1. Development and evaluation on the primipara social capital scale
Chi ZHOU ; Ruinan LAI ; Xueni ZHANG ; Hao CHEN ; Weijue WANG ; Baodan ZHANG
Chinese Journal of Preventive Medicine 2017;51(4):313-318
Objective:
To develop the Chinese primipara social capital scale (C-PSCS), and to evaluate its validity and reliability.
Methods:
The items of C-PSCS were developed based on Social Capital Scale by the World Bank and Social Network Scale. This scale was modified according to the characteristics of primiparas. We selected 10 experts who specialized in related field, and two rounds of seminars about content, cultural compatibility, primiparas' characteristics, and practicability. The finally C-PSCS included four dimensions: social trust, social reciprocity, social network, and social participation. Using purposive sampling to select 1 100 primiparas in their third trimesters (gestational weeks from 30 to 36 weeks). The validity analyses included content validity, construct validity and discriminant validity. The reliability analyses included Cronbach' α coefficient, and split-half reliability.
Results:
1 035 questionnaires (94.09%) were qualified and the completion time was (13.23 ± 2.53) minutes. The total score of scale was 195.38 ± 45.98, and scores for social trust, social reciprocity, social network, and social participation were 30.26 ± 4.25, 22.84 ± 4.21, 34.23 ± 7.47, and 108.05 ± 41.96, respectively. The common factor cumulative variance contribution rates of each dimension were from 52.92% to 69.37%, which achieved more than 50% of the approved standard, and all the items held factor loading >0.5 in its relevant common factor, it had good construct validity. The scale had a good content validity, the
2.Application and advances of nanozyme-loaded tissue engineering scaffolds in wound repair
Ruinan HAO ; Xilin YE ; Bolong XU ; Yun SUN ; Huiyu LIU ; Feng RAO ; Jiajia XUE
Chinese Journal of Burns 2023;39(6):591-595
At present, effective reconstruction of the integrity and functionality of damaged skin tissue remains an important medical problem in the field of wound repair. In recent years, the rapid development of nanozymes and tissue engineering scaffolds in the field of regenerative medicine has made it possible to develop new skin wound repair materials. Based on the process of skin wound repair and regeneration, this review briefly describes the nanozymes and its catalytic mechanism. At the same time, the common tissue engineering scaffolds loaded with nanozymes and their manufacturing strategies are introduced, the application of tissue engineering scaffolds loaded with nanozymes during the stages of anti-bacteria and anti-inflammation in the process of wound repair is summarized, and their future development direction is discussed.