时珍国医国药
時珍國醫國藥
시진국의국약
LISHIZHEN MEDICINE AND MATERIA MEDICA RESEARCH
2009年
12期
2915-2916
,共2页
张林%刘雨娟%陈红梅%李伟%郑天珍
張林%劉雨娟%陳紅梅%李偉%鄭天珍
장림%류우연%진홍매%리위%정천진
甜菜碱%游离脂肪酸%离体脂肪组织%心得安%异搏定
甜菜堿%遊離脂肪痠%離體脂肪組織%心得安%異搏定
첨채감%유리지방산%리체지방조직%심득안%이박정
Betaine%Free fatty acid%Isolated adipose tissue%Propranolol%Varapamil
目的 观察甜菜碱对大鼠离体脂肪组织释放游离脂肪酸(Free fatty acid, FFA)和抗氧化能力的影响,并探讨其作用机制.方法 将大鼠离体脂肪组织置于37℃ Krebs液中温育,分别加入不同浓度的甜菜碱及各阻断剂,观察其对FFA和丙二醛(MDA)、总抗氧化能力(T-AOC)的影响.结果 甜菜碱可促进脂肪组织释放FFA(P=0.000),并存在剂量相关效应(r=0.909,P=0.000);甜菜碱可降低脂肪组织MDA含量,提高T-AOC;心得安、异搏定和SQ22,536(腺苷酸环化酶抑制剂)可不同程度的阻断上述作用.结论 甜菜碱可促进离体脂肪组织释放FFA,提高其抗氧化能力.此作用可能部分经由脂肪细胞的肾上腺素能β受体、L型Ca~(2+)通道和腺苷酸环化酶所介导.
目的 觀察甜菜堿對大鼠離體脂肪組織釋放遊離脂肪痠(Free fatty acid, FFA)和抗氧化能力的影響,併探討其作用機製.方法 將大鼠離體脂肪組織置于37℃ Krebs液中溫育,分彆加入不同濃度的甜菜堿及各阻斷劑,觀察其對FFA和丙二醛(MDA)、總抗氧化能力(T-AOC)的影響.結果 甜菜堿可促進脂肪組織釋放FFA(P=0.000),併存在劑量相關效應(r=0.909,P=0.000);甜菜堿可降低脂肪組織MDA含量,提高T-AOC;心得安、異搏定和SQ22,536(腺苷痠環化酶抑製劑)可不同程度的阻斷上述作用.結論 甜菜堿可促進離體脂肪組織釋放FFA,提高其抗氧化能力.此作用可能部分經由脂肪細胞的腎上腺素能β受體、L型Ca~(2+)通道和腺苷痠環化酶所介導.
목적 관찰첨채감대대서리체지방조직석방유리지방산(Free fatty acid, FFA)화항양화능력적영향,병탐토기작용궤제.방법 장대서리체지방조직치우37℃ Krebs액중온육,분별가입불동농도적첨채감급각조단제,관찰기대FFA화병이철(MDA)、총항양화능력(T-AOC)적영향.결과 첨채감가촉진지방조직석방FFA(P=0.000),병존재제량상관효응(r=0.909,P=0.000);첨채감가강저지방조직MDA함량,제고T-AOC;심득안、이박정화SQ22,536(선감산배화매억제제)가불동정도적조단상술작용.결론 첨채감가촉진리체지방조직석방FFA,제고기항양화능력.차작용가능부분경유지방세포적신상선소능β수체、L형Ca~(2+)통도화선감산배화매소개도.
Objective The effect of betaine on free fatty acid(FFA) release and anti-oxidant capacity from isolated adipose tissue in rats and its mechanism were studied. Methods Isolated rat tissues were placed into Krebs solution to incubate at 37℃ and were respectively added into the betaine of different concentration and blockers. the FFA values and malondialdehyde (MDA) and tatal anti-oxidant capacity(T-AOC) content from isolated adipose tissue were observed. Results Betaine could promote the FFA release (P=0.001;r=0.909, P=0.000)dose-dependently. It could reduce MDA and raise T-AOC from isolated adipose tissue which can be blocked partly by propranolol, varapamil or SQ22,536(adenylyl cyclase inhibitor).Conclusion Betaine can enhance the catabolism of adipose tissue in vitro by increasing the release of FFA and improving its antioxidant capacity. The effect may be mediated partly by β_3 -adrenergic receptor, varapamil-sensitive Ca~(2+) channel L and adenylyl cyclase(AC).