首页> 外文期刊>International journal of toxicology >Final report on the safety assessment of Ricinus Communis (Castor) Seed Oil, Hydrogenated Castor Oil, Glyceryl Ricinoleate, Glyceryl Ricinoleate SE, Ricinoleic Acid, Potassium Ricinoleate, Sodium Ricinoleate, Zinc Ricinoleate, Cetyl Ricinoleate, Ethyl Ricinoleate, Glycol Ricinoleate, Isopropyl Ricinoleate, Methyl Ricinoleate, and Octyldodecyl Ricinoleate.
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Final report on the safety assessment of Ricinus Communis (Castor) Seed Oil, Hydrogenated Castor Oil, Glyceryl Ricinoleate, Glyceryl Ricinoleate SE, Ricinoleic Acid, Potassium Ricinoleate, Sodium Ricinoleate, Zinc Ricinoleate, Cetyl Ricinoleate, Ethyl Ricinoleate, Glycol Ricinoleate, Isopropyl Ricinoleate, Methyl Ricinoleate, and Octyldodecyl Ricinoleate.

机译:关于蓖麻籽油,氢化蓖麻油,甘油蓖麻油酸酯,甘油蓖麻油酸酯SE,蓖麻油酸,蓖麻油酸钾,蓖麻油酸钠,蓖麻油酸锌,鲸蜡基蓖麻油酸酯,乙基蓖麻油酸酯,蓖麻油酸蓖麻油酸酯的安全性评估的最终报告蓖麻油酸甲酯和蓖麻油酸十二烷基酯。

