Chitkara College of Pharmacy, Chitkara University, Punjab, India.
Analysis and Control Laboratories Department, Turkish Medicines and Medical Devices Agency, MoH, Ankara, Turkey.
J Drug Target. 2021 Sep;29(8):822-833. doi: 10.1080/1061186X.2021.1892122. Epub 2021 Mar 10.
Nanoscale robotics have the ability that it can productively transform multiple energy sources into motion and strength which reflects an expeditiously appearing and captivating area for research of robotics. In today's plethora, biomedical nanorobotics played an intricate character with numerous units of robots working at the pathological site in a coordinated manner. The synergistic action of the several nanorobotics has been employed for the fulfilment of the task such as large-scale detoxification, delivery of the large pharmacological/therapeutic efficacious payloads, etc. that is nearly unfeasible or unalterable practically by using single nanorobot. The collective intelligence of the nanorobot is advancing progressively at the nanoscale to reinforce their precision treatment potentially. Conclusively, after obtaining certain consideration regarding the nanorobotics sciences, many professionals are compendiously involving in the emerging highly efficacious therapeutic technology that encourages the scientist or designing of the tissues specific for the site-specific nanorobotic diagnostic devices. As a result, the closed and professional type between the field of Nanotechnology and Medical Sciences will provide another new highly oriented level to the domain of nanorobotics.
纳米机器人具有将多种能源有效地转化为运动和力量的能力,这反映了机器人研究领域一个迅速出现并引人注目的领域。在当今的众多领域中,生物医学纳米机器人扮演着复杂的角色,许多机器人单元在病理部位协同工作。几个纳米机器人的协同作用已经被用于完成任务,如大规模解毒、输送大的药理学/治疗有效载荷等,这些任务几乎不可能或不可改变地通过使用单个纳米机器人来完成。纳米机器人的集体智能正在纳米尺度上逐步推进,以增强它们潜在的精确治疗能力。总之,在对纳米机器人科学进行了一定的考虑之后,许多专业人士正在简接地参与新兴的高效治疗技术,这鼓励了针对特定部位的纳米机器人诊断设备的组织的科学家或设计人员。因此,纳米技术和医学领域之间的封闭和专业类型将为纳米机器人领域提供另一个新的高度定向的层次。