Diverse Delivery Methods

Author(s):  
Julia Benson
Keyword(s):  
2009 ◽  
Author(s):  
Arash Salehi ◽  
Lesley Strawderman ◽  
Yunchen Huang ◽  
Shaheen Ahmed ◽  
Kari Babski-Reeves

Author(s):  
Yifeng Tian ◽  
R. Edward Minchin ◽  
Yuanxin Zhang ◽  
Congwen Kan
Keyword(s):  

2020 ◽  
Author(s):  
Andrew Riley ◽  
Bethany L. Walker ◽  
Krishnapriya Ramanujam ◽  
Wendy M. Gaultney ◽  
Deborah J. Cohen

Primary care is a key setting for the delivery of parent-focused behavioral interventions. Various methods of intervention show promising efficacy, but fail to engage adequate parental participation. The objective of this study was to understand factors underlying parents’ attitudes towards the content, sources, and delivery methods of behavioral guidance in primary care.


Author(s):  
J M Shah ◽  
N.H Shah ◽  
Hadiya P D

Pharmaceutical technology has developed various newer modes of novel drug delivery aspects. Modifications in the previously existing drug delivery methods have led to various newly innovated technologies serving as a safe and effective means of improvement over the existing ones. Novasome technology is one of the new innovations of liposomes which have solved many of the problems related to liposomal drug delivery system. It offers a seven bilayer membrane which has the ability to incorporate both water soluble and insoluble drugs. It has an excellent entrapment efficiency which provides better medication. Formulation of novasomes is achieved in a high shear device. Due to its numerous advantages, novasomes have been used extensively in various fields like cosmetics, chemical, personal care, foods, pharmaceuticals and agrochemicals.


2012 ◽  
Vol 9 (2) ◽  
pp. 122-131 ◽  
Author(s):  
Adriano Mollica ◽  
Azzurra Stefanucci ◽  
Federica Feliciani ◽  
Ivana Cacciatore ◽  
Catia Cornacchia ◽  
...  

Author(s):  
Shaoshuai Liu ◽  
Maria Jose Ladera-Carmona ◽  
Minna M. Poranen ◽  
Aart J. E. van Bel ◽  
Karl-Heinz Kogel ◽  
...  

AbstractMacrophage migration inhibitory factors (MIFs) are multifunctional proteins regulating major processes in mammals, including activation of innate immune responses. In invertebrates, MIF proteins participate in the modulation of host immune responses when secreted by parasitic organisms, such as aphids. In this study, we assessed the possibility to use MIF genes as targets for RNA interference (RNAi)-based control of the grain aphid Sitobion avenae (Sa) on barley (Hordeum vulgare). When nymphs were fed on artificial diet containing double-stranded (ds)RNAs (SaMIF-dsRNAs) that target sequences of the three MIF genes SaMIF1, SaMIF2 and SaMIF3, they showed higher mortality rates and these rates correlated with reduced MIF transcript levels as compared to the aphids feeding on artificial diet containing a control dsRNA (GFP-dsRNA). Comparison of different feeding strategies showed that nymphs’ survival was not altered when they fed from barley seedlings sprayed with naked SaMIF-dsRNAs, suggesting they did not effectively take up dsRNA from the sieve tubes of these plants. Furthermore, aphids’ survival was also not affected when the nymphs fed on leaves supplied with dsRNA via basal cut ends of barley leaves. Consistent with this finding, the use of sieve tube-specific YFP-labeled Arabidopsis reporter lines confirmed that fluorescent 21 nt dsRNACy3, when supplied via petioles or spraying, co-localized with xylem structures, but not with phloem tissue. Our results suggest that MIF genes are a potential target for insect control and also imply that application of naked dsRNA to plants for aphid control is inefficient. More efforts should be put into the development of effective dsRNA formulations.


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