The in vitro digestion models mimicking the gastrointestinal(GI)tract of general population and lipid indigestion patients(with lower levels of bile salts or pancreatic lipase)were selected to investigate whether diac...The in vitro digestion models mimicking the gastrointestinal(GI)tract of general population and lipid indigestion patients(with lower levels of bile salts or pancreatic lipase)were selected to investigate whether diacylglycerols(DAGs)are potential good lipid sources for these patients.Linseed oil-based DAG(LD)and linseed oil(LT)were selected.LD-based emulsion((83.74±1.23)%)had higher lipolysis degree than LT-based emulsion((74.47±1.16)%)when monitoring the GI tract of normal population as previously reported.Indigestion conditions seriously decreased the digestive degree of LT-based emulsion((40.23±2.48)%-(66.50±3.70)%)while showed less influence on LD-based emulsion((64.18±2.41)%-(81.85±3.45)%).As opposed to LT-based emulsion,LD-based emulsion exhibited preference for releasing unsaturated fatty acids(especially oleic acid andα-linolenic acid)due to their different glycerolipid compositions.LD-based emulsion showed potential for providing lipids and nutrients(including essential fatty acids)for lipid indigestion patients.展开更多
In vitro digestion studies demonstrate large potential to gain more and quicker insights into the underlying mechanisms of feed additives,allowing the optimization of feed design.Unfortunately,current in vitro digesti...In vitro digestion studies demonstrate large potential to gain more and quicker insights into the underlying mechanisms of feed additives,allowing the optimization of feed design.Unfortunately,current in vitro digestion models relevant for broiler chickens lack sufficient description in terms of protocols and standardisation used.Furthermore,no distinction is made between the different life phases of these animals(starter,grower,and finisher).Hence,our research aimed to establish adapted in vitro digestion conditions,corresponding to the 3 life phases in broilers,with specific focus on lipid digestion.The effect of 3 different bile salt concentrations of 2,10,and 20 mM,and 3 different lipase activities of 5,20,and 100 U/mL,on in vitro lipid digestion kinetics were evaluated using a full factorial design.These values were selected to represent starter,grower,and finisher birds,respectively.Our findings showed that the extent of lipid digestion was mainly influenced by lipase activity.The rate of lipid digestion was affected by an interplay between bile salt concentration and lipase activity,due to possible lipase inhibition at certain bile salt concentrations.Overall,this work resulted in 3 in vitro lipid digestion models representative for starter,grower,and finisher birds.In conclusion,this research showed the impact of adapted in vitro digestion conditions on lipid digestion kinetics and thus the need for these conditions relevant for each life phase of broilers.展开更多
Lipid-based formulations(LBFs)have demonstrated a great potential in enhancing the oral absorption of poorly water-soluble drugs.However,construction of in vitro and in vivo correlations(IVIVCs)for LBFs is quite chall...Lipid-based formulations(LBFs)have demonstrated a great potential in enhancing the oral absorption of poorly water-soluble drugs.However,construction of in vitro and in vivo correlations(IVIVCs)for LBFs is quite challenging,owing to a complex in vivo processing of these formulations.In this paper,we start with a brief introduction on the gastrointestinal digestion of lipid/LBFs and its relation to enhanced oral drug absorption;based on the concept of IVIVCs,the current status of in vitro models to establish IVIVCs for LBFs is reviewed,while future perspectives in this field are discussed.In vitro tests,which facilitate the understanding and prediction of the in vivo performance of solid dosage forms,frequently fail to mimic the in vivo processing of LBFs,leading to inconsistent results.In vitro digestion models,which more closely simulate gastrointestinal physiology,are a more promising option.Despite some successes in IVIVC modeling,the accuracy and consistency of these models are yet to be validated,particularly for human data.A reliable IVIVC model can not only reduce the risk,time,and cost of formulation development but can also contribute to the formulation design and optimization,thus promoting the clinical translation of LBFs.展开更多
