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148411-57-8

中文名稱 殼聚糖低聚乳酸酯
英文名稱 CHITOSAN OLIGOSACCHARIDE LACTATE
CAS 148411-57-8
分子式 (C12H24N2O9)n
分子量 340.327
MOL 文件 148411-57-8.mol
更新日期 2024/10/29 11:28:19
148411-57-8 結(jié)構(gòu)式 148411-57-8 結(jié)構(gòu)式

基本信息

中文別名
殼寡糖價格
殼寡糖廠家
殼寡糖作用
殼寡糖報價
殼寡糖用途
食品級殼寡糖
殼寡糖生產(chǎn)廠家
殼聚糖寡糖乳酸
殼聚糖低聚乳酸酯
殼聚糖寡糖HCL
英文別名
Chitosan lactate (ester)
Chitosan Olibosaccharide
CHITOSAN OLIGOCOSACCHARIDE
average Mn 5,000
Chitosan oligosaccharide HCl
Alginate Oligosaccharide (AOS)
Chitosan oligosaccharide (COS)
CHITOSAN OLIGOSACCHARIDE LACTATE
Chitosan 2-hydroxypropanoate (ester)
Chitosan Oligosaccharide(Feed Grade)
所屬類別
催化劑及助劑:聚合物

物理化學(xué)性質(zhì)

儲存條件Store at RT
形態(tài)Solid
顏色Light yellow to yellow
水溶解性Water : 50 mg/mL ;DMSO : 50 mg/mL

應(yīng)用領(lǐng)域

用途1
水中有機(jī)質(zhì)和重金屬污染物的處理、生物醫(yī)療器械、生物降解包裝、透水織物整理、化妝品。

安全數(shù)據(jù)

WGK Germany3

常見問題列表

概述
食品級殼寡糖又叫殼聚寡糖、低聚殼聚糖,是將殼聚糖經(jīng)特殊的生物酶技術(shù)(也有使用化學(xué)降解、微波降解技術(shù)的報道)降解得到的一種聚合度在2~20之間寡糖產(chǎn)品,分子量≤3200Da,是水溶性較好、功能作用大、生物活性高的低分子量產(chǎn)品。它具有殼聚糖所沒有的較高溶解度,全溶于水,容易被生物體吸收利用等諸多獨(dú)特的功能,其作用為殼聚糖的14倍。食品級殼寡糖是自然界中唯一帶正電荷陽離子堿性氨基低聚糖,是動物性纖維素。
性質(zhì)
食品級殼寡糖它是由甲殼素或殼聚糖經(jīng)酶降解或化學(xué)降解獲得的。食品級殼寡糖是天然糖中唯一大量存在的堿性多糖,除了具有類似殼聚糖的性質(zhì)外,其還具有粘度低,水溶性好,分子量小,容易吸收利用及可降解等優(yōu)點(diǎn),生物活性及功能性質(zhì)都較殼聚糖更加廣泛。
作用
食品級殼寡糖是極理想的生物活性物質(zhì),具有調(diào)節(jié)血糖血脂,抗氧化,抗感染,增強(qiáng)免疫和抗腫瘤等多種生物學(xué)活性。食品級殼寡糖對免疫系統(tǒng)存在著多元,多效性的調(diào)節(jié)作用。
應(yīng)用

食品級殼寡糖是由2-15個氨基葡萄糖單元構(gòu)成的低聚糖,其醫(yī)藥、農(nóng)業(yè)、輕工業(yè)等領(lǐng)域的廣泛的功能已經(jīng)得到學(xué)術(shù)界和市場的普遍認(rèn)可。

生物活性
Chitosan oligosaccharide (COS) 是一種 由 β-(1→4) 糖苷鍵連接的 D-葡糖胺的寡聚物。Chitosan oligosaccharide (COS) 激活 AMPK 并抑制包括 NF-κB 和 MAPK 途徑的炎癥信號途徑。
靶點(diǎn)

AMPK

體外研究

Chitosan oligosaccharide (COS) represents a class of natural polymers that holds therapeutic promise in several diseases due to not only its physiochemical properties including water-solubility and low viscosity but also its favorable pharmacological properties including good pharmacokinetics and safety profiles and diverse beneficial biological activities. Activation of AMPK and inhibition of inflammatory signaling pathways including NF-κB and MAPK pathways are recognized as major mechanisms responsible for several effects of Chitosan oligosaccharide (COS) including anti-inflammation, anti-cancer, and anti-diabetes. COS can interrupt cancer progression at multiple stages by modulating several signaling proteins/pathways including NF-κB, AMPK, mTOR, caspase-3, CD147, MMP-2, MMP-9, and VEGF. In vitro experiments have demonstrated that Chitosan oligosaccharide (COS) induced the death of several cancer cell types including ascites, bladder cancer, prostate cancer, lung cancer, liver cancer, leukemia, cervical cancer and colorectal cancer. The values of IC 50 of Chitosan oligosaccharide (COS) in inducing cytotoxicity are 25 μg/mL-50 μg/mL depending on types of cancer cells.

體內(nèi)研究

The oral administration of Chitosan oligosaccharide (16 mg/kg/day) suppresses the production of the proinflammatory cytokines involved in allergic reactions, i.e., IL-4, IL-13 and TNF-α, in the lung tissues and bronchoalveolar lavage fluid of the mice. Last, an anti-inflammatory effect of Chitosan oligosaccharide (COS) on lymphocyte activation has been documented in a rat model of autoimmune anterior uveitis induced by immunization with bovine melanin-associated antigen. Chitosan oligosaccharide (COS) inhibits UV-induced macroscopic appearance in mice skin. Compared with healthy dorsal skin with smoothness and some shallow wrinkles of hairless mice in normal control group, UV exposure for 10 weeks triggers skin erythema, dry, thickening, sagging and coarse wrinkles, and even leathery appearance and slight flesh-colored lesion in the model mice, the visual score of which is markedly higher than that of the normal control group (p<0.05), indicating that UV induces photoaging in skin surface.

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