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

VapC36-mediated intrinsic stress adaption is required for copper tolerance and pathogenesis of Mycobacterium tuberculosis

VapC36介导的内在应激适应是结核分枝杆菌铜耐受性和致病性所必需的

Sharma, Arun; Chattopadhyay, Gopinath; Singh, Manisha; Bhasin, Munmun; Babele, Prabhakar; Varadarajan, Raghavan; Singh, Ramandeep

Antibiotic contamination and antimicrobial resistance dynamics in the urban sewage microbiome in India

印度城市污水微生物组中的抗生素污染和抗菌素耐药性动态

Paul, Deepjyoti; Talukdar, Daizee; Kapuganti, Ramani Shyam; Gupta, Vaishali; Narendrakumar, Lekshmi; Jana, Pradipta; Kumar, Pawan; Singh, Jyoti; Kumari, Shalini; Basak, Chandana; Kamboj, Kajal; Bakshi, Susmita; Lal, Shruti; Tanwar, Subhash; Kumar, Roshan; Babele, Prabhakar; Bajpai, Manish; Kumar, Yashwant; Mutreja, Ankur; Mandal, Sukhendu; Wadhwa, Nitya; Banerjee, Sanjay K; Das, Bhabatosh

Corrigendum: Pharmacological potential of Withania somnifera (L.) Dunal and Tinospora cordifolia (Willd.) Miers on the experimental models of COVID-19, T cell differentiation, and neutrophil functions

更正:睡茄(Withania somnifera (L.) Dunal)和青藤(Tinospora cordifolia (Willd.) Miers)在COVID-19实验模型、T细胞分化和中性粒细胞功能方面的药理学潜力

Rizvi, Zaigham Abbas; Babele, Prabhakar; Madan, Upasna; Sadhu, Srikanth; Tripathy, Manas Ranjan; Goswami, Sandeep; Mani, Shailendra; Dikshit, Madhu; Awasthi, Amit

ERM proteins support perinuclear actin rim formation.

ERM蛋白支持核周肌动蛋白环的形成。

Hadad Yuval, Fracchia Andrea, Babele Dagmawit, Ben Shushan Amit, Gerlitz Gabi

(p)ppGpp and DksA play a crucial role in reducing the efficacy of β-lactam antibiotics by modulating bacterial membrane permeability

(p)ppGpp 和 DksA 通过调节细菌膜通透性,在降低 β-内酰胺类抗生素的疗效方面发挥着关键作用。

Chawla, Meenal; Verma, Jyoti; Kumari, Shashi; Matta, Tushar; Senapati, Tarosi; Babele, Prabhakar; Kumar, Yashwant; Bhadra, Rupak K; Das, Bhabatosh

Antimicrobial resistance heterogeneity among multidrug-resistant Gram-negative pathogens: Phenotypic, genotypic, and proteomic analysis

多重耐药革兰氏阴性病原体抗菌药物耐药性异质性:表型、基因型和蛋白质组学分析

Mehrotra, Tanshi; Konar, Dipasri; Pragasam, Agila Kumari; Kumar, Shakti; Jana, Pradipta; Babele, Prabhakar; Paul, Deepjyoti; Purohit, Ayushi; Tanwar, Subhash; Bakshi, Susmita; Das, Santanu; Verma, Jyoti; Talukdar, Daizee; Narendrakumar, Lekshmi; Kothidar, Akanksha; Karmakar, Sonali Porey; Chaudhuri, Susmita; Pal, Sujoy; Jain, Kajal; Srikanth, Chittur V; Sankar, M Jeeva; Atmakuri, Krishnamohan; Agarwal, Ramesh; Gaind, Rajni; Ballal, Mamatha; Kammili, Nagamani; Bhadra, Rupak K; Ramamurthy, Thandavarayan; Nair, G Balakrish; Das, Bhabatosh

Pharmacological potential of Withania somnifera (L.) Dunal and Tinospora cordifolia (Willd.) Miers on the experimental models of COVID-19, T cell differentiation, and neutrophil functions

印度醉茄和心叶青霉对 COVID-19 实验模型、T 细胞分化和中性粒细胞功能的药理学潜力

Zaigham Abbas Rizvi, Prabhakar Babele, Upasna Madan, Srikanth Sadhu, Manas Ranjan Tripathy, Sandeep Goswami, Shailendra Mani, Madhu Dikshit, Amit Awasthi

Morphological characterization, pathogenicity screening, and molecular identification of Fusarium spp. isolates causing post-flowering stalk rot in maize

玉米花后茎腐病病原镰刀菌属分离株的形态学特征、致病性筛选和分子鉴定

Harish, J; Jambhulkar, Prashant P; Bajpai, Ruchira; Arya, Meenakshi; Babele, Piyoosh K; Chaturvedi, Sushil K; Kumar, Anil; Lakshman, Dilip K

Effect of herbal extracts and Saroglitazar on high-fat diet-induced obesity, insulin resistance, dyslipidemia, and hepatic lipidome in C57BL/6J mice

草药提取物和 Saroglitazar 对 C57BL/6J 小鼠高脂饮食引起的肥胖、胰岛素抵抗、血脂异常和肝脏脂质组的影响

Deepika Kumari, Jyoti Gautam, Vipin Sharma, Sonu Kumar Gupta, Soumalya Sarkar, Pradipta Jana, Vikas Singhal, Prabhakar Babele, Parul Kamboj, Sneh Bajpai, Ruchi Tandon, Yashwant Kumar, Madhu Dikshit

Prophylactic treatment of Glycyrrhiza glabra mitigates COVID-19 pathology through inhibition of pro-inflammatory cytokines in the hamster model and NETosis

甘草的预防性治疗可通过抑制仓鼠模型中的促炎细胞因子和中性粒细胞胞外陷阱(NETosis)来减轻 COVID-19 的病理损伤。

Rizvi, Zaigham Abbas; Babele, Prabhakar; Sadhu, Srikanth; Madan, Upasna; Tripathy, Manas Ranjan; Goswami, Sandeep; Mani, Shailendra; Kumar, Sachin; Awasthi, Amit; Dikshit, Madhu