固体载体对固体自微乳化给药系统(solid self-microemulsifying drug delivery systems,S-SMEDDS)的体内外性质有重要影响。本文探讨微粉硅胶对S-SMEDDS药物吸收的影响,为选择适宜固体载体提供依据。通过研究微粉硅胶对小肠脂解和S-SME...固体载体对固体自微乳化给药系统(solid self-microemulsifying drug delivery systems,S-SMEDDS)的体内外性质有重要影响。本文探讨微粉硅胶对S-SMEDDS药物吸收的影响,为选择适宜固体载体提供依据。通过研究微粉硅胶对小肠脂解和S-SMEDDS体外释放的影响,并采用新型体外脂解-吸收模型研究微粉硅胶对S-SMEDDS离体小肠吸收的影响。结果发现微粉硅胶既能提高脂解速率,增加脂解后水性分散相中药物分配,促进药物吸收;又会延缓S-SMEDDS体外释药,影响药物的吸收速度;最终导致对S-SMEDDS的离体小肠吸收没有显著性影响。而且微粉硅胶对脂解和释药的影响都与其用量有关,这提示微粉硅胶适合作为S-SMEDDS的固体载体,其用量需要进一步筛选优化。展开更多
This study assessed the influence of the composition of drug-free SNEDDS co-dosed with aqueous suspensions of carvedilol(CAR), cinnarizine(CIN) or R3040 on drug solubilization in a twocompartment in vitro lipolysis mo...This study assessed the influence of the composition of drug-free SNEDDS co-dosed with aqueous suspensions of carvedilol(CAR), cinnarizine(CIN) or R3040 on drug solubilization in a twocompartment in vitro lipolysis model. Correlation of drug log P or solubility in SNEDDS with drug solubilization during in vitro lipolysis in the presence of drug-free SNEDDS was assessed. SNEDDS with varying ratios of soybean oil:Maisine 35-1(1:1, w/w) and Kolliphor RH40, with ethanol at 10%(w/w) were used. SNEDDS were named F65, F55 and F20(numbers refer to the percentage of lipids) and aqueous suspensions without drug-free SNEDDS(F0) were also analyzed. While the ranking order of drug solubilization was F65? F55? F204F0 for CAR; F65? F554F204F0 for CIN and F65? F55? F204F0 for R3040-with higher CAR solubilization than for R3040 and CIN-the ranking of S_(eq)of CAR, CIN and R3040 in SNEDDS was F65 o F55o F20, F65? F554F20 and F654F554F20, respectively. Therefore, the composition of SNEDDS influenced the solubilization of CIN, but not CAR and R3040. Furthermore, high S_(eq) in SNEDDS did not reflect high drug solubilization. As CAR(log P 3.8) showed higher solubilization than CIN(log P 5.8) and R3040(log P 10.4), a correlation between drug log P and drug solubilization was observed.展开更多
基金National Key R&D Program of China(2022YFC2805100)National Science Fund for Key Program of National Natural Science Foundation of China(31930084)+3 种基金National Science Fund for Distinguished Young Scholars of China(31725022)China Agriculture Research System(CARS-18-ZJ0503)Guangdong Provincial Key R&D Programme(2022B0202010002)Science and Technology Innovation Project of Foshan City(FS0AAKJ919-4402-0013)。
文摘The in vitro digestion models mimicking the gastrointestinal(GI)tract of general population and lipid indigestion patients(with lower levels of bile salts or pancreatic lipase)were selected to investigate whether diacylglycerols(DAGs)are potential good lipid sources for these patients.Linseed oil-based DAG(LD)and linseed oil(LT)were selected.LD-based emulsion((83.74±1.23)%)had higher lipolysis degree than LT-based emulsion((74.47±1.16)%)when monitoring the GI tract of normal population as previously reported.Indigestion conditions seriously decreased the digestive degree of LT-based emulsion((40.23±2.48)%-(66.50±3.70)%)while showed less influence on LD-based emulsion((64.18±2.41)%-(81.85±3.45)%).As opposed to LT-based emulsion,LD-based emulsion exhibited preference for releasing unsaturated fatty acids(especially oleic acid andα-linolenic acid)due to their different glycerolipid compositions.LD-based emulsion showed potential for providing lipids and nutrients(including essential fatty acids)for lipid indigestion patients.
基金D.Michels is a Doctoral Researcher funded by VLAIO(Flanders Innovation and Entrepreneurship,Belgium)in the context of a Baekeland mandate(HBC.2020.2836)S.H.E.Verkempinck is a Postdoctoral Researcher funded by the Research Foundation Flanders(FWO–Grant no.1222420N).
