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

Correction: Editorial: Unveiling the next generation of cancer immunity & immunotherapy

更正:社论:揭开下一代癌症免疫和免疫疗法的面纱

Sadasivam, Mohanraj; Muniraj, Nethaji; Thangavel, Chellappagounder

Epigenomic and Metabolic Interplay in the Development of Metastatic Brain Tumors

表观基因组学和代谢在转移性脑肿瘤发展中的相互作用

Rastogi, Vishal; Verma, Deepak; Verma, Saurabh; Haloi, Prakash; Kapoor, Shruti; Chitme, Havagiray R; Muniraj, Nethaji; Saroj, Priyanka

Editorial: Unveiling the next generation of cancer immunity & immunotherapy

社论:揭开下一代癌症免疫和免疫疗法的面纱

Sadasivam, Mohanraj; Muniraj, Nethaji; Thangavel, Chellappagounder

Influence of Preparation pH for Superior Soot Oxidation: A Kinetic Perspective of K‑OMS‑2

制备pH值对优异烟炱氧化性能的影响:K-OMS-2的动力学视角

Rajagopal, Nithya; Ashok Lokhande, Vikram; Dasari, Harshini; Sundarabal, Nethaji

Highly Porous 3D Ni-MOFs as an Efficient and Enzyme-Mimic Electrochemical Sensing Platform for Glucose in Real Samples of Sweat and Saliva in Biomedical Applications.

高孔隙率 3D Ni-MOF 作为一种高效且模拟酶的电化学传感平台,用于生物医学应用中汗液和唾液真实样本中的葡萄糖检测

Pavadai Rajaji, Arivazhagan Mani, Jakmunee Jaroon, Pavadai Nethaji, Palanisamy Revathi, Honnu Ganesha, Kityakarn Sutasinee, Khumphon Jeerawan, Issro Chaisak, Khamboonrueang Dusadee, Thongmee Sirikanjana

Efficiency enhancement of solar PV panel by incorporating wickless loop heat pipes with plate type evaporator

通过将无芯环路热管与板式蒸发器相结合来提高太阳能光伏电池板的效率

Nethaji, N; Kumar, R Suresh; Jayanthi, N; Murali, G; Elumalai, P V; Murugan, M; Prabhakar, S; Zhang, Jin

Potential of CoMn(2)O(4) spinel as soot oxidation catalyst and its kinetics thereof

CoMn(2)O(4)尖晶石作为烟尘氧化催化剂的潜力及其动力学

Nithya, R; Patil, Sunaina S; Dasari, Hari Prasad; Dasari, Harshini; Nethaji, S

Asphaltene-derived nanocomposites for the removal of emerging pollutants and its antimicrobial effects: batch and continuous column studies

沥青质衍生纳米复合材料去除新兴污染物及其抗菌效果:间歇式和连续式柱实验研究

Nayak, Abhishek; Karkare, Vaishnavi P; Sadani, Kapil; Dasari, Harshini; Sivasamy, Arumugam; Sundarabal, Nethaji

Photothermal Prussian blue nanoparticles generate potent multi-targeted tumor-specific T cells as an adoptive cell therapy

光热普鲁士蓝纳米颗粒可生成强效的多靶点肿瘤特异性T细胞,作为一种过继细胞疗法。

Sweeney, Elizabeth E; Sekhri, Palak; Muniraj, Nethaji; Chen, Jie; Feng, Sally; Terao, Joshua; Chin, Samantha J; Schmidt, Danielle E; Bollard, Catherine M; Cruz, Conrad Russell Y; Fernandes, Rohan

Revitalizing Cancer Treatment: Exploring the Role of Drug Repurposing

重振癌症治疗:探索药物再利用的作用

Malla, RamaRao; Viswanathan, Sathiyapriya; Makena, Sree; Kapoor, Shruti; Verma, Deepak; Raju, Alluri Ashok; Dunna, Manikantha; Muniraj, Nethaji