Nethi Susheel Kumar, Barui Ayan Kumar, Bollu Vishnu Sravan, Rao Bonda Rama, Patra Chitta Ranjan
Chemical Biology Division, CSIR-Indian Institute of Chemical Technology, Uppal Road, Tarnaka, Hyderabad 500007, Telangana State, India.
Training and Development Complex, Academy of Scientific and Innovative Research (AcSIR), CSIR Campus, CSIR Road, Taramani, Chennai 600113, India.
ACS Biomater Sci Eng. 2017 Dec 11;3(12):3635-3645. doi: 10.1021/acsbiomaterials.7b00457. Epub 2017 Dec 1.
The process of angiogenesis, involving generation of new blood vessels from the existing ones, is vital for the supply of oxygen and nutrients to various tissues of body system. Angiogenesis is directly associated with several physiological and pathological processes. It is well-established that impairment in angiogenesis process results in various fatal conditions. Recently, few research groups including ours demonstrated therapeutic angiogenesis through nanomedicine approach using metal oxide/hydroxide nanoparticles. However, there is still a thorough necessity for the development of novel, eco-friendly, pro-angiogenic nanomaterials. Hence, in the present study we demonstrate the in vitro and in vivo pro-angiogenic properties of terbium hydroxide nanorods (THNRs) synthesized using an advanced microwave irradiation method, along with the detailed molecular signaling cascade underlying THNRs induced angiogenesis. The in vivo wound healing and nonimmunogenicity of the THNRs have been validated in the mouse models. We thus strongly believe that the present study establishing the pro-angiogenic properties of THNRs will aid in the development of alternative treatment strategies for wound healing along with cardiovascular and ischemic diseases, where angiogenesis is the chief target.
血管生成过程,即从现有血管生成新血管的过程,对于向身体系统的各种组织供应氧气和营养物质至关重要。血管生成与多种生理和病理过程直接相关。众所周知,血管生成过程的受损会导致各种致命状况。最近,包括我们在内的几个研究小组通过使用金属氧化物/氢氧化物纳米颗粒的纳米医学方法证明了治疗性血管生成。然而,仍然迫切需要开发新型、环保、促血管生成的纳米材料。因此,在本研究中,我们展示了使用先进的微波辐射方法合成的氢氧化铽纳米棒(THNRs)的体外和体内促血管生成特性,以及THNRs诱导血管生成的详细分子信号级联。THNRs在小鼠模型中的体内伤口愈合和非免疫原性已经得到验证。因此,我们坚信本研究确立的THNRs的促血管生成特性将有助于开发针对伤口愈合以及心血管和缺血性疾病的替代治疗策略,其中血管生成是主要靶点。