Department of Plastic and Reconstructive Surgery, College of Medicine, Seoul National University, Seoul, South Korea.
Department of Plastic and Reconstructive Surgery, Seoul National University Bundang Hospital, Seongnam, South Korea.
Skin Res Technol. 2024 Jul;30(7):eSRT13784. doi: 10.1111/srt.13784.
Microneedles are tiny needles, typically ranging from tens to hundreds of micrometers in length, used in various medical procedures and treatments. The tested medical device named "CELLADEEP Patch" a dissolvable microneedle therapy system (MTS), made of hyaluronic acid and collagen. And the iontophoresis technique is also applied in the system. The study aimed to evaluate the effectiveness of the "CELLADEEP Patch" in skin improvement.
Ex vivo human-derived skin tissue models were used in this study and they were divided into three different groups, namely, the Untreated Group, the Negative Control Group, and the Test Group respectively. The Untreated Group received no treatment measures, the Negative Control Group was exposed to ultraviolet B radiation (UVB) irradiation, and the Test Group was exposed to UVB irradiation and treated with "CELLADEEP Patch". Skin moisture content, transdermal water loss, and skin elasticity were evaluated by three clinical devices. Additionally, histological staining and related mRNA expression levels were also analyzed.
The results of skin moisture content, transdermal water loss, and skin elasticity evaluation consistently illustrated that the application of "CELLADEEP Patch" led to remarkable skin improvement. And the analysis of histological staining images also confirmed the effectiveness of the "CELLADEEP Patch", especially for increasing collagen density. Moreover, the upregulation of Collagen type 1 a (COL1A1) and hyaluronan synthase 3 mRNA expression and the decrease of Matrix metalloproteinase 1 (MMP-1) and Interleukin-1 beta (IL-1β) mRNA expression reflected its wrinkle improvement, moisturizing and anti-inflammation function.
"CELLADEPP Patch", the MTS combined with the iontophoresis technique, exhibits its effectiveness in moisturizing, skin elasticity improvement, and anti-inflammatory function when applied to ex vivo human-derived skin tissue models in experiments. The study has contributed to the understanding of the "CELLADEPP Patch" and laid the foundation for subsequent animal experiments and clinical trials.
微针是一种微小的针,通常长度在数十到数百微米之间,用于各种医疗程序和治疗。测试的医疗设备名为“CELLADEEP Patch”,是一种可溶解的微针治疗系统(MTS),由透明质酸和胶原蛋白制成。该系统还应用了离子电渗技术。本研究旨在评估“CELLADEEP Patch”在改善皮肤方面的效果。
本研究使用离体人源性皮肤组织模型,将其分为三组,分别为未处理组、阴性对照组和测试组。未处理组不接受任何治疗措施,阴性对照组接受紫外线 B 辐射(UVB)照射,测试组接受 UVB 照射和“CELLADEEP Patch”治疗。使用三种临床设备评估皮肤水分含量、经皮水分损失和皮肤弹性。此外,还进行了组织学染色和相关 mRNA 表达水平分析。
皮肤水分含量、经皮水分损失和皮肤弹性评估结果一致表明,应用“CELLADEEP Patch”可显著改善皮肤。组织学染色图像分析也证实了“CELLADEEP Patch”的有效性,特别是增加了胶原蛋白密度。此外,Collagen type 1 a (COL1A1)和 hyaluronan synthase 3 mRNA 表达上调,基质金属蛋白酶 1 (MMP-1)和白细胞介素 1β (IL-1β) mRNA 表达下调,反映了其改善皱纹、保湿和抗炎功能。
MTS 与离子电渗技术相结合的“CELLADEPP Patch”在离体人源性皮肤组织模型实验中表现出保湿、改善皮肤弹性和抗炎功能的效果。本研究有助于了解“CELLADEPP Patch”,为后续动物实验和临床试验奠定了基础。