文摘In vitro digestion studies demonstrate large potential to gain more and quicker insights into the underlying mechanisms of feed additives,allowing the optimization of feed design.Unfortunately,current in vitro digestion models relevant for broiler chickens lack sufficient description in terms of protocols and standardisation used.Furthermore,no distinction is made between the different life phases of these animals(starter,grower,and finisher).Hence,our research aimed to establish adapted in vitro digestion conditions,corresponding to the 3 life phases in broilers,with specific focus on lipid digestion.The effect of 3 different bile salt concentrations of 2,10,and 20 mM,and 3 different lipase activities of 5,20,and 100 U/mL,on in vitro lipid digestion kinetics were evaluated using a full factorial design.These values were selected to represent starter,grower,and finisher birds,respectively.Our findings showed that the extent of lipid digestion was mainly influenced by lipase activity.The rate of lipid digestion was affected by an interplay between bile salt concentration and lipase activity,due to possible lipase inhibition at certain bile salt concentrations.Overall,this work resulted in 3 in vitro lipid digestion models representative for starter,grower,and finisher birds.In conclusion,this research showed the impact of adapted in vitro digestion conditions on lipid digestion kinetics and thus the need for these conditions relevant for each life phase of broilers.
基金supported by Science and Technology Commission of Shanghai Municipality(Nos.19430741400 and 19410761200,China)National Natural Science Foundation of China(Nos.81973247 and 81703434)
文摘Lipid-based formulations(LBFs)have demonstrated a great potential in enhancing the oral absorption of poorly water-soluble drugs.However,construction of in vitro and in vivo correlations(IVIVCs)for LBFs is quite challenging,owing to a complex in vivo processing of these formulations.In this paper,we start with a brief introduction on the gastrointestinal digestion of lipid/LBFs and its relation to enhanced oral drug absorption;based on the concept of IVIVCs,the current status of in vitro models to establish IVIVCs for LBFs is reviewed,while future perspectives in this field are discussed.In vitro tests,which facilitate the understanding and prediction of the in vivo performance of solid dosage forms,frequently fail to mimic the in vivo processing of LBFs,leading to inconsistent results.In vitro digestion models,which more closely simulate gastrointestinal physiology,are a more promising option.Despite some successes in IVIVC modeling,the accuracy and consistency of these models are yet to be validated,particularly for human data.A reliable IVIVC model can not only reduce the risk,time,and cost of formulation development but can also contribute to the formulation design and optimization,thus promoting the clinical translation of LBFs.
文摘固体载体对固体自微乳化给药系统(solid self-microemulsifying drug delivery systems,S-SMEDDS)的体内外性质有重要影响。本文探讨微粉硅胶对S-SMEDDS药物吸收的影响,为选择适宜固体载体提供依据。通过研究微粉硅胶对小肠脂解和S-SMEDDS体外释放的影响,并采用新型体外脂解-吸收模型研究微粉硅胶对S-SMEDDS离体小肠吸收的影响。结果发现微粉硅胶既能提高脂解速率,增加脂解后水性分散相中药物分配,促进药物吸收;又会延缓S-SMEDDS体外释药,影响药物的吸收速度;最终导致对S-SMEDDS的离体小肠吸收没有显著性影响。而且微粉硅胶对脂解和释药的影响都与其用量有关,这提示微粉硅胶适合作为S-SMEDDS的固体载体,其用量需要进一步筛选优化。
基金F.Hoffmann-La Roche Ltd.,Basel(1073861001)Switzerland for the financial supportthe CAPES Foundation,Ministry of Education of Brazil,Brasília(009416/2013-07)for the financial support of Ph.D student Scheyla Siqueira
文摘This study assessed the influence of the composition of drug-free SNEDDS co-dosed with aqueous suspensions of carvedilol(CAR), cinnarizine(CIN) or R3040 on drug solubilization in a twocompartment in vitro lipolysis model. Correlation of drug log P or solubility in SNEDDS with drug solubilization during in vitro lipolysis in the presence of drug-free SNEDDS was assessed. SNEDDS with varying ratios of soybean oil:Maisine 35-1(1:1, w/w) and Kolliphor RH40, with ethanol at 10%(w/w) were used. SNEDDS were named F65, F55 and F20(numbers refer to the percentage of lipids) and aqueous suspensions without drug-free SNEDDS(F0) were also analyzed. While the ranking order of drug solubilization was F65? F55? F204F0 for CAR; F65? F554F204F0 for CIN and F65? F55? F204F0 for R3040-with higher CAR solubilization than for R3040 and CIN-the ranking of S_(eq)of CAR, CIN and R3040 in SNEDDS was F65 o F55o F20, F65? F554F20 and F654F554F20, respectively. Therefore, the composition of SNEDDS influenced the solubilization of CIN, but not CAR and R3040. Furthermore, high S_(eq) in SNEDDS did not reflect high drug solubilization. As CAR(log P 3.8) showed higher solubilization than CIN(log P 5.8) and R3040(log P 10.4), a correlation between drug log P and drug solubilization was observed.