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3'-唾液酸乳糖,3'-Sialyllactose sodium salt
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3'-唾液酸乳糖(3-SL)國內惠誠現(xiàn)貨

價格 468 1440 2245
包裝 10mg 50mg 100mg
最小起訂量 10mg
發(fā)貨地 上海
更新日期 2026-06-08
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產品詳情

中文名稱:3'-唾液酸乳糖英文名稱:3'-Sialyllactose sodium salt
CAS:128596-80-5品牌: Glycarbo
產地: 進口保存條件: 2-8°C
純度規(guī)格: ≥98%產品類別: 糖化學分析標準品
主要用途: 研究細胞膜的結構和功能貨號: GY1142
靶點: 流感病毒 HA 蛋白生物作用: 研究細胞膜的結構和功能
應用: 用于研究唾液酸在基因表達調控和癌癥等疾病的發(fā)展和進展中的作用貨號: GY1143 GY1143M
用途范圍: 科研分析,原料規(guī)格: 10mg 50mg 100mg 1g
是否進口: 相關產品: 2-巖藻糖基乳糖
2026-06-08 3'-唾液酸乳糖 3'-Sialyllactose sodium salt 10mg/468RMB;50mg/1440RMB;100mg/2245RMB 468 Glycarbo 進口 2-8°C ≥98% 糖化學分析標準品

人乳寡糖(HMOs,human milk oligosaccharides)是一種低度聚合糖,可保護嬰兒遠離腸道疾病,是嬰兒腸道的守護者。人乳寡糖(HMOs)可分為中性人乳寡糖(Neutral human milk oligosaccharides)和酸性人乳寡糖(Acidic human milk oligosaccharides)。中性人乳寡糖是包含巖藻糖基的低聚糖,酸性人乳寡糖是包含唾液酸及其硫酸鹽的結構的低聚糖。至今已經證明人乳中有200多種低聚糖。以下10種是惠誠生物整理的最常見的人乳寡糖(HMOs,human milk oligosaccharides)

人乳寡糖Human Milk Oligosaccharides是一類自然存在于人乳中的復雜混合低聚糖,上海惠誠生物提供人乳寡糖(HMOs)系列產品

 

Cat. Number
GY1143
Chemical Name
3'-唾液乳糖鈉鹽 3'-Sialyllactose sodium salt
CAS Number
128596-80-5,35890-38-1
Category
Oligosaccharides
Mol. Formula
C23H38NO19Na
Mol. Weight
655.53
Qty 1
100mg
Qty 2
500mg
Appearance
White - slightly brown, powder
Application Notes
≥98%
Synonym
人乳寡糖系列

3'-唾液乳糖(3'-SL)

Storage condition
2-8°C
Stability
2 years
References

 

3'-Fucosyllactose
41312-47-4
C18H32O15
488.44
2’-Fucosyllactose
41263-94-9
C18H32O15
488.44
6'-Sialyllactose
157574-76-0
C23H39NO19
655.53
3'-Sialyllactose
128596-80-5
C23H39NO19
655.53
Lacto-N-tetraose
14116-68-8
C26H45NO21
707.63
Lacto-N-neotetraose
13007-32-4
C26H45NO21
707.63
Lacto-N-fucopentaose I
7578-25-8
C32H55NO25
853.77
Lacto-N-fucopentaose II
21973-23-9
C32H55NO25
853.77
Lacto-N-fucopentaose III
25541-09-7
C32H55NO25
853.77
Lacto-N-fucopentaose V
60254-64-0
C32H55NO25
853.77

上海惠誠生物提供人乳寡糖系列產品,更多寡糖,多糖產品,請聯(lián)系021-60498804,我們竭誠為您提供各類糖產品。 

Human breast milk provides the primary source of nutrition for newborns before they are able to eat and digest other foods. One distinctive property of human milk from most other species is the amount and diversity of the free oligosaccharide it contains. These human milk oligosaccharides (HMO) can be present at levels of up to 12 g/l in milk and up to 20 g/l in colostrum. HMO have been attributed with a variety of functions including:
1) Prebiotic
2) Decoy carbohydrate
3) Immunomodulation

HMO Structure
Currently at least 130 unique HMO have been identified, all differing by constituent sugars, molecular weight or structure. Many share a common motif characterized by repetitive attachment of galactose (Gal) and N-acetylglucosamine (GlcNAc) in a b-glycosidic linkage to lactose. Additional variety is generated by the addition of fucose (termed neutral HMO), e.g. 3'-Fucosyllactose,  or 2-Fucosyllactose and sialic acid (termed acidic HMO), e.g. 6'-Sialyllactose and 3'-Sialyllactose. Addition is via a-glucosidic bonds to generate oligosaccharides from three to thirty two sugars in length. Whilst most of the biosyntheis of HMO is not controlled at the gene level (unlike proteins) the presence and position of fucosylation is governed by the Lewis/Secretor status of the mother.
Dominant neutral oligosaccharides have been identified as lacto-N-tetraose, lacto-N-neotetraose and lacto-N-fucopentaose I and V

Prebiotic Properties of HMO
The most abundant HMO is lacto-N-tetraose which is able to survive the acid environment of the stomach and is not degraded by normal gut enzymes. It therefore can pass down to the lower intestine where it acts as a prebiotic which encourages lower gut colonisation by many bi?dobacteria species, which are recognised as essential for normal gut function.

