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   <title>Isoflurane, USP INHALATION ANESTHETIC , Vet [Pivetal] <br/>
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               <text>
                  <paragraph>
                     <content styleCode="bold">ISOFLURANE, USP<br/> INHALATION ANESTHETIC</content>
                  </paragraph>
                  <paragraph>Nonflammable, nonexplosive.</paragraph>
                  <paragraph>For Veterinary Use in Horses and Dogs.</paragraph>
               </text>
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                     <title>WARNING</title>
                     <text>
                        <paragraph>Not for use in horses intended for food.</paragraph>
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                     <title>Caution</title>
                     <text>
                        <paragraph>Federal law restricts this drug to use by or on the order of a licensed veterinarian.</paragraph>
                        <paragraph>Operating rooms should be provided with adequate ventilation to prevent the accumulation of anesthetic vapors.</paragraph>
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               <title>DESCRIPTION</title>
               <text>
                  <paragraph>Isoflurane, USP is a nonflammable, nonexplosive general inhalation anesthetic agent. Its chemical name is 1-chloro-2,2,2-trifluoroethyl difluoromethyl ether, and its structural formula is:</paragraph>
                  <br/>
                  <paragraph>
                     <renderMultiMedia referencedObject="MM1"/>
                  </paragraph>
                  <paragraph>   </paragraph>
                  <paragraph>Each mL contains 99.9% isoflurane.</paragraph>
                  <paragraph>Some physical constants are:<br/>
                     <br/>
                  </paragraph>
                  <table cellspacing="0" cellpadding="0" border="0" width="636">
                     <tbody>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Molecular weight<br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">184.5<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Boiling point at 760 mm Hg<br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">48.5° C (uncorr.)<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Refractive index  <content styleCode="italics">n </content>
                              <content styleCode="underline">20</content>
                              <br/>                               D<br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">1.2990 to 1.3005D<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Specific gravity 25°/25° C<br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">1.496<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Vapor pressure in mm Hg**<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">20° C<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">238<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">25° C<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">295<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">30° C<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">367<br/>
                           </td>
                        </tr>
                        <tr>
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">35° C<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">450<br/>
                           </td>
                        </tr>
                     </tbody>
                  </table>
                  <br/>
                  <paragraph>**Equation for vapor pressure calculation:</paragraph>
                  <br/>
                  <paragraph>log10Pvap= A + B/T        where:             A = 8.056</paragraph>
                  <paragraph>                                                               B = -1664.58</paragraph>
                  <paragraph>                                                               T = °C + 273.16 (Kelvin)</paragraph>
                  <br/>
                  <br/>
                  <table cellspacing="0" cellpadding="0" border="0" width="636.804">
                     <tbody>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top">Partition coefficients at 37° C:<br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top"> <br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">Water/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">0.61<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">Blood/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">1.43<br/>
                           </td>
                        </tr>
                        <tr>
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" valign="top">Oil/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">90.8</td>
                        </tr>
                     </tbody>
                  </table>
                  <br/>
                  <br/>
                  <table cellspacing="0" cellpadding="0" border="0" width="848.54">
