plot, satisfactory ERRAT and Verify3D scores, and a low RMSD value of 0.104 Å on structural superimposition. Phylogenetic analysis placed the enzyme in the Apiaceae lineage, suggesting evolutionary conservation among related plant species. In conclusion, this study presents the first molecular and structural characterization of Cu/Zn-SOD from T. ammi and confirms the existence of a conserved structural framework typical of plant Cu/Zn-SODs. These results provide a basis for further studies concerning recombinant expression, enzymatic validation and potential relevance in antioxidant and plant stress biology.
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5. Gene Cloning, Expression, and Purification of Kunitz Trypsin Inhibitor from Glycine max Using Halo Tag.
PMID:日期:2026-09-01Soybean Kunitz Trypsin Inhibitor (SKTI) is one of the most extensively studied protease inhibitors, with applications in pest management, medicine, the food processing industry, and the leather industry. In this study, SKTI was cloned into the pFN29A Flexi vector containing a barnase gene. Genomic DNA was isolated from tender soybean leaves, and SKTI was amplified by PCR to obtain a 671 bp product. After cloning, an internal 380 bp sequence was amplified using specific primers to confirm that the cloned sequence was a functional SKTI, as non-functional SKTI genes also exist in Glycine max. The amplified PCR product, containing an AsiSI site at the 5' end and a PmeI site at the 3' end, was cloned into the pFN29A vector. The resulting colonies were screened by colony PCR, and the insert sequence was confirmed by Sanger sequencing. The recombinant protein, containing a His-tag, Halo-tag, and a TEV protease cleavage site, was expressed in Escherichia coli BL21 cells. Maximum expression was achieved 5 h after induction with 0.5 mM IPTG at 37 °C. The expressed SKTI was purified using affinity chromatography on HaloLink resin, and the bound SKTI was cleaved with HaloTEV protease to obtain pure SKTI. The purified inhibitor effectively inhibited bovine trypsin, with an IC₅₀ of 0.6 ± 0.003 µg/µl, yielding 1.6 mg per gram of bacterial pellet. The 24 kDa inhibitor remained stable up to a temperature of 50 °C. Kinetic analysis revealed that recombinant SKTI competitively inhibits trypsin, with a Kᵢ value of 14 µM.
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6. Triphala Modulates the Membrane Vesicle Transcriptome of Enterococcus durans VIT3 to Influence Antibiotic Response and Probiotic Functions.
PMID:日期:2026-09-01Membrane vesicles (MVs) are critical mediators of bacterial communication, physiology, and host interactions. This study explores how triphala, a polyherbal formulation, modulates the RNA cargo of MVs in Enterococcus durans VIT3 isolate under varied stress conditions. The isolated MVs from all treatment conditions (triphala, antibiotics, or sequential combinations) were spherical, intact, with negative zeta potential and sizes ranging from 56.4 to 462.3 nm. Cytotoxicity assays indicated no toxicity toward CaCo2 cells under the tested conditions. Transcriptomic profiling suggested that triphala pretreatment enhanced relative expression of genes linked to oxidative stress defense (ohrB, sodA), envelope integrity (dlt operon, pbp, mprF), and CRISPR-Cas-associated genes (cas1). In contrast, antibiotic first regimens suppressed stress and defense-associated genes, underscoring treatment order effects. Notably, triphala antibiotic sequence condition showed coordinated expression patterns within ATP synthase, arginine deiminase, and CRISPR loci, suggesting operon-level transcriptional organization of metabolic and stress-response pathways. STRING network analysis further supported clustering of genes showing relatively higher expression into functionally related molecules. Collectively, these findings suggest a potential role for triphala in shaping MV RNA cargo, offering a conceptual framework for synbiotic strategies aimed at supporting microbial stress resilience. All transcriptomic observations are based on pooled MV samples, which represent exploratory expression trends rather than statistically inferred differential expression or functional outcomes.
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7. Organic Molecules are Involved in Ni-Struvite Biomineralization by Streptomyces mirabilis.
PMID:日期:2026-09-01The Gram-positive, filamentous soil bacterium Streptomyces mirabilis P16B-1 has been shown to tolerate high environmental concentrations of Ni. The extremely high metal tolerance is partly provided through biomineralization, observed for both Mg bearing struvite and Ni-struvite where Ni ions replace Mg in the mineral lattice. The minerals showed different morphologies. This led us to assume that excreted substances may have the capacity to influence the mineral formation process that occurs at a distance to the cells. Here, we could show with metabolomics and proteomics studies that 23 metabolites as well as 18 proteins potentially co-precipitate with the minerals. Secreted secondary metabolites reduced in the supernatant after mineralization were identified as ergothioneine, diacetyllegionaminic acid, nevaltophin F, and diaminonaphthalene. The compounds phenylacetaldehyde and margaric acid also reduced after mineral precipitation did not alter mineral macromorphology. In addition, ten proteins that co-precipitated with statistical significance were predicted to be secreted. Among those, a specific nickel binding protein, NikA, was reduced in high amounts from the supernatant upon crystal formation. The potential of secreted organic molecules and proteins to bind specific surfaces of the mineral thereby redirecting crystal growth in a microbially influenced biomineralization process. Implications for biotechnological metal-struvite use are discussed.
