日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Biomass-Haze PM2.5 from Northern Thailand Drives Genotype-Specific Oxidative Stress and Transcriptomic Remodeling in Non-Small-Cell Lung Cancer Cells

泰国北部生物质雾霾产生的PM2.5驱动非小细胞肺癌细胞中基因型特异性氧化应激和转录组重塑

Prommana, Sakawwarin; Intarasit, Sitthisak; Thongyim, Saruda; Yabueng, Nuttipon; Chantara, Somporn; Sattayawat, Pachara; Panya, Aussara; Inwongwan, Sahutchai

Acute PM2.5 Exposure in Distinct NSCLC Cell Lines Reveals Strong Oxidative Stress and Therapy Resistance Signatures Through Transcriptomic Analysis

通过转录组分析发现,急性 PM2.5 暴露于不同非小细胞肺癌细胞系后,会引发强烈的氧化应激和治疗耐药性。

Panya, Aussara; Thongyim, Saruda; Sattayawat, Pachara; Inwongwan, Sahutchai

Metabolomic Insights into the Adaptations and Biotechnological Potential of Euglena gracilis Under Different Trophic Conditions

代谢组学揭示眼虫在不同营养条件下的适应性和生物技术潜力

Inwongwan, Sahutchai; Sriwari, Sutthiphat; Pumas, Chayakorn

Distinct fungal microbiomes of two Thai commercial stingless bee species, Lepidotrigona terminata and Tetragonula pagdeni suggest a possible niche separation in a shared habitat

两种泰国商业无刺蜂(Lepidotrigona terminata 和 Tetragonula pagdeni)的真菌微生物群落组成差异显著,这表明它们在共享的栖息地中可能存在生态位分离。

Castillo, Diana C; Sinpoo, Chainarong; Phokasem, Patcharin; Yongsawas, Rujipas; Sansupa, Chakriya; Attasopa, Korrawat; Suwannarach, Nakarin; Inwongwan, Sahutchai; Noirungsee, Nuttapol; Disayathanoowat, Terd

Genome-scale metabolic modelling of extremophiles and its applications in astrobiological environments

极端微生物的基因组规模代谢模型及其在天体生物环境中的应用

Nuttapol Noirungsee, Sakunthip Changkhong, Kittiya Phinyo, Chutipong Suwannajak, Nahathai Tanakul, Sahutchai Inwongwan

Engineering Gut Symbionts: A Way to Promote Bee Growth?

改造肠道共生菌:促进蜜蜂生长的途径?

Sattayawat, Pachara; Inwongwan, Sahutchai; Noirungsee, Nuttapol; Li, Jilian; Guo, Jun; Disayathanoowat, Terd

Metabolic network reconstruction of Euglena gracilis: Current state, challenges, and applications

眼虫代谢网络重建:现状、挑战与应用

Inwongwan, Sahutchai; Pekkoh, Jeeraporn; Pumas, Chayakorn; Sattayawat, Pachara

Mitonuclear interactions modulate nutritional preference

线粒体-核相互作用调节营养偏好

Camus, M Florencia; Inwongwan, Sahutchai