                     <tbody>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" colspan="4" valign="top">Partition coefficients at 25° C - rubber and plastic<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Conductive rubber/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">62.0<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Butyl rubber/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">75.0<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Polyvinyl chloride/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">110.0<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Polyethylene/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">~2.0<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Polyurethane/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">~1.4<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Polyolefin/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">~1.1<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" valign="top"> <br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Butyl acetate/gas<br/>
                           </td>
                           <td styleCode="Rrule" valign="top">~2.5<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" colspan="2" valign="top">Purity by gas chromatography<br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">&gt;99.9%<br/>
                           </td>
                        </tr>
                        <tr styleCode="Botrule">
                           <td styleCode="Lrule Rrule" colspan="2" valign="top">Lower limit of flammability in oxygen or<br/>             nitrous oxide at 9 joules/sec. and 23° C<br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">None<br/>
                           </td>
                        </tr>
                        <tr>
                           <td styleCode="Lrule Rrule" colspan="2" valign="top">Lower limit of flammability in oxygen or nitrous oxide at 900 joules/sec. and 23° C<br/>
                           </td>
                           <td styleCode="Rrule" colspan="2" valign="top">Greater than useful concentration in anesthesia.</td>
                        </tr>
                     </tbody>
                  </table>
                  <paragraph>MAC (Minimum Alveolar Concentration) is 1.31% in horses<sup>1</sup> and 1.28% in dogs.<sup>6</sup>
                  </paragraph>
                  <br/>
                  <paragraph>Isoflurane is a clear, colorless, stable liquid containing no additives or chemical stabilizers. Isoflurane has a mildly pungent, musty, ethereal odor. Samples stored in indirect sunlight in clear, colorless glass for five years, as well as samples directly exposed for 30 hours to a 2 amp, 115 volt, 60 cycle long wave U.V. light were unchanged in composition as determined by gas chromatography. Isoflurane in one normal sodium methoxide-methanol solution, a strong base, for over six months consumed essentially no alkali, indicative of strong base stability. Isoflurane does not decompose in the presence of soda lime (at normal operating temperatures), and does not attack aluminum, tin, brass, iron or copper.</paragraph>
                  <br/>
               </text>
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                     <text>isoflurane structure</text>
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            <section ID="Section_2">
               <id root="497924e0-4c95-4d77-84af-30839e497aa6"/>
               <code code="34090-1" codeSystem="2.16.840.1.113883.6.1" displayName="CLINICAL PHARMACOLOGY SECTION"/>
               <title>CLINICAL PHARMACOLOGY</title>
               <text>
                  <paragraph>Isoflurane, USP is an inhalation anesthetic. Induction and recovery from anesthesia with isoflurane are rapid.<sup>2,5</sup> The level of anesthesia may be changed rapidly with isoflurane. Isoflurane is a profound respiratory depressant. RESPIRATION MUST BE MONITORED CLOSELY IN THE HORSE AND DOG AND SUPPORTED WHEN NECESSARY. As anesthetic dose is increased, both tidal volume and respiratory rate decrease.<sup>3,6</sup>
                  </paragraph>
                  <paragraph>This depression is partially reversed by surgical stimulation, even at deeper levels of anesthesia. </paragraph>
                  <paragraph>Blood pressure decreases with induction of anesthesia but returns toward normal with surgical stimulation. Progressive increases in depth of anesthesia produce corresponding decreases in blood pressure; however, heart rhythm is stable and cardiac output is maintained with controlled ventilation and normal PaCO<sub>2</sub> despite increasing depth of anesthesia. The hypercapnia which attends spontaneous ventilation during isoflurane anesthesia increases heart rate and raises cardiac output above levels observed with controlled ventilation.<sup>3</sup> Isoflurane does not sensitize the myocardium to exogenously administered epinephrine in the dog.</paragraph>
                  <paragraph>Muscle relaxation may be adequate for intraabdominal operations at normal levels of anesthesia. However, if muscle relaxants are used to achieve greater relaxation, it should be noted that: ALL COMMONLY USED MUSCLE RELAXANTS ARE MARKEDLY POTENTIATED WITH ISOFLURANE, THE EFFECT BEING MOST PROFOUND WITH THE NONDEPOLARIZING TYPE. Neostigmine reverses the effect of nondepolarizing muscle relaxants in the presence of isoflurane but does not reverse the direct neuromuscular depression of isoflurane.</paragraph>
               </text>
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            </section>
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            <section ID="Section_3">
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               <code code="34067-9" codeSystem="2.16.840.1.113883.6.1" displayName="INDICATIONS &amp; USAGE SECTION"/>
               <title>INDICATIONS &amp; USAGE</title>
               <text>
                  <paragraph>Isoflurane, USP is used for induction and maintenance of general anesthesia in horses and dogs.</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
