Lee Jung Ho, Jeong Hyeon Seon, Lee Dong Hyun, Beack Songeun, Kim Taeyeon, Lee Geon-Hui, Park Won Chan, Kim Chulhong, Kim Ki Su, Hahn Sei Kwang
Department of Organic Materials Science and Engineering, College of Engineering, Pusan National University, 2 Busandaehak-ro 63 beon-gil, Gumjeong-gu, Busan 46241, Korea.
PHI BIOMED Company, Rm 613, 12 Gangnam-daero 65-gil, Seocho-gu, Seoul 06612, Korea.
ACS Biomater Sci Eng. 2017 Dec 11;3(12):3646-3653. doi: 10.1021/acsbiomaterials.7b00549. Epub 2017 Nov 9.
Obesity is associated with the risk of developing several severe diseases, such as metabolic disorder, diabetes, and heart diseases. Despite wide investigation and trials, a noninvasive obesity therapy is still an important medical unmet need, targeting the abnormal adipose tissue. Here, we developed hyaluronate-hollow gold nanosphere-adipocyte-targeting peptide (HA-HAuNS-ATP) conjugates for the photothermal ablation of adipose tissues. The HA-HAuNS-ATP conjugate could be noninvasively delivered into the skin and effectively target to adipocytes in the subcutaneous. With near-infrared laser illumination, HA-HAuNS-ATP conjugate enabled highly effective photothermal ablation of adipose tissues in C57BL/6 obesity mice. The photoacoustic imaging confirmed the successful transdermal delivery and the photothermal lipolysis of HA-HAuNS-ATP conjugate. Taken together, the transdermal HA-HAuNS-ATP conjugate might have a great potential for noninvasive photothermal lipolysis.
肥胖与多种严重疾病的发生风险相关,如代谢紊乱、糖尿病和心脏病。尽管进行了广泛的研究和试验,但针对异常脂肪组织的非侵入性肥胖治疗仍是一项重要的医学未满足需求。在此,我们开发了透明质酸-中空金纳米球-脂肪细胞靶向肽(HA-HAuNS-ATP)偶联物用于脂肪组织的光热消融。HA-HAuNS-ATP偶联物可以非侵入性地递送至皮肤,并有效靶向皮下脂肪细胞。通过近红外激光照射,HA-HAuNS-ATP偶联物能够在C57BL/6肥胖小鼠中实现高效的脂肪组织光热消融。光声成像证实了HA-HAuNS-ATP偶联物成功的经皮递送和光热脂肪分解。综上所述,经皮HA-HAuNS-ATP偶联物在非侵入性光热脂肪分解方面可能具有巨大潜力。