Wu Jeffrey H, Li Bo, Wu Mei X
Wellman Center for Photomedicine, Massachusetts General Hospital, Department of Dermatology, Harvard Medical School, 50 Blossom Street, Edwards 222, Boston, MA 02114, USA.
J Biophotonics. 2016 Jul;9(7):676-82. doi: 10.1002/jbio.201500226. Epub 2016 Jan 18.
Circulation system is the center for coordination and communication of all organs in our body. Examination of any change in its analytes or delivery of therapeutic drugs into the system consists of important medical practice in today's medicine. Two recent studies prove that brief illumination of skin with a low powered laser, at wavelengths preferentially absorbed by hemoglobin, increases the amount of circulating biomarkers in the epidermis and upper dermis by more than 1,000-fold. When probe-coated microneedle arrays are applied into laser-treated skin, plasma blood biomarkers can be reliably, accurately, and sufficiently quantified in 15∼30 min assays, with a maximal detection in one hr in a manner independent of penetration depth or a molecular mass of the biomarker. Moreover, the laser treatment permits a high efficient delivery of radiation-attenuated malarial sporozoites (RAS) into the circulation, leading to robust immunity against malaria infections, whereas similar immunization at sham-treated skin elicits poor immune responses. Thus this technology can potentially instruct designs of small, portable devices for onsite, in mobile clinics, or at home for point-of-care diagnosis and drug/vaccine delivery via the skin. Laser-induced capillary leakage (a) to induce extravasation of circualing molecules only (b) or facilitate entry of attenuated malaria sporozoites into the capillary (c). Skin illumination with a laser preferably absorbed by hemoglobin causes dilation of the capillary beneath the skin. The extravasated molecules can be sufficiently measured in the skin or guide sporozoites to enter the vessel.
循环系统是我们身体中所有器官协调与沟通的中心。检测其分析物的任何变化或治疗药物进入该系统的情况是当今医学中的重要医疗实践。最近的两项研究证明,用低功率激光对皮肤进行短暂照射,激光波长优先被血红蛋白吸收,可使表皮和真皮上层中循环生物标志物的量增加1000倍以上。当将探针包被的微针阵列应用于激光处理过的皮肤时,血浆血液生物标志物可以在15至30分钟的检测中可靠、准确且充分地定量,在一小时内达到最大检测量,且方式与生物标志物的穿透深度或分子量无关。此外,激光治疗可高效地将辐射减毒的疟原虫子孢子(RAS)输送到循环系统中,从而产生强大的抗疟疾感染免疫力,而在假处理皮肤处进行类似免疫接种则引发较差的免疫反应。因此,这项技术有可能指导设计小型便携式设备,用于现场、移动诊所或家中进行即时护理诊断以及通过皮肤进行药物/疫苗输送。激光诱导的毛细血管渗漏(a)仅诱导循环分子外渗(b)或促进减毒疟原虫子孢子进入毛细血管(c)。用优先被血红蛋白吸收的激光照射皮肤会导致皮肤下毛细血管扩张。渗出的分子可以在皮肤中充分测量或引导子孢子进入血管。