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         <component>
            <section ID="Section_4">
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               <code code="34070-3" codeSystem="2.16.840.1.113883.6.1" displayName="CONTRAINDICATIONS SECTION"/>
               <title>CONTRAINDICATIONS</title>
               <text>
                  <paragraph>Isoflurane, USP is contraindicated in horses and dogs with known sensitivity to isoflurane or to other halogenated agents.</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_5">
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               <code code="34071-1" codeSystem="2.16.840.1.113883.6.1" displayName="WARNINGS SECTION"/>
               <title>WARNINGS</title>
               <text>
                  <paragraph>Increasing depth of anesthesia with isoflurane may increase hypotension and respiratory depression.  The electroencephalographic pattern associated with deep anesthesia is characterized by burst suppression, spiking, and isoelectric periods.<sup>4</sup>
                  </paragraph>
                  <paragraph>Since levels of anesthesia may be altered easily and rapidly, only vaporizers producing predictable percentage concentrations of isoflurane should be used.  (See DOSAGE AND ADMINISTRATION).</paragraph>
                  <paragraph>The action of nondepolarizing relaxants is augmented by isoflurane.  Less than the usual amounts of these drugs should be used.  If the usual amounts of nondepolarizing relaxants are given, the time for recovery from myoneural blockade will be longer in the presence of isoflurane than in the presence of other commonly used anesthetics.</paragraph>
                  <paragraph>Not for use in horses intended for food.</paragraph>
                  <paragraph>Keep out of reach of children.</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_6">
               <id root="8ba20a2c-d525-4be0-9035-e2121ed57714"/>
               <code code="42232-9" codeSystem="2.16.840.1.113883.6.1" displayName="PRECAUTIONS SECTION"/>
               <title>PRECAUTIONS</title>
               <text>
                  <paragraph>Isoflurane, USP, like other inhalational anesthetics, can react with desiccated carbon dioxide (CO<sub>2</sub>) absorbents to produce carbon monoxide which may result in elevated carboxyhemoglobin levels in some patients. Case reports suggest that barium hydroxide lime and soda lime become desiccated when fresh gases are passed through the CO<sub>2</sub> absorber canister at high flow rates over many hours or days.  When a clinician suspects that CO<sub>2</sub> absorbent may be desiccated, it should be replaced before the administration of isoflurane, USP.</paragraph>
               </text>
               <effectiveTime value="20240221"/>
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                  <section ID="Section_6.7">
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                     <code code="42228-7" codeSystem="2.16.840.1.113883.6.1" displayName="PREGNANCY SECTION"/>
                     <title>PREGNANCY</title>
                     <text>
                        <paragraph>
                           <content styleCode="bold">Usage in pregnancy</content>
                           <content styleCode="bold">: </content> Reproduction studies have been performed in mice and rats with no evidence of fetal malformation attributable to isoflurane.  Adequate data concerning the safe use of isoflurane in pregnant and breeding horses and dogs have not been obtained.</paragraph>
                     </text>
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               <code code="34084-4" codeSystem="2.16.840.1.113883.6.1" displayName="ADVERSE REACTIONS SECTION"/>
               <title>ADVERSE REACTIONS</title>
               <text>
                  <paragraph>Hypotension, respiratory depression and arrhythmias have been reported.</paragraph>
               </text>
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         </component>
         <component>
            <section ID="Section_9">
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               <code code="34088-5" codeSystem="2.16.840.1.113883.6.1" displayName="OVERDOSAGE SECTION"/>
               <title>OVERDOSAGE</title>
               <text>
                  <paragraph>In the event of overdosage, or what may appear to be overdosage, the following action should be taken: </paragraph>
                  <paragraph>Stop drug administration, establish that the airway is clear and initiate assisted or controlled ventilation with pure oxygen as circumstances dictate.</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_10">
               <id root="d5ec0c65-3a37-46bb-af48-a0731ed0de4a"/>
               <code code="34068-7" codeSystem="2.16.840.1.113883.6.1" displayName="DOSAGE &amp; ADMINISTRATION SECTION"/>
               <title>DOSAGE &amp; ADMINISTRATION</title>
               <text>
                  <paragraph>
                     <content styleCode="bold"/>
                     <content styleCode="bold"> Caution: Operating rooms should be provided with adequate ventilation to prevent the accumulation of anesthetic vapors.</content>
                  </paragraph>
                  <paragraph>
                     <content styleCode="bold">Premedication</content>: A premedication regimen, which may be employed depending upon the patient status, to avert excitement during induction, might include an anticholinergic, a tranquilizer, a muscle relaxant, and a short-acting barbiturate.</paragraph>
