Lactic acid detection based on Pd-coated vesicles and lipid nanotubes

Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

Lactic acid is an essential metabolite in the human body. Developing a reliable non-invasive lactic acid sensor faces the challenge of the limited biocompatibility of the sensor-supporting material. Replacing traditional carbon-based materials with biocompatible options such as lipids offers an effective solution. In this study, vesicles are prepared by drying and rehydrating, while lipid nanotubes (LNTs) are synthesized via slow cooling and ultraviolet polymerization to serve as catalyst supports. Both lipid carriers are coated with Pd through seeding and growth. To compare different Pd morphologies and their effectiveness as catalyst supports depending on the lipid carrier, the seeding products on each carrier are examined with transmission electron microscopy. The growth pattern is also monitored at 100 s, 200 s, and 300 s. All Pd-coated lipid carriers detect lactic acid in artificial sweat via cyclic voltammetry. The standard deviation of Pd-coated LNTs is relatively small, and linear fitting results show that Pd-coated LNTs (300 s) are more suitable for lactic acid detection, with an R2 value of 0.984, a low limit of detection of 4.3 mM, and a relatively high sensitivity of 0.176 mA⋅mM⁻¹⋅cm⁻².

키워드

Lactic acid detectionLipid nanotubesPdVesiclesSWEAT
제목
Lactic acid detection based on Pd-coated vesicles and lipid nanotubes
저자
Wang, HanqunKim, JihwanYoon, Chong Seung
DOI
10.1016/j.surfin.2026.108943
발행일
2026-04
유형
Article
저널명
SURFACES AND INTERFACES
87
페이지
1 ~ 9