Liu Guangli, Wu Qiang, Dwivedi Pankaj, Hu Chuanzhen, Zhu Zhiqiang, Shen Shuwei, Chu Jiaru, Zhao Gang, Si Ting, Xu Ronald
Department of Precision Machinery and Precision Instrumentation, University of Science and Technology of China, Huangshan Road, Hefei, Anhui 230027, China.
Department of Modern Mechanics, University of Science and Technology of China, Huangshan Road, Hefei, Anhui 230027, China.
ACS Biomater Sci Eng. 2018 Sep 10;4(9):3177-3184. doi: 10.1021/acsbiomaterials.8b00830. Epub 2018 Aug 15.
We propose one-step synthesis of hemoglobin-laden microcapsules (HbMs) by the liquid-driven coaxial flow focusing (LDCFF) method, in which purified hemoglobin (Hb) is fully encapsulated inside photocurable resin with a solid core-shell structure. The polymeric shell constitutes a rigid semipermeable membrane which prevents the leakage of Hb and allows oxygen transport. Gas-binding capacity and oxygen affinity of HbMs are comparable to the purified Hb. Solid HbMs phantoms (SHMPs) are also fabricated using resin-based HbMs homogeneously mixed with oil-soluble silicone. The spectral characteristics of SHMPs closely resemble to that of oxy-hemoglobin, and its long-term stability is more than 25 weeks. HbM dispersion with certain absorption and scattering properties circulating through the dialysis tube simulates tissue oxygen dynamics compared with the post occlusive reactive hyperemia (PORH) test on the healthy volunteer. The occlusion test indicates that HbMs dispersion solution can substitute conventional blood phantom. Our studies have shown that microencapsulation of Hb effectively protects it from the external environment, which makes HbMs promising for optical tissue-simulating phantom in biomedical fields.
我们提出通过液体驱动同轴流聚焦(LDCFF)方法一步合成载血红蛋白微胶囊(HbMs),其中纯化的血红蛋白(Hb)被完全包裹在具有实心核壳结构的光固化树脂内部。聚合物壳构成了一个刚性半透膜,可防止Hb泄漏并允许氧气传输。HbMs的气体结合能力和氧亲和力与纯化的Hb相当。固体HbMs体模(SHMPs)也是通过将基于树脂的HbMs与油溶性硅酮均匀混合制成的。SHMPs的光谱特性与氧合血红蛋白非常相似,其长期稳定性超过25周。与健康志愿者的闭塞后反应性充血(PORH)测试相比,具有一定吸收和散射特性的HbM分散液在透析管中循环可模拟组织氧动力学。闭塞测试表明HbMs分散液可以替代传统的血液体模。我们的研究表明,Hb的微囊化有效地保护了它免受外部环境的影响,这使得HbMs在生物医学领域作为光学组织模拟体模具有广阔前景。