                  <paragraph>
                     <content styleCode="bold"> Inspired concentration:</content> The delivered concentration of isoflurane should be known.  Isoflurane may be vaporized using a flow-through vaporizer specifically calibrated for isoflurane.  Vaporizers delivering a saturated vapor which is then diluted (e.g. Vernitrol<sup>®</sup> vaporizer) also may be used.  The delivered concentration from such a vaporizer may be calculated using the formula:</paragraph>
                  <paragraph>% Isoflurane =  <content styleCode="underline">100 P<sub> </sub>
                     </content>
                     <sub>V</sub>
                     <content styleCode="underline">
                        <sub> </sub>F<sub> </sub>
                     </content>
                     <sub>V</sub>
                  </paragraph>
                  <paragraph>                         F<sub>T</sub> (P<sub>A</sub> – P<sub>V</sub>)</paragraph>
                  <paragraph>where:            </paragraph>
                  <paragraph>P<sub>A</sub> = Pressure of atmosphere</paragraph>
                  <paragraph>P<sub>V</sub> = Vapor pressure of isoflurane</paragraph>
                  <paragraph>F<sub>V</sub> = Flow of gas through vaporizer (mL/min)</paragraph>
                  <paragraph>F<sub>T</sub> = Total gas flow (mL/min)</paragraph>
                  <paragraph>
                     <content styleCode="bold">
                        <br/>
                     </content>
                  </paragraph>
                  <paragraph>Isoflurane contains no stabilizer. Nothing in the drug product alters calibration or operation of these vaporizers.</paragraph>
                  <paragraph>
                     <content styleCode="bold">Induction:</content>
                  </paragraph>
                  <paragraph>
                     <content styleCode="bold">Horses: </content>Inspired concentrations of 3.0% to 5.0% isoflurane alone with oxygen following a barbiturate anesthetic induction are usually employed to induce surgical anesthesia in the horse.</paragraph>
                  <paragraph>
                     <content styleCode="bold">Dogs:</content> Inspired concentrations of 2.0% to 2.5% isoflurane alone with oxygen following a barbiturate anesthetic induction are usually employed to induce surgical anesthesia in the dog.</paragraph>
                  <paragraph>These concentrations can be expected to product surgical anesthesia in 5 to 10 minutes.</paragraph>
                  <paragraph>
                     <content styleCode="bold">Maintenance: </content> The concentration of vapor necessary to maintain anesthesia is much less than that required to induce it.</paragraph>
                  <paragraph>
                     <content styleCode="bold">Horses:</content> Surgical levels of anesthesia in the horse may be sustained with a 1.5% to 1.8% concentration of isoflurane in oxygen.</paragraph>
                  <paragraph>
                     <content styleCode="bold">Dogs: </content> Surgical levels of anesthesia in the dog may be sustained with a 1.5% to 1.8% concentration of isoflurane in oxygen.</paragraph>
                  <paragraph>The level of blood pressure during maintenance is an inverse function of isoflurane concentration in the absence of other complicating problems. Excessive decreases, unless related to hypovolemia, may be due to depth of anesthesia and in such instances may be corrected by lightening the level of anesthesia. </paragraph>
                  <paragraph>Recovery from isoflurane anesthesia is typically uneventful.<sup>2</sup>
                  </paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_11">
               <id root="a34de5ce-4c7d-4372-8904-b92ca37d1d5f"/>
               <code code="34069-5" codeSystem="2.16.840.1.113883.6.1" displayName="HOW SUPPLIED SECTION"/>
               <title>HOW SUPPLIED</title>
               <text>
                  <paragraph>Isoflurane, USP, is packaged in 100 ml (NDC 46066-115-03) amber-colored bottle.</paragraph>
                  <br/>
                  <paragraph>Isoflurane, USP, is packaged in 250 ml (NDC 46066-115-04) amber-colored bottle.</paragraph>
                  <br/>
                  <paragraph>
                     <content styleCode="bold">Storage:</content> Store at 20° to 25°C (68° to 77°F); excursions permitted to 15° to 30°C (59° to 86°F) [See USP Controlled Room Temperature].</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_14">
               <id root="47b042f5-bc79-4aa2-96c0-e917ab06d5c5"/>
               <code code="34093-5" codeSystem="2.16.840.1.113883.6.1" displayName="REFERENCES SECTION"/>
               <title>REFERENCES</title>
               <text>
                  <paragraph>1. Steffey, E.P., Howland, D. Jr., Giri, S. and Eger, E.I. II.: Enflurane, Halothane and Isoflurane Potency in Horses. <content styleCode="bold">Am. J.Vet. Res. 38</content>(7): 1037-       1039, 1977.<br/> 2. Auer, J.A., Garner, H.E., Amend, J.F., Hutcheson, D.P. and Salem, C.A.: Recovery from Anesthesia in Ponies: A Comparative Study of the Effects of Isoflurane, Enflurane, Methoxyflurane and Halothane. <content styleCode="bold">Equine Vet. J. 10</content>(1): 18-23 1978.<br/> 3. Steffey, E.P. and Howland, D. Jr.: Comparison of Circulatory and Respiratory<br/> Effects of Isoflurane and Halothane Anesthesia in Horses. <content styleCode="bold">Am. J.Vet. Res. 41</content>(5): 821-825, 1980.<br/> 4. Auer, J.A., Amend, J.F., Garner, H.E., Hutcheson, D.P. and Salem, C.A: Electroencephalographic Responses During Volatile Anesthesia in Domestic Ponies: A Comparative Study of Isoflurane, Enflurane, Methoxyflurane and Halothane. <content styleCode="bold">Equine Practice 3:</content> 130-134, 1979.<br/> 5. K lide, A.M.: Cardiopulmonary Effects of Enflurane<br/> and Isoflurane in the Dog. <content styleCode="bold">Am. J.Vet. Res.:Vol. 37, No 2:</content> 127-131, 1976.</paragraph>
