Kim Min Jae, Seong Keum-Yong, Kim Da Som, Jeong Jea Sic, Kim So Young, Lee Seungsoo, Yang Seung Yun, An Beum-Soo
Department of Biomaterials Science (BK21 Program), Life and Industry Convergence Institute, Pusan National University, Miryang 50463, Republic of Korea.
SNvia Inc., Hyowon Industry-Cooperation Building., Pusan National University, Busan 46241, Republic of Korea.
Acta Biomater. 2022 Apr 15;143:189-202. doi: 10.1016/j.actbio.2022.02.011. Epub 2022 Feb 21.
Alopecia is defined as hair loss in a part of the head due to various causes, such as drugs, stress and autoimmune disorders. Various therapeutic agents have been suggested depending on the cause of the condition and patient sex, and age. Minoxidil (MXD) is commonly used topically to treat alopecia, but its low absorption rate limits widespread use. To overcome the low absorption, we suggest microneedles (MNs) as controlled drug delivery systems that release MXD. We used hyaluronic acid (HA) to construct MN, as it is biocompatible and safe. We examined the effect of HA on the hair dermal papilla (HDP) cells that control the development of hair follicles. HA enhanced proliferation, migration, and aggregation of HDP cell by increasing cell-cell adhesion and decreasing cell substratum. These effects were mediated by the cluster of differentiation (CD)-44 and phosphorylation of serine‑threonine kinase (Akt). In chemotherapy-induced alopecia mice, topical application of HA tended to decrease chemotherapy-induced hair loss. Although the amount of MXD administered by HA-MNs was 10% of topical treatment, the MXD-containing HA-MNs (MXD-HA-MNs) showed better effects on the growth of hair than topical application of MXD. In summary, our results demonstrated that HA reduces hair loss in alopecia mice, and that delivery of MXD and HA using MXD-HA-MNs maximizes therapeutic effects and minimize the side effects of MXD for the treatment of alopecia. STATEMENT OF SIGNIFICANCE: (1) Significance, This work reports a new approach for treatment of alopecia using a dissolving microneedle (MN) prepared with hyaluronic acid (HA). The HA provided a better environment for cellular functions in the hair dermal papilla cells. The HA-MNs containing minoxidil (MXD) exhibited a significant reduction of hair loss, although amount of MXD contained in them was only 10% of topically applied MXD., (2) Scientific impact, This is the first report demonstrating the direct anti-alopecia effects of HA administrated in a transdermal route and the feasibility of novel therapeutics using MXD-containing HA-MNs. We believe that our work will excite interdisciplinary readers of Acta Biomaterialia, those who are interested in the natural polymers, drug delivery, and alopecia.
脱发是指由于药物、压力和自身免疫性疾病等各种原因导致头部局部脱发。根据病情原因、患者性别和年龄,人们提出了各种治疗药物。米诺地尔(MXD)通常用于局部治疗脱发,但其低吸收率限制了其广泛应用。为了克服低吸收问题,我们建议使用微针(MNs)作为释放MXD的控释药物递送系统。我们使用透明质酸(HA)构建微针,因为它具有生物相容性且安全。我们研究了HA对控制毛囊发育的毛乳头(HDP)细胞的影响。HA通过增加细胞间粘附和减少细胞与基质的粘附来增强HDP细胞的增殖、迁移和聚集。这些作用是由分化簇(CD)-44和丝氨酸-苏氨酸激酶(Akt)的磷酸化介导的。在化疗诱导的脱发小鼠中,局部应用HA倾向于减少化疗诱导的脱发。尽管通过HA-MNs给药的MXD量仅为局部治疗的10%,但含MXD的HA-MNs(MXD-HA-MNs)对毛发生长的效果比局部应用MXD更好。总之,我们的结果表明,HA可减少脱发小鼠的脱发,并且使用MXD-HA-MNs递送MXD和HA可使治疗效果最大化,并将MXD治疗脱发的副作用降至最低。重要性声明:(1)重要性,本研究报告了一种使用透明质酸(HA)制备的溶解微针(MN)治疗脱发的新方法。HA为毛乳头细胞的细胞功能提供了更好的环境。含米诺地尔(MXD)的HA-MNs虽然其中所含MXD量仅为局部应用MXD的10%,但显著减少了脱发。(2)科学影响,这是第一份证明经皮给药HA具有直接抗脱发作用以及使用含MXD的HA-MNs进行新型治疗可行性的报告。我们相信,我们的工作将激发《生物材料学报》的跨学科读者,即那些对天然聚合物、药物递送和脱发感兴趣的读者。