Topical delivery of PD‐1 inhibitors with laser‐assisted passive diffusion and active intradermal injection: Investigation of cutaneous pharmacokinetics and biodistribution patterns

Author(s):  
Rikke L. Christensen ◽  
Kristoffer K. Hendel ◽  
Daniel P. Persson ◽  
Søren Husted ◽  
Uffe H. Olesen ◽  
...  
Author(s):  
Sujatha S. ◽  
Rebecca Samson ◽  
Christopher Amalraj ◽  
Sundaresan Sundaresan

Neglected pain in neonates leads to various ill effects and it can be prevented by using simple and safe non-pharmacological pain relieving measures. Pharmacologic agents are not recommended in neonates for acute pain due toinvasive procedures however, administration of 24% oralsucrose solutionis found to be effective. The objective of this study was to assess the efficacy of 24%oral sucrose in combination with Facilitated tucking during BCG Vaccination through intradermalroute in term neonates which is not done elsewhere. Fifty five healthy term neonates who fulfilled the inclusion criteria such as gestational age above 37 weeks, within 24 hoursof birth age, and neonates delivered only through spontaneous vaginal delivery were included in the study. The study intervention consists of administration of 2 ml of oral 24% sucrose 2 minutes before BCG Vaccination through intradermal route and Facilitated tuckingat the time of vaccination. The primary outcome measure of cumulative NIPS score at 0, 3,5 minuteswas not significant in both the study groups. Whereas there was significant reduction in the level of pain and mean cry time in the neonates of sucrose group. Heart rateand oxygen saturation after intradermal injection also showed significant (p less than 0.001) differenceamong the neonates, who received 24% of oral sucroseand Facilitated tucking than for neonates of control group. Thus oral (24%)sucrose solution given 2 minutes before injection was effective in reducing level of neonatal pain following Intradermal Vaccination. It is a simple, safe and fast acting analgesic and should be considered for minor invasive procedures in term neonates which last for 5-7minutes.


Author(s):  
Hamid Hussain ◽  
Divya Juyal ◽  
Archana Dhyani

Microsponge and Nanosponge delivery System was originally developed for topical delivery of drugs can also be used for controlled oral delivery of drugs using water soluble and bioerodible polymers. Microsponge delivery system (MDS) can entrap wide range of drugs and then release them onto the skin over a time by difussion mechanism to the skin. It is a unique technology for the controlled release of topical agents and consists of nano or micro porous beads loaded with active agent and also use for oral delivery of drugs using bioerodible polymers.


2018 ◽  
Vol 25 (9) ◽  
pp. 1073-1089 ◽  
Author(s):  
Santiago Vilar ◽  
Eduardo Sobarzo-Sanchez ◽  
Lourdes Santana ◽  
Eugenio Uriarte

Background: Blood-brain barrier transport is an important process to be considered in drug candidates. The blood-brain barrier protects the brain from toxicological agents and, therefore, also establishes a restrictive mechanism for the delivery of drugs into the brain. Although there are different and complex mechanisms implicated in drug transport, in this review we focused on the prediction of passive diffusion through the blood-brain barrier. Methods: We elaborated on ligand-based and structure-based models that have been described to predict the blood-brain barrier permeability. Results: Multiple 2D and 3D QSPR/QSAR models and integrative approaches have been published to establish quantitative and qualitative relationships with the blood-brain barrier permeability. We explained different types of descriptors that correlate with passive diffusion along with data analysis methods. Moreover, we discussed the applicability of other types of molecular structure-based simulations, such as molecular dynamics, and their implications in the prediction of passive diffusion. Challenges and limitations of experimental measurements of permeability and in silico predictive methods were also described. Conclusion: Improvements in the prediction of blood-brain barrier permeability from different types of in silico models are crucial to optimize the process of Central Nervous System drug discovery and development.


2020 ◽  
Vol 17 (4) ◽  
pp. 270-278
Author(s):  
Maha Nasr ◽  
Rawan Al-Karaki

Nanotechnology is currently a hot topic in dermatology and nutraceutical/cosmeceutical delivery, owing to the advantages it provides in terms of enhancing the skin permeation of drugs, as well as increasing their therapeutic efficacy in the treatment of different dermatological diseases. There is also a great interest in the topical delivery of nutraceuticals; which are natural compounds with both therapeutic and cosmetic benefits, in order to overcome the side effects of topically applied chemical drugs. Quercetin is a key nutraceutical with topical antioxidant and anti-inflammatory properties which was reported to be effective in the treatment of different dermatological diseases, however, its topical therapeutic activity is hindered by its poor skin penetration. This review highlights the topical applications of quercetin, and summarizes the nanocarrier-based solutions to its percutaneous delivery challenges.


2018 ◽  
Vol 15 (8) ◽  
pp. 1100-1111 ◽  
Author(s):  
Muhammad Z.U. Khan ◽  
Shujaat A. Khan ◽  
Muhammad Ubaid ◽  
Aamna Shah ◽  
Rozina Kousar ◽  
...  

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