Rojruthai Porntip, Sakdapipanich Jitladda, Wiriyanantawong Jinjutha, Ho Chee-Cheong, Chaiear Naesinee
Division of Chemical Industrial Process and Environment, Faculty of Science, Energy and Environment, King Mongkut's University of Technology North Bangkok, Rayong 21120, Thailand.
Department of Chemistry and Center of Excellence for Innovation in Chemistry (PERCH-CIC), Faculty of Science, Mahidol University, Salaya Campus, Phutthamonthon, Nakhon Pathom 73170, Thailand.
Polymers (Basel). 2022 Nov 2;14(21):4679. doi: 10.3390/polym14214679.
Natural rubber (NR) gloves manufactured from NR latex are widely utilized in various applications as a personal protective device due to their exceptional barrier characteristics in infection control. However, the use of NR gloves was associated with concerns on NR protein allergy. With comprehensive leaching procedures now a common practice in NR latex glove factories to eliminate latent rubber proteins and chemical allergens, occurrences and complaints of protein allergy from medical glove users have decreased drastically over the past two decades. The present work aims to eliminate further the residual rubber allergens in NR latex through effective purification of the NR latex and compounding the thus purified latex with an established formulation for allergy-free NR for glove applications. NR latex was purified by deproteinization and saponification, respectively. Several analytical techniques were used to verify rubber allergens eliminated in the purified latexes. Saponified NR (SPNR) latex was the purified NR latex of choice since it is devoid of allergenic proteins and poses the lowest risk of Type I allergy. The purified NR latex was compounded with zinc diethyldithiocarbamate (ZDEC), zinc dibutyldithiocarbamate (ZDBC), and zinc 2-mercaptobenzothiazole (ZMBT), respectively, for glove dipping. Among the investigated accelerators, only ZDBC was not detected in the artificial sweat that came into contact with the dipped articles. Thus, it is deduced that ZDBC poses the lowest risk of Type IV allergy to consumers. Additionally, the morphological and physical properties of dipped articles were assessed. It was revealed that the dipped film from the SPNR latex compounded with ZDBC provided thinner and less yellow products with a more uniform internal structure and a tensile strength comparable to those of commercial NR gloves.
由天然橡胶(NR)胶乳制成的NR手套,因其在感染控制方面具有出色的阻隔特性,作为个人防护用品被广泛应用于各种领域。然而,NR手套的使用引发了人们对NR蛋白过敏的担忧。随着全面浸出程序如今在NR胶乳手套工厂中成为常见做法,以消除潜在的橡胶蛋白和化学过敏原,在过去二十年里,医疗手套使用者中蛋白质过敏的发生率和投诉量已大幅下降。目前的工作旨在通过有效纯化NR胶乳,并将纯化后的胶乳与既定的无过敏NR配方混合用于手套应用,进一步消除NR胶乳中的残留橡胶过敏原。分别通过脱蛋白和皂化对NR胶乳进行纯化。使用了几种分析技术来验证纯化胶乳中消除的橡胶过敏原。皂化NR(SPNR)胶乳是首选的纯化NR胶乳,因为它不含致敏蛋白,且引发I型过敏的风险最低。将纯化后的NR胶乳分别与二乙基二硫代氨基甲酸锌(ZDEC)、二丁基二硫代氨基甲酸锌(ZDBC)和2-巯基苯并噻唑锌(ZMBT)混合,用于手套浸渍。在所研究的促进剂中,只有ZDBC在与浸渍制品接触的人工汗液中未被检测到。因此,可以推断ZDBC对消费者引发IV型过敏的风险最低。此外,还评估了浸渍制品的形态和物理性能。结果表明,与ZDBC混合的SPNR胶乳制成的浸渍膜提供了更薄、颜色更浅的产品,其内部结构更均匀,拉伸强度与商用NR手套相当。