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8. Biogenic Silver Nanoparticles from the Cell-Free Supernatant of Mychonastes sp. B1: Antibacterial and Antibiofilm Effects, and Wound Healing Activity Supported by Gene and Protein Expression Analysis.
8. Mychonastes sp.B1无细胞上清液中的生物银纳米粒子:抗菌和抗生物膜作用,以及基因和蛋白质表达分析支持的伤口愈合活性PMID:日期:2026-09-01The biogenic synthesis of silver nanoparticles (AgNPs) using microalgae provides a sustainable alternative to conventional physicochemical methods. In this study, AgNPs were synthesized from the cell-free supernatant of the freshwater microalga Mychonastes sp. B1 and characterized by ultraviolet-visible spectroscopy (UV-Vis), transmission electron microscopy (TEM), dynamic light scattering (DLS), Fourier transform infrared spectroscopy (FTIR), and field-emission scanning electron microscopy with energy-dispersive X-ray spectroscopy (FE-SEM/EDS). The nanoparticles were predominantly spherical (15-55 nm), highly stable (ζ = - 42.8 mV), and appeared to be capped by extracellular polymeric substances. The biogenic AgNPs (GS-AgNPs) exhibited potent antibacterial activity, with minimum inhibitory concentrations (MICs) of 2.0 µg/mL against Staphylococcus aureus and 2.5 µg/mL against Pseudomonas aeruginosa, and significantly (p < 0.05) inhibited biofilm formation. Fibroblast viability remained at or above 80% at AgNP concentrations up to 1.5 µg/mL, which promoted cell migration and increased wound closure by 8.1% at 24 h (p < 0.05). Exposure to 1.5 µg/mL AgNPs significantly upregulated extracellular matrix markers (Col1a1 2.3-fold, Fn1 3.3-fold at mRNA level; COL1A1 2.1-fold, FN1 2.7-fold at the protein level). These findings indicate that GS-AgNPs possess antimicrobial and wound healing properties, highlighting their potential as biocompatible nanomaterials for biomedical applications.
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9. A CHO-Derived Matrix Attachment Region Enhances Transgene Dosage, SATB1 Recruitment, and Monoclonal Antibody Expression in a Dual-Promoter Vector System.
PMID:日期:2026-09-01The production of monoclonal antibodies (mAbs) in Chinese hamster ovary (CHO) cells is often affected by position-effect variegation and the gradual loss of transgene expression over time. Hence, we have designed a dual-promoter IgG expression vector and compared versions that either contained or lacked a CHO-derived matrix-attachment region (MAR). Stable CHO-S pools, cultured in serum-free conditions, revealed that the MAR-containing construct produced higher and more consistent antibody levels across ten passages, as confirmed by Western blot and Protein A Octet analysis. Product-quality analysis by size-exclusion chromatography and reducing SDS-PAGE confirmed formation of properly assembled, mainly monomeric antibodies in both cases. Quantitative PCR indicated greater transgene copy numbers in MAR pools (+ 48% for the light chain and + 71% for the heavy chain), and RT-qPCR showed roughly fourfold higher transcript levels for both chains relative to controls. Bioinformatic analysis revealed several SATB1 binding motifs within the MAR sequence, and ChIP-qPCR demonstrated SATB1 association with the MAR-linked transgene locus. Overall, the data suggested that a CHO-native MAR could enhance transgene dosage and transcriptional activity, while preserving product integrity, possibly through SATB1-mediated chromatin organization. Ongoing work includes chromatin-mark profiling and process-level productivity measurements to better define the impact of MAR-based vector design on biomanufacturing performance.
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10. Cloning, Transformation, and Reporter Gene Analysis of the SalT Promoter in Barley (Hordeum vulgare).
PMID:日期:2026-09-01Constitutive gene expression can lead to pleiotropic effects. Therefore, spatial or temporal restriction of expression via specific promoters provides a more targeted approach. This study aimed to clone the SalT promoter and analyze its activity in transgenic barley using GFP and GUS reporter genes. The T-DNA constructs carrying the SalT promoter were introduced into barley cv. Golden Promise, and transgenic plants were confirmed through PCR, hygromycin selection, and Southern hybridization. Both constructs, SalT-GFP and SalT-GUS, were transformed in barley cv. Golden Promise. Here, we characterized the expression pattern of the SalT promoter in barley and utilized it to drive the expression of reporter genes GFP and GUS. The SalT promoter was isolated from rice genomic DNA, cloned into the pNos-AB-M vector, and confirmed through PCR and restriction analysis. Subsequently, GFP and GUS genes were cloned under the SalT promoter in the same vector. The constructs were then subcloned into the p6U vector for plant expression. Agrobacterium-mediated genetic transformation of barley cultivar "Golden Promise" was conducted, resulting in successful integration of the transgenes. Callus induction, regeneration, and root formation efficiency were assessed, demonstrating the potential of the SalT promoter to drive gene expression during various stages of plant development. Molecular analyses, including PCR and Southern hybridization, confirmed the presence and integration of transgenes in the barley genome. Furthermore, GFP fluorescence and GUS staining analyses revealed strong expression of the respective genes under control of the SalT promoter in different plant tissues. This study provides insights into the application of the SalT promoter for genetic manipulation and functional characterization in barley, offering opportunities for crop improvement and biotechnological applications.