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摘要

The oil derived from the seed of the Ricinus communis plant and its primary constituent, Ricinoleic Acid, along with certain of its salts and esters function primarily as skin-conditioning agents, emulsion stabilizers, and surfactants in cosmetics, although other functions are described. Ricinus Communis (Castor) Seed Oil is the naming convention for castor oil used in cosmetics. It is produced by cold pressing the seeds and subsequent clarification of the oil by heat. Castor oil does not contain ricin because ricin does not partition into the oil. Castor oil and Glyceryl Ricinoleate absorb ultraviolet (UV) light, with a maximum absorbance at 270 nm. Castor oil and Hydrogenated Castor Oil reportedly were used in 769 and 202 cosmetic products, respectively, in 2002; fewer uses were reported for the other ingredients in this group. The highest reported use concentration (81%) for castor oil is associated with lipstick. Castor oil is classified by Food and Drug Administration (FDA) as generally recognizedas safe and effective for use as a stimulant laxative. The Joint Food and Agriculture Organization (FAO)/World Health Organization (WHO) Expert Committee on Food Additives established an acceptable daily castor oil intake (for man) of 0 to 0.7 mg/kg body weight. Castor oil is hydrolyzed in the small intestine by pancreatic enzymes, leading to the release of glycerol and Ricinoleic Acid, although 3,6-epoxyoctanedioic acid, 3,6-epoxydecanedioic acid, and 3,6-epoxydodecanedioic acid also appear to be metabolites. Castor oil and Ricinoleic Acid can enhance the transdermal penetration of other chemicals. Although chemically similar to prostaglandin E(1), Ricinoleic Acid did not have the same physiological properties. These ingredients are not acute toxicants, and a National Toxicology Program (NTP) subchronic oral toxicity study using castor oil at concentrations up to 10% in the diet of rats was not toxic. Other subchronic studies of castor oil produced similar findings. Undiluted castor oil produced minimal ocular toxicity in one study, but none in another. Undiluted castor oil was severely irritating to rabbit skin in one study, only slightly irritating in another, mildly irritating to guinea pig and rat skin, but not irritating to miniature swine skin. Ricinoleic Acid was nonirritating in mice and in one rabbit study, but produced well-defined erythema at abraded and intact skin sites in another rabbit study. Zinc Ricinoleate was not a sensitizer in guinea pigs. Neither castor oil nor Sodium Ricinoleate was genotoxic in bacterial or mammalian test systems. Ricinoleic Acid produced no neoplasms or hyperplasia in one mouse study and was not a tumor promoter in another mouse study, but did produce epidermal hyperplasia. Castor oil extract had a strong suppressive effect on S(180) body tumors and ARS ascites cancer in male Kunming mice. No dose-related reproductive toxicity was found in mice fed up to 10% castor oil for 13 weeks. Female rats injected intramuscularly with castor oil on the first day after estrus had suppressed ovarian folliculogenesis and anti-implantation and abortive effects. Castor oil used as a vehicle control in rats receiving subcutaneous injections had no effect on spermatogenesis. A methanol extract of Ricinus communis var. minor seeds (ether-soluble fraction) produced anti-implantation, anticonceptive, and estrogenic activity in rats and mice. Clinically, castor oil has been used to stimulate labor. Castor oil is not a significant skin irritant, sensitizer, or photosensitizer in human clinical tests, but patients with occupational dermatoses may have a positive reaction to castor oil or Ricinoleic Acid. The instillation of a castor oil solution into the eyes of nine patients resulted in mild and transient discomfort and minor epithelial changes. In another study involving 100 patients, the instillation of castor oil produced corneal epithelial cell death and continuity breaks in the epithelium. Because castor
机译:尽管描述了其他功能,但衍生自蓖麻植物种子及其主要成分蓖麻油酸的油及其某些盐和酯主要用作皮肤调理剂,乳液稳定剂和化妆品中的表面活性剂。蓖麻籽油(蓖麻籽油)是化妆品中使用的蓖麻油的命名约定。它是通过将种子冷压并随后通过加热使油澄清来生产的。蓖麻油不含蓖麻毒素,因为蓖麻毒素不会分配到油中。蓖麻油和甘油基蓖麻油酸酯吸收紫外线(UV),在270 nm处具有最大吸收率。据报道,2002年蓖麻油和氢化蓖麻油分别用于769种和202种化妆品中。据报道该组其他成分的用途较少。据报道,蓖麻油的最高使用浓度(81%)与唇膏有关。蓖麻油被美国食品和药物管理局(FDA)分类为安全有效的刺激性泻药。联合国粮食及农业组织(粮农组织)/世界卫生组织(世卫组织)食品添加剂专家委员会确定,蓖麻油的每日摄入量(人)为0至0.7毫克/千克体重。蓖麻油在小肠中被胰酶水解,导致甘油和蓖麻油酸的释放,尽管3,6-环氧辛二酸,3,6-环氧癸二酸和3,6-环氧十二烷二酸也似乎是代谢物。蓖麻油和蓖麻油酸可以增强其他化学品的透皮渗透性。尽管化学上类似于前列腺素E(1),但蓖麻油酸没有相同的生理特性。这些成分不是急性毒性物质,使用大鼠饮食中高达10%浓度的蓖麻油进行的国家毒理学计划(NTP)慢性亚慢性口服毒性研究无毒。蓖麻油的其他亚慢性研究也得出了类似的发现。在一项研究中,未稀释的蓖麻油对眼睛的毒性最小,而在另一项研究中,无毒性。在一项研究中,未稀释的蓖麻油对兔子皮肤有严重刺激性,在另一项研究中仅对皮肤有轻微刺激性,对豚鼠和大鼠皮肤有轻微刺激性,但对小型猪皮肤没有刺激性。蓖麻油酸在小鼠和一项兔子研究中无刺激性,但在另一项兔子研究中,在磨损和完整的皮肤部位产生明确的红斑。蓖麻油酸锌不是豚鼠的致敏剂。蓖麻油和蓖麻油酸钠在细菌或哺乳动物测试系统中均无遗传毒性。蓖麻油酸在一项小鼠研究中没有产生肿瘤或增生,并且在另一项小鼠研究中不是肿瘤启动子,但确实产生了表皮增生。蓖麻油提取物对雄性昆明小鼠的S(180)身体肿瘤和ARS腹水癌具有很强的抑制作用。在喂食10%蓖麻油的小鼠中连续13周未发现剂量相关的生殖毒性。发情后第一天肌肉注射蓖麻油的雌性大鼠抑制了卵巢的卵泡形成,抗着床和流产作用。在接受皮下注射的大鼠中用作载体对照的蓖麻油对精子发生没有影响。蓖麻的甲醇提取物。少量种子(可溶于乙醚的部分)在大鼠和小鼠中产生了抗植入,抗概念和雌激素活性。临床上,蓖麻油已被用于刺激劳动。在人类临床试验中,蓖麻油不是重要的皮肤刺激剂,敏化剂或光敏剂,但是患有职业性皮肤病的患者对蓖麻油或蓖麻油酸可能有阳性反应。将蓖麻油溶液滴入9名患者的眼睛中导致轻度和短暂的不适以及轻微的上皮改变。在另一项涉及100名患者的研究中,蓖麻油的滴注导致角膜上皮细胞死亡和上皮的连续性破裂。因为脚轮

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