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

Stable and Highly Steerable Magnetic Nanorobots Demonstrate Therapeutical Functionality in Crowded Biological Media

稳定且高度可控的磁性纳米机器人在拥挤的生物介质中展现出治疗功能

Behera, Jyotiprakash; Laha, Suvra S; Dasgupta, Debayan; Goswami, Sayanta; Mukherjee, Souravi; Jaiswar, Ankur; Modak, Paramita; Banerjee, Mallar; Ramachandran, Reshma V; Morozov, Konstantin I; Leshansky, Alexander M; Bhat, Ramray; Saini, Deepak Kumar; Ghosh, Ambarish

Distinct Chemical Cues Reprogram Cellular and Multicellular Phenotypes in Ovarian Cancer Spheroids

不同的化学信号重编程卵巢癌球状体中的细胞和多细胞表型

Sreepadmanabh, M; Ganesh, Meenakshi; Langthasa, Jimpi; Bhat, Ramray; Bhattacharjee, Tapomoy

Rheological transition driven by matrix makes cancer spheroids resilient under confinement.

基质驱动的流变转变使癌细胞球体在受限环境下具有韧性

Dutt Tavishi, Langthasa Jimpi, Umesh Monica, Mishra Satyarthi, Bothra Siddharth, Vidhipriya Kottpalli, Vadaparty Annapurna, Sen Prosenjit, Bhat Ramray

Anisotropy, topography and non-newtonian properties of cellular interiors probed by helical magnetic nanobots

利用螺旋磁性纳米机器人探测细胞内部的各向异性、形貌和非牛顿特性

Mukherjee, Souravi; Ahmed, Nahid; Vasantha Ramachandran, Reshma; Bhat, Ramray; Kumar Saini, Deepak; Ghosh, Ambarish

Spatial heterogeneity in tumor adhesion qualifies collective cell invasion

肿瘤细胞黏附的空间异质性决定了细胞的集体侵袭能力。

Prasanna, C Venkata Sai; Jolly, Mohit Kumar; Bhat, Ramray

Ovarian cancer cells exhibit diverse migration strategies on stiff collagenous substrata

卵巢癌细胞在坚硬的胶原基质上表现出多种多样的迁移策略。

Suresh, Madhumitha; Bhat, Ramray

Tunable encapsulation of sessile droplets with solid and liquid shells

利用固体和液体壳对静止液滴进行可调封装

Lathia, Rutvik; Nagpal, Satchit; Modak, Chandantaru Dey; Mishra, Satyarthi; Sharma, Deepak; Reddy, Bheema Sankar; Nukala, Pavan; Bhat, Ramray; Sen, Prosenjit

How safe are magnetic nanomotors: From cells to animals

磁性纳米马达的安全性如何?从细胞到动物

Ramachandran, Reshma Vasantha; Barman, Anaxee; Modak, Paramita; Bhat, Ramray; Ghosh, Ambarish; Saini, Deepak Kumar

An interplay of resource availability, population size and mutation rate potentiates the evolution of metabolic signaling

资源可利用性、种群规模和突变率之间的相互作用促进了代谢信号的进化。

Kumawat, Bhaskar; Bhat, Ramray

Nanomotors Sense Local Physicochemical Heterogeneities in Tumor Microenvironments*

纳米马达感知肿瘤微环境中的局部理化异质性*

Dasgupta, Debayan; Pally, Dharma; Saini, Deepak K; Bhat, Ramray; Ghosh, Ambarish