                  <paragraph>6. Steffey, E.P., Howland, D.: Isoflurane Potency in the Dog and Cat. <content styleCode="bold">Am. J.Vet. Res.,Vol. 38, No 11:</content> 1833-1836, 1977.</paragraph>
                  <br/>
                  <paragraph>100 ml - Text revised: August 2023 </paragraph>
                  <paragraph>250 ml - Text revised: July 2023</paragraph>
                  <br/>
                  <paragraph>
                     <content styleCode="bold">Manufactured for:</content>
                  </paragraph>
                  <paragraph>Aspen Veterinary Resources<sup>®</sup>, LTD.<br/> Liberty, MO 64068 <content styleCode="bold">pivetalvet.com</content>
                     <br/> P0107.PHC<br/> Rev. 02/24<br/> Product of India</paragraph>
                  <paragraph>To report adverse drug events, for technical assistance or to obtain a copy of the SDS, contact Aspen Veterinary Resources at info@aspenveterinaryresources.com.<br/> For additional information about adverse drug experience reporting for animal drugs, contact FDA at 1-888-FDA-VETS or online at http://www.fda.gov/reportanimalae.</paragraph>
                  <paragraph>Approved by FDA under ANADA # 200-237</paragraph>
               </text>
               <effectiveTime value="20240221"/>
            </section>
         </component>
         <component>
            <section ID="Section_17">
               <id root="21a7bc8d-7031-4fda-8f74-1ffdb75f0256"/>
               <code code="51945-4" codeSystem="2.16.840.1.113883.6.1" displayName="PACKAGE LABEL.PRINCIPAL DISPLAY PANEL"/>
               <title>PACKAGE LABEL.PRINCIPAL DISPLAY PANEL</title>
               <effectiveTime value="20240221"/>
               <component>
                  <section ID="Section_17.1">
                     <id root="7ebff793-e3dc-4658-ac30-c79b0f5d8a25"/>
                     <code code="42229-5" codeSystem="2.16.840.1.113883.6.1" displayName="Spl Unclassified Section"/>
                     <title>LABEL-100 ml</title>
                     <text>
                        <paragraph>NDC 46066-115-03</paragraph>
                        <br/>
                        <paragraph>
                           <content styleCode="bold">ISOFLURANE, USP<br/> INHALATION ANESTHETIC</content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold"> </content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold">100mL</content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold"> </content>
                        </paragraph>
                        <paragraph>Nonflammable, nonexplosive</paragraph>
                        <paragraph>For Veterinary Use in Horses and Dogs</paragraph>
                        <br/>
                        <renderMultiMedia referencedObject="MM2"/>
                     </text>
                     <effectiveTime value="20240221"/>
                     <component>
                        <observationMedia ID="MM2">
                           <text>isoflurane-label-100mL</text>
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                  </section>
               </component>
               <component>
                  <section ID="Section_17.2">
                     <id root="ccb2667e-7c08-49e1-9533-8b0c65351cb5"/>
                     <code code="42229-5" codeSystem="2.16.840.1.113883.6.1" displayName="Spl Unclassified Section"/>
                     <title>LABEL-250 ml</title>
                     <text>
                        <paragraph>NDC 46066-115-04</paragraph>
                        <br/>
                        <paragraph>
                           <content styleCode="bold">ISOFLURANE, USP<br/> INHALATION ANESTHETIC</content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold"> </content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold"> 250mL</content>
                        </paragraph>
                        <paragraph>
                           <content styleCode="bold"> </content>
                        </paragraph>
                        <paragraph>Nonflammable, nonexplosive.</paragraph>
                        <br/>
                        <paragraph>For Veterinary Use in Horses and Dogs.</paragraph>
                        <br/>
                        <paragraph>
                           <renderMultiMedia referencedObject="MM3"/>
                        </paragraph>
                        <br/>
                     </text>
                     <effectiveTime value="20240221"/>
                     <component>
                        <observationMedia ID="MM3">
                           <text>isoflurane-label-250mL</text>
                           <value xsi:type="ED" mediaType="image/jpeg">
                              <reference value="extensia-label-250ml.jpg"/>
                           </value>
                        </observationMedia>
                     </component>
                  </section>
               </component>
            </section>
         </component>
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