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内蒙古民族大学化学与材料学院,通辽 028000
内蒙古民族大学蒙医药学院
鄂尔多斯市蒙医医院五疗科
内蒙古民族大学附属医院蒙药功能性食品研发中心
海文峰,讲师。E-mail:hai_wenfeng@163.com
收稿:2024-10-22,
网络首发:2025-02-19,
纸质出版:2025-05-12
移动端阅览
海文峰, 刘佳欣, 刘洋, 等. 银纳米针灸针的制备及其理化性能研究[J]. 中国针灸, 2025,45(5):568-576.
HAI Wenfeng, LIU Jiaxin, LIU Yang, et al. Preparation and physicochemical properties of nano-silver acupuncture needles[J]. Chinese Acupuncture & Moxibustion, 2025, 45(5): 568-576.
海文峰, 刘佳欣, 刘洋, 等. 银纳米针灸针的制备及其理化性能研究[J]. 中国针灸, 2025,45(5):568-576. DOI: 10.13703/j.0255-2930.20241022-k0001.
HAI Wenfeng, LIU Jiaxin, LIU Yang, et al. Preparation and physicochemical properties of nano-silver acupuncture needles[J]. Chinese Acupuncture & Moxibustion, 2025, 45(5): 568-576. DOI: 10.13703/j.0255-2930.20241022-k0001.
目的:
2
探讨银纳米针灸针的制备方法,并对其形貌、结构和性能进行评估。
方法:
2
对不锈钢针灸针进行砂纸打磨、超纯水及无水乙醇清洗预处理;将针作为工作电极置于含有硝酸银(AgNO
3
)、硝酸钾(KNO
3
)及聚乙烯吡咯烷酮(PVP)的电解液中,以-0.2 V恒定电压沉积银纳米颗粒(沉积时间1 200 s),并于氩气环境下600 ℃热处理15 min以增强颗粒与基体的结合力;通过扫描电子显微镜(SEM)、X射线衍射(XRD)和X射线光电子能谱(XPS)技术对银纳米针灸针表面形貌和结构进行表征;评价银纳米针灸针的导电、导热、生物相容性;利用CCK-8法评估样品的细胞毒性和生物相容性;参照国家标准《针灸针》(GB 2024-2016),对银纳米针灸针进行其他理化性能测试。
结果:
2
①通过调控AgNO
3
浓度及AgNO
3
与PVP的摩尔比,发现在AgNO
3
浓度为2 mmol/L且摩尔比为5∶1时,可获得直径50~100 nm、形貌规则且分布均匀的银纳米颗粒;低浓度时颗粒尺寸较小且分布不均,高浓度则易生成树枝状结构。②对针灸针进行砂纸打磨、酸刻蚀预处理,并在氩气环境下600 ℃热处理15 min,增强了银纳米颗粒在针体表面的附着力,模拟猪皮穿刺试验中镀层完整无脱落。③SEM观察显示银纳米颗粒均匀沉积形成约1.5 μm厚的银纳米薄膜,XRD分析呈现立方晶系银(111)(200)(220)和(311)衍射峰,XPS检测到银(Ag)3d3/2和Ag 3d5/2的特征峰,充分证明了银纳米颗粒的成功沉积及良好结晶性。④电阻率测试表明,银纳米针灸针的电阻率约为0.15 Ω·cm,比未修饰的不锈钢针灸针低约3倍;红外热成像结果则证明其导热性能优于传统针灸针。体外CCK-8细胞毒性实验显示,银纳米针灸针对人皮肤成纤维细胞无不良影响,具有良好的生物相容性。⑤针尖性能、硬度、针体与针柄的连接牢固度等关键指标均符合国家标准《针灸针》(GB 2024-2016)的要求,为临床应用提供了坚实的质量保障。
结论:
2
银纳米针灸针的制备方法有效解决了传统银针的韧性不足问题,还提升了不锈钢针灸针的导电和导热性能。
Objective
2
To explore the preparation of nano-silver acupuncture needles and evaluate the appearance
structure and properties.
Methods
2
Stainless steel acupuncture needles were pretreated by polishing with sandpaper and cleaning with ultrapure water and absolute ethanol. As the working electrodes
the needles were placed in an electrolyte solution contained silver nitrate (AgNO
3
)
potassium nitrate (KNO
3
)
and polyvinylpyrrolidone (PVP); and the silver nanoparticles were deposited at a constant voltage of -0.2 V for 1 200 s. The heat-treatment was conducted at 600 ℃ for 15 min in an argon atmosphere to strengthen the adhesion between
the nanoparticles and the substrate. The surface appearance and structure of nano-silver acupuncture needles were characterized by scanning electron microscopy (SEM)
X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). The electrical conductivity
thermal conductivity and biocompatibility of the needles were evaluated. The cytotoxicity and biocompatibility of the sample were assessed using the CCK-8 assay. According to the national standard
Acupuncture Needles
(GB 2024-2016)
the other physicochemical performances of nano-silver acupuncture needles were tested.
Results
2
①By controlling the AgNO
3
concentration and the molar ratio of AgNO
3
to PVP
it was found that at an AgNO
3
concentration of 2 mmol/L and a molar ratio of 5∶1
silver nanoparticles with the diameter of 50-100 nm
regular appearance
and uniform distribution were obtained. At a lower concentration
the size of silver nanoparticles was smaller and unevenly distributed particles
whereas a higher concentration tended to produce a dendritic structure. ②By sandpaper polishing
acid etching pretreatment
and heat-treatment at 600 ℃ under argon for 15 min
the adhesion of silver nanoparticles on the surface of the needle body was strengthened
and the simulated pig skin puncture test showed the intact coating without shedding. ③SEM found that the silver nanoparticles were uniformly deposited
forming a nanofilm approximately 1.5 μm thick; XRD analysis showed the diffraction peaks corresponding to cubic crystal silver (111)
(200)
(220) and (311); and XPS detected characteristic peaks of Ag 3d3/2 and Ag 3d5/2
confirming the successful deposition and good crystallinity of the silver nanoparticles. ④Resistivity measurements indicated that the nano-silver acupuncture needles exhibited a resistivity of approximately 0.15 Ω·cm
about three times lower than that of unmodified stainless steel needles. The infrared thermography demonstrated that their thermal conduct
ivity was superior to that of traditional acupuncture needles. In vitro CCK-8 cytotoxicity assay showed that the nano-silver acupuncture needles had no adverse effects on human skin fibroblasts and possessed good biocompatibility. ⑤ The key parameters such as needle tip performance
hardness
and the adhesion between the needle body and handle were in compliance with the requirements in
Acupuncture Needles
(GB 2024-2016)
ensuring a quality guarantee provided for clinical applications.
Conclusion
2
The preparation of nano-silver acupuncture needles effectively overcomes the insufficient toughness of traditional silver needles and improves the electrical and thermal conductivity of stainless acupuncture needles.
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