NZ337293A

Laser assisted topical anesthetic permeation

Abstract

The present invention provides an improved method of administering a pharmaceutical composition, such as an aesthetic through the skin of a patient without the use of a sharp or needle. This method includes the step of irradiating the stratum corneum of a region of the skin of the patient using a laser. By a selection of parameters, the laser irradiates the surface of the skin precisely to a selectable depth, without causing clinically relevant damage to healthy proximal tissue. A pharmaceutical composition is then applied to the region of irradiation.

NZ337293A, drawing sheet 1
Sheet 1 of 43

Term

Term ended

Projected expiry passed 14 January 2018, 8.7 years ago.

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17 claims: 3 independent, 14 dependent

  1. 1
    Claims 1. A method for altering skin permeability that does not ablate, the stratum corneum comprising the steps of:5 a) focusing a laser beam with sufficient energy fluence to irradiate the skin at least as deep as the stratum corneum, but not as deep as the capillary layer;and b) firing the laser to create a site of 10 alteration, the site having a diameter of between 0.5 microns and 5.0 cm.
  2. 15
    20 antibiotic, antiviral or antifungal agents, chemotherapy or anti-cancer agents, and protein or DNA based biopharmaceutical agents. INTELLECTUAL PROPERTY OFFICE OF N.Z. 2 2 JAN 2002 RECEIVED φ WO 98/33444 PCT/US98/00706 24 The method of claim 23 wherein the antibiotic is selected from the group consisting of tetracycline, streptomycin, sulfa drugs, kanamycin, neomycin, penicillin, and chloramphenicol. 5 25 The method of claim 22 wherein the pharmaceutical composition is a hormone. 26 The method of claim 25 wherein the hormone is selected from the group consisting of parathyroid hormone, growth hormone, gonadotropins, insulin, ACTH, 10 somatostatin, prolactin, placental lactogen, melanocyte stimulating hormone, thyrotropin, parathyroid hormone, calcitonin, enkephalin, and angiotensin. 27 The method of claim 22 wherein the pharmaceutical composition is selected from the group 15 consisting of steroids, non-steroids, anti-inflammatory agents, systemic antibiotics, antiviral agents, antifungal agents, and antinauseants. consisting of antigens, allergens,- and permeation enhancers. 30 The method of claim 17 wherein a patch 25 containing the pharmaceutical composition is placed over the site of alteration before firing the laser. intellectual PROPERTY OFFICE OF N.Z. 2 2 JAN 200? RECEIVED • WO 98/33444 PCT/US98/00706 31 The method of claim 17 wherein a patch containing the pharmaceutical composition is placed over the site of alteration after firing the laser. 32 A method of delivering a locally acting 5 pharmaceutical through skin tissue, comprising the steps of:a) focusing a laser beam with sufficient energy fluence to alter the skin at least as deep as the stratum corneum, but 10 not as deep as the capillary layer;b) firing the laser to create a site of alteration but not ablation, the site having a diameter of between 0.5 microns and 5.0 cm;and c) administering a locally acting thera15 peutically effective amount of a pharmaceutical composition at the site of , alteration. 33. The method of claim 32 wherein the laser beam has a wavelength of 0.2 - 10 microns. 20 34. The method of claim 32 wherein the laser beam has a wavelength of between 1.5 - 3.0 microns. 35. The method of claim 32 wherein the laser beam has a wavelength of about 2.94 microns. 36 The method of claim 32 wherein the laser beam 25 is emitted by a laser selected from the group consisting of continuous wave-lasers Er:YAG, pulsed CO2, Ho:YAG, Er:YAP, Er/Cr:YSGG, HoiYSGG, Er.'GGSG, Er:YLF, Tm:YAG, INTELLECTUAL PROPERTY OFFICE OF N.Z.
  3. 16
    2 2 JAN 2002 received WO 98/33444 PCT/US98/00706 Ho:YAG, Ho/Nd:YalO3, cobalt:MgF2, HF chemical, DF chemical, carbon monoxide, deep UV lasers, and frequency tripled Nd:YAG lasers. 37 The method of claim 32 wherein the laser beam 5 is emitted by an Er:YAG laser. 38. The method of claim 32 wherein the laser beam is focused at a site on the skin with a diameter of 0.1 - 5.0 mm. The method of claim 32 wherein the energy fluence of the laser beam at the skin is 0.03 - 9.6 J/cm2. 15 40 The method of claim 32 wherein the pulse width is between 1 femtosecond and 1,000 microseconds. 41 The method of claim 32 wherein the pulse width is between 1 and 1000 microseconds. 42 The method of claim 32 wherein multiple 20 alterations are made to prepare the skin for local pharmaceutical delivery. 43 The method of claim 32 further comprising a beam splitter positioned to create, simultaneously from the laser, multiple sites of alteration.