The focus of drug delivery is shifting toward smart drug carriers that release the cargo in response to a change in the microenvironment due to an internal or external trigger. As the most clinically successful nanosy...The focus of drug delivery is shifting toward smart drug carriers that release the cargo in response to a change in the microenvironment due to an internal or external trigger. As the most clinically successful nanosystem, liposomes naturally come under the spotlight of this trend. This review summarizes the latest development about the design and construction of photo-responsive liposomes with gold nanoparticles for the controlled drug release. Alongside, we overview the mechanism involved in this process and the representative applications.展开更多
Hypertrophic scars are unfavorable skin diseases characterized by excessive collagen deposition.Although systemic treatments exist in clinic to manage hypertrophic scars,they pose significant side effects and tend to ...Hypertrophic scars are unfavorable skin diseases characterized by excessive collagen deposition.Although systemic treatments exist in clinic to manage hypertrophic scars,they pose significant side effects and tend to lose efficacy over prolonged applications.Traditional Chinese medicine(TCM)offers as a promising candidate to treat pathological scars.A large number of TCMs have been studied to show anti-scarring effect,however,the natural barrier of the skin impedes their penetration,lowering its therapeutic efficacy.Herein,we reported the use of dissolvable hyaluronic acid(HA)microneedles(MNs)as a vehicle to aid the transdermal delivery of therapeutic agent,a model TCM called shikonin for the treatment of hypertrophic scars.Here,shikonin was mixed with HA to make MNs with adequate mechanical strength for skin penetration,making its dosage controllable during the fabrication process.The therapeutic effect of the shikonin MNs was studied in vira using HSFs and then further verified with quantitative reverse transcriptase polymerase chain reaction.Our data suggest that the shikonin HA MNs significantly reduce the viability and proliferation of the HSFs and downregulate the fibrotic-related genes(i.e.,TGFβ1,FAP-αand COL1 A1).Furthermore,we observed a localized therapeutic effect of the shikonin HA MNs that is beneficial for site-specific treatment.展开更多
Silica nanoparticles have been studied extensively in biomedical field due to their high biocompatibility,controllable morphology and so on.They can be used both as the drug carrier and imaging vehicle.Here,an aminate...Silica nanoparticles have been studied extensively in biomedical field due to their high biocompatibility,controllable morphology and so on.They can be used both as the drug carrier and imaging vehicle.Here,an aminated ultra-small silica nanoparticle based system is developed with various functionalities.Multiple molecules including fluorophore,folic acid,and antibody are coupled to this system to achieve specific applications such as bacterial/cell labelling and recognition.展开更多
文摘The focus of drug delivery is shifting toward smart drug carriers that release the cargo in response to a change in the microenvironment due to an internal or external trigger. As the most clinically successful nanosystem, liposomes naturally come under the spotlight of this trend. This review summarizes the latest development about the design and construction of photo-responsive liposomes with gold nanoparticles for the controlled drug release. Alongside, we overview the mechanism involved in this process and the representative applications.
基金support from Singapore Agency for Science,Technology and Research(A*STAR)Science and Engineering Research Council Additive Manufacturing for Biological Materials(AMBM)program(A18A8b0059,Singapore)City University of Hong Kong(#9610472,China)+1 种基金General Research Fund(GRF)from University Grant Committee of Hong Kong(UGC)Research Grant Council(RGC)(#9042951,China)NSFC/RGC Joint Research Scheme(N_City U118/20,China)
文摘Hypertrophic scars are unfavorable skin diseases characterized by excessive collagen deposition.Although systemic treatments exist in clinic to manage hypertrophic scars,they pose significant side effects and tend to lose efficacy over prolonged applications.Traditional Chinese medicine(TCM)offers as a promising candidate to treat pathological scars.A large number of TCMs have been studied to show anti-scarring effect,however,the natural barrier of the skin impedes their penetration,lowering its therapeutic efficacy.Herein,we reported the use of dissolvable hyaluronic acid(HA)microneedles(MNs)as a vehicle to aid the transdermal delivery of therapeutic agent,a model TCM called shikonin for the treatment of hypertrophic scars.Here,shikonin was mixed with HA to make MNs with adequate mechanical strength for skin penetration,making its dosage controllable during the fabrication process.The therapeutic effect of the shikonin MNs was studied in vira using HSFs and then further verified with quantitative reverse transcriptase polymerase chain reaction.Our data suggest that the shikonin HA MNs significantly reduce the viability and proliferation of the HSFs and downregulate the fibrotic-related genes(i.e.,TGFβ1,FAP-αand COL1 A1).Furthermore,we observed a localized therapeutic effect of the shikonin HA MNs that is beneficial for site-specific treatment.
基金This work was supported by Singapore MOE Academic Research Fund(AcRF)Tier 1 grant(RG49/18)Additive Manufacturing for Biological Materials(AMBM)program from Singapore A*STAR Science and Engineering Research Council(A18A8b0059).
文摘Silica nanoparticles have been studied extensively in biomedical field due to their high biocompatibility,controllable morphology and so on.They can be used both as the drug carrier and imaging vehicle.Here,an aminated ultra-small silica nanoparticle based system is developed with various functionalities.Multiple molecules including fluorophore,folic acid,and antibody are coupled to this system to achieve specific applications such as bacterial/cell labelling and recognition.