scispace - formally typeset
Journal ArticleDOI

Microinfusion Using Hollow Microneedles

Reads0
Chats0
TLDR
By partially retracting microneedles after insertion and other methods to overcome flow resistance of dense dermal tissue, protocols can be designed for hollow microneEDles to microinfuse fluid at therapeutically relevant rates.
Abstract
The aim of the study is to determine the effect of experimental parameters on microinfusion through hollow microneedles into skin to optimize drug delivery protocols and identify rate-limiting barriers to flow. Glass microneedles were inserted to a depth of 720–1080 μm into human cadaver skin to microinfuse sulforhodamine solution at constant pressure. Flow rate was determined as a function of experimental parameters, such as microneedle insertion and retraction distance, infusion pressure, microneedle tip geometry, presence of hyaluronidase, and time. Single microneedles inserted into skin without retraction were able to infuse sulforhodamine solution into the skin at flow rates of 15–96 μl/h. Partial retraction of microneedles increased flow rate up to 11.6-fold. Infusion flow rate was also increased by greater insertion depth, larger infusion pressure, use of a beveled microneedle tip, and the presence of hyaluronidase such that flow rates ranging from 21 to 1130 μl/h were achieved. These effects can be explained by removing or overcoming the large flow resistance imposed by dense dermal tissue, compressed during microneedle insertion, which blocks flow from the needle tip. By partially retracting microneedles after insertion and other methods to overcome flow resistance of dense dermal tissue, protocols can be designed for hollow microneedles to microinfuse fluid at therapeutically relevant rates.

read more

Content maybe subject to copyright    Report

Citations
More filters
Journal ArticleDOI

Microneedles for drug and vaccine delivery.

TL;DR: Building off a strong technology base and multiple demonstrations of successful drug delivery, microneedles are poised to advance further into clinical practice to enable better pharmaceutical therapies, vaccination and other applications.
Journal ArticleDOI

Transdermal Drug Delivery: Innovative Pharmaceutical Developments Based on Disruption of the Barrier Properties of the Stratum Corneum

TL;DR: The progress and current status of the transdermal drug delivery field is detailed, numerous pharmaceutical developments which have been employed to overcome limitations associated with skin delivery systems are described and particular attention is paid to the emerging field of microneedle technologies.
Journal ArticleDOI

Microneedle arrays as transdermal and intradermal drug delivery systems: Materials science, manufacture and commercial development

TL;DR: In this paper, a review of microneedle arrays can increase the number of compounds amenable to transdermal delivery by penetrating the skin's protective barrier, the stratum corneum, and creating a pathway for drug permeation to the dermal tissue below.
Journal ArticleDOI

Microneedle technologies for (trans)dermal drug and vaccine delivery.

TL;DR: This review describes different production methods for solid and hollow microneedles as well as conditions that influence skin penetration and the view on research and development that is needed to rendermicroneedle-based (trans)dermal drug delivery technologies clinically useful in the near future.
Journal ArticleDOI

Nanotechnology and the transdermal route: A state of the art review and critical appraisal.

TL;DR: The skin is refractive to most molecules, especially hydrophilic ones, despite the existence of trans-barrier pathways, and it is essential to maintain this protective barrier even after breaching skin surface for purposes of transdermal drug delivery to cope with cutaneous microbiota.
References
More filters
Book

Theory and Practice of Histological Techniques

TL;DR: Light Microscopy, Enzyme Histochemistry, and Immunocytochemical Techniques: Diagnostic Cytopathology, Specimen Collection and Preparation.
Book

Introduction to Fluid Mechanics

TL;DR: In this article, the physical concepts of fluid mechanics and methods of analysis, beginning from first principles, are discussed, and a more orderly approach to problem solving is presented, starting from basic equations, states all assumptions clearly, and relates results to expected physical behavior with the aid of 103 example problems.
Journal ArticleDOI

Microfabricated microneedles: a novel approach to transdermal drug delivery.

TL;DR: These microneedle arrays could be easily inserted into skin without breaking and were shown to increase permeability of human skin in vitro to a model drug, calcein, by up to 4 orders of magnitude.
Book ChapterDOI

Introduction of fluid mechanics

TL;DR: A fluid is a substance in which the constituent molecules are free to move relative to each other, and in a solid, the relative positions of molecules remain essentially fixed under non-destructive conditions of temperature and pressure.
Related Papers (5)