Department of Chemistry, University of Alabama at Birmingham , Birmingham, Alabama 35294, United States.
Department of Bioengineering, University of Texas at Dallas , Richardson, Texas 75080, United States.
ACS Nano. 2017 Mar 28;11(3):3135-3146. doi: 10.1021/acsnano.7b00151. Epub 2017 Mar 10.
Despite the accessibility of ultrasound, the clinical potential of ultrasound-active theranostic agents has not been fully realized because it requires combining sufficient imaging contrast, high encapsulation efficiency, and ultrasound-triggered release in one entity. We report on theranostic polymer microcapsules composed of hydrogen-bonded multilayers of tannic acid and poly(N-vinylpyrrolidone) that produce high imaging contrast and deliver the anticancer drug doxorubicin upon low-power diagnostic or high-power therapeutic ultrasound irradiation. These capsules exhibit excellent imaging contrast in both brightness and harmonic modes and show prolonged contrast over six months, unlike commercially available microbubbles. We also demonstrate low-dose gradual and high-dose fast release of doxorubicin from the capsules by diagnostic (∼100 mW/cm) and therapeutic (>10 W/cm) ultrasound irradiation, respectively. We show that the imaging contrast of the capsules can be controlled by varying the number of layers, polymer type (relatively rigid tannic acid versus more flexible poly(methacrylic acid)), and polymer molecular weight. In vitro studies demonstrate that 50% doxorubicin release from ultrasound-treated capsules induces 97% cytotoxicity to MCF-7 human cancer cells, while no cytotoxicity is found without the treatment. Considering the strong ultrasound imaging contrast, high encapsulation efficiency, biocompatibility, and tunable drug release, these microcapsules can be used as theranostic agents for ultrasound-guided chemotherapy.
尽管超声技术易于使用,但超声活性治疗剂的临床应用潜力尚未得到充分实现,因为这需要将足够的成像对比度、高封装效率和超声触发释放结合在一个实体中。我们报告了由单宁酸和聚(N-乙烯基吡咯烷酮)氢键多层组成的治疗诊断聚合物微胶囊,这些微胶囊在低功率诊断或高功率治疗超声辐射下能产生高成像对比度,并能输送抗癌药物阿霉素。这些胶囊在亮度和谐波模式下均表现出优异的成像对比度,并能持续长达六个月,这与市售的微泡不同。我们还通过诊断(约 100 mW/cm)和治疗(>10 W/cm)超声辐射,分别证明了阿霉素从胶囊中的低剂量逐渐和高剂量快速释放。我们表明,通过改变层的数量、聚合物类型(相对刚性的单宁酸与更灵活的聚(甲基丙烯酸))和聚合物分子量,可以控制胶囊的成像对比度。体外研究表明,经超声处理的胶囊中 50%的阿霉素释放可使 MCF-7 人癌细胞产生 97%的细胞毒性,而未经处理则没有细胞毒性。考虑到强烈的超声成像对比度、高封装效率、生物相容性和可调节的药物释放,这些微胶囊可用作超声引导化疗的治疗诊断剂。