HMO as Decoy Carbohydrates
Binding to a host cell wall is critical for the virulence of many pathogenic bacteria including Campylobacter jejuni, E.coli, Vibrio cholera, and Shigella and some Salmonella strains. Many of the virulence factors of these organisms are carbohydrate-binding proteins (lectins) which bind sugars displayed on cell membranes. HMO can bind to these lectins acting as decoys and preventing pathogens from sticking to the target cells. An example of this is the inverse relationship between the incidence of C. jejuni, (one of the most predominant causes of diarrhoea in the world) in breast-fed children and levels of 2-fucosyl-lactose in the mother’s milk. (C. jejuni is known to adhere to intestinal 2-fucosyl-lactosamine). Similar antimicrobial effects of HMO have also been demonstrated for calicivirus diarrhoea and infections with heat stable enterotoxin of E. coli.
During ingestion, HMO coat the throat and are known to inhibit adhesion of Streptococcus pneumoniae and Haemophilus in?uenzae to human pharyngeal or buccal epithelial cells resulting in the lower incidence of otitis media (inner ear infection) in breast fed babies.

Immune Role of HMO
Selectins are glycoproteins which are displayed on the surface of many cells of the immune system and are involved with cell/cell interactions such as the infiltration of tissues in inflammation. Selectins bind to specific fucosylated and sialylated oligosaccharides, e.g., sialyl Lewis x (sLex), on their respective target ligands. HMO share many structural similarities to these carbohydrate ligands and acidic (sialylated) HMO are able to inhibit rolling and adhesion of leucocytes at physiologically relevant concentrations.
One of these selectin interactions is the formation of platelet/neutrophil complexes (PNCs) which lead to the activation of the neutrophils. PNCs are thought to be involved in necrotizing enterocolitis (NEC) and HMO have been attributed as the agent responsible for the lower incidence of NEC in breast fed infants (85 % lower than formula fed infants) via inhibition of PNC formation.
Fractions of HMO are also known to inhibit the binding of both Galectins which bind b-Gal and LAcNAc terminated glycans and Siglecs which are specific for terminal sialic acid, their role in immunity or development however has not yet been fully explored.

科研應用:

3'-唾液乳糖鈉鹽 3'SL廣泛應用于生物化學和生理研究。它被用來研究細胞膜的結構和功能,并研究唾液酸在細胞-細胞和細胞-病原體相互作用中的作用。它也被用于研究唾液酸在基因表達調控和癌癥等疾病的發(fā)展和進展中的作用。此外,3'SL被用于研究唾液酸與其他分子之間的相互作用,如蛋白質、碳水化合物和脂類。

作用機制:

3'-唾液乳糖鈉鹽3'SL與細胞表面含唾液酸的受體結合,引發(fā)一系列生化和生理事件。這些事件包括信號轉導途徑的激活,基因表達的調節(jié),以及細胞-細胞和細胞-病原體相互作用的調節(jié)。


關鍵字: 3'-唾液酸乳糖;3-SL;人乳寡糖;3'-Sialyllactose sod;3'-唾液酸乳糖進口;

公司簡介

上?;菡\生物科技有限公司,成立于2010年,企業(yè)宗旨“惠質產品,摯誠服務”。惠誠生物自成立以來,一直致力于為客戶提供一站式科學服務,產品覆蓋設計開發(fā)全過程,提供實驗室設計、實驗室建設、儀器設備、耗材、試劑、技術服務等專項配套服務, 按照客戶的研發(fā)、生產和質量控制環(huán)節(jié)整合各種優(yōu)質資源,優(yōu)化資源組合,為客戶提供最具價值的整體解決方案。惠誠生物在上海建立研發(fā)中心,在湖北和江蘇有生產基地,在廣州和深圳建立子公司,立足上海,銷售網絡遍布全國,為客戶提供全方位的綜合服務。 “不忘初心,砥礪前行”?;菡\生物經過多年不懈努力,目前產品線包括:生命科學,分析化學,生化試劑和儀器耗材??蛻舯椴迹荷镝t(yī)藥,體外診斷,食品行業(yè),石油化工,科研院校和研究所等領域。 上海惠誠生物科技有限公司,成立于2010年,企業(yè)宗旨“惠質產品,摯誠服務”?;菡\生物自成立以來,一直致力于為客戶提供一站式科學服務,產品覆蓋設計開發(fā)全過程,提供實驗室設計、實驗室建設、儀器設備、耗材、試劑、技術服務等專項配套服務, 按照客戶的研發(fā)、生產和質量控制環(huán)節(jié)整合各種優(yōu)質資源,優(yōu)化資源組合,為客戶提供最具價值的整體解決方案?;菡\生物在上海建立研發(fā)中心,在湖北和江蘇有生產基地,在廣州和深圳建立子公司,立足上海,銷售網絡遍布全國,為客戶提供全方位的綜合服務。 “不忘初心,砥礪前行”?;菡\生物經過多年不懈努力,目前產品線包括:生命科學,分析化學,生化試劑和儀器耗材。客戶遍布:生物醫(yī)藥,體外診斷,食品行業(yè),石油化工,科研院校和研究所等領域。
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  • 公司成立:16年
  • 注冊資本:50
  • 企業(yè)類型:有限責任公司
  • 主營產品:生物試劑和標準品,包括:細胞因子,Crispr/cas酶, 診斷蛋白,糖化學,脂肪酸,花青素,類胡蘿卜素,人乳寡糖等
  • 公司地址:上海市徐匯區(qū)漕溪路258弄27號
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