Veterans Health Administration, Rocky Mountain Mental Illness Research Education and Clinical Center (MIRECC), Rocky Mountain Regional Veterans Affairs Medical Center (RMRVAMC), VISN 19, Aurora, CO, 80045, USA.
Department of Physical Medicine and Rehabilitation, University of Colorado Anschutz Medical Campus, Aurora, CO, 80045, USA.
Sci Rep. 2023 Apr 20;13(1):6446. doi: 10.1038/s41598-023-33719-6.
Compared to microbiomes on other skin sites, the bacterial microbiome of the human hand has been found to have greater variability across time. To increase understanding regarding the longitudinal transfer of the hand microbiome to objects in the built environment, and vice versa, 22 participants provided skin microbiome samples from their dominant hands, as well as from frequently and infrequently touched objects in their office environments. Additional longitudinal samples from home environments were obtained from a subset of 11 participants. We observed stability of the microbiomes of both the hand and built environments within the office and home settings; however, differences in the microbial communities were detected across the two built environments. Occupants' frequency of touching an object correlated to that object having a higher relative abundance of human microbes, yet the percent of shared microbes was variable by participants. Finally, objects that were horizontal surfaces in the built environment had higher microbial diversity as compared to objects and the occupants' hands. This study adds to the existing knowledge of microbiomes of the built environment, enables more detailed studies of indoor microbial transfer, and contributes to future models and building interventions to reduce negative outcomes and improve health and well-being.
与其他皮肤部位的微生物组相比,人类手部的细菌微生物组在时间上的变化更大。为了增加对手部微生物组向建筑环境中的物体以及反之的纵向转移的理解,22 名参与者提供了来自他们优势手以及办公室环境中经常和不常接触的物体的皮肤微生物组样本。从 11 名参与者中的一部分获得了来自家庭环境的额外纵向样本。我们观察到办公室和家庭环境中手部和建筑环境的微生物组都具有稳定性;然而,在两个建筑环境中检测到微生物群落的差异。居住者触摸物体的频率与该物体具有更高的人类微生物相对丰度相关,但共享微生物的百分比因参与者而异。最后,建筑环境中的水平表面的物体比物体和居住者的手具有更高的微生物多样性。这项研究增加了对建筑环境中微生物组的现有知识,使室内微生物转移的研究更加详细,并为未来的模型和建筑干预措施做出贡献,以减少负面结果,改善健康和福祉。