JPH04370197A - Enzymatic liquid cleaning agent - Google Patents

Enzymatic liquid cleaning agent

Info

Publication number
JPH04370197A
JPH04370197A JP14457891A JP14457891A JPH04370197A JP H04370197 A JPH04370197 A JP H04370197A JP 14457891 A JP14457891 A JP 14457891A JP 14457891 A JP14457891 A JP 14457891A JP H04370197 A JPH04370197 A JP H04370197A
Authority
JP
Japan
Prior art keywords
weight
parts
liquid detergent
pts
lipolytic enzyme
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP14457891A
Other languages
Japanese (ja)
Inventor
Yasuhiko Iwadare
岩垂 安彦
Tadao Kojima
児島 忠雄
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Seiko Epson Corp
Original Assignee
Seiko Epson Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Seiko Epson Corp filed Critical Seiko Epson Corp
Priority to JP14457891A priority Critical patent/JPH04370197A/en
Publication of JPH04370197A publication Critical patent/JPH04370197A/en
Pending legal-status Critical Current

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  • Detergent Compositions (AREA)

Abstract

PURPOSE:To obtain the title cleaning agent capable of safely and surely removing stain, especially of contact lens by uniformly dissolving and dispersing a lipid decomposing enzyme in a polyhydric alcohol-containing aqueous solution. CONSTITUTION:The objective cleaning agent obtained by (A) uniformly dissolving and dispersing (i) 0.01-10 pts.wt. lipid decomposing enzyme originated from Chromobacferium viscosum in a polar solvent containing (ii) 50-95 pts.wt. (preferably 70-90 pts.wt.) polyhydric alcohol and (B) further preferably blending the above-mentioned solution with (i) 0.01-1.0 pts.wt. boron compound and (ii) 0.05-5.0 pts.wt. polyvinylpyrrolidone used as stabilizers for lipid decomposing enzyme.

Description

【発明の詳細な説明】[Detailed description of the invention]

【0001】0001

【産業上の利用分野】本発明は洗浄用または浸漬洗浄用
の組成物に適する安定化した酵素液体洗浄剤に関するも
のである。さらに特定的には、本発明は水性の脂質分解
酵素を含む液体洗浄剤に関するものであり、これは特に
コンタクトレンズの汚れを安全に確実に除去できること
を特徴とする。
FIELD OF THE INVENTION This invention relates to stabilized enzymatic liquid detergents suitable for cleaning or immersion cleaning compositions. More particularly, the present invention relates to a liquid cleaning agent containing an aqueous lipolytic enzyme, which is particularly characterized by its ability to safely and reliably remove stains from contact lenses.

【0002】0002

【従来の技術】酵素の液体中での安定化は従来から多大
なる関心の的であったが、水溶液中では不安定であるこ
とが知られている。洗浄剤への酵素の添加は、界面活性
剤では落ちにくい汚染布上の脂肪分やリポ蛋白質を分解
し、それによって血液汚染,肉汁汚染,体液汚染等を除
去可能にする有効性に起因する。特にコンタクトレンズ
の脂質汚れには有効である。しかし、酵素は洗浄剤成分
の中では比較的高価であり、また洗浄効果も高いが保存
安定性が悪く有効に活用できない。特に液状では尚さら
のことである。従来、脂質分解酵素を含む洗浄剤は粉末
または顆粒状組成物として利用されているが、溶解性が
悪い、洗浄時間が長い、操作が頻雑等の問題がある。し
かし、上記洗浄剤は脂質汚れの除去には非常に有効であ
る。例えば、特公昭59−187100号公報、特公昭
60−121417号公報等に開示されている。
BACKGROUND OF THE INVENTION The stabilization of enzymes in liquids has been the subject of great interest, but it is known that enzymes are unstable in aqueous solutions. The addition of enzymes to cleaning agents is due to their effectiveness in decomposing fat and lipoproteins on contaminated cloth that are difficult to remove with surfactants, thereby making it possible to remove blood contamination, meat juice contamination, body fluid contamination, etc. It is particularly effective against lipid stains on contact lenses. However, enzymes are relatively expensive among cleaning agent components, and although they have a high cleaning effect, they have poor storage stability and cannot be used effectively. This is especially true in liquid form. Conventionally, cleaning agents containing lipolytic enzymes have been used in the form of powder or granule compositions, but these have problems such as poor solubility, long cleaning times, and frequent operations. However, the above detergents are very effective in removing lipid stains. For example, it is disclosed in Japanese Patent Publication No. 59-187100, Japanese Patent Publication No. 60-121417, etc.

【0003】0003

【発明が解決しようとする課題】しかしながら、特公昭
59−187100号公報、特公昭60−121417
号公報等記載の方法の内、酵素を主成分としている用時
溶解タイプの洗浄剤では調整後、ほとんど数十時間以内
に酵素活性が消失してしまう。また、特公平2−227
500号公報、特公平2−276899号公報に記載さ
れている脂質分解酵素の液体中での安定性は十分でなく
、さらに生体に対して危険性のあるギ酸ナトリウムや1
,2−ベンゼオ−ルを用いており好ましくない。本発明
は、これらの問題を解決することを課題として鋭意研究
を行い到達したものである。
Problem to be Solved by the Invention However, Japanese Patent Publications No. 59-187100 and Japanese Patent Publication No. 60-121417
Among the methods described in the above-mentioned publications, the enzyme activity disappears within several tens of hours after preparation with a type of detergent that dissolves at the time of use, which contains enzymes as a main component. Also, Tokuhei 2-227
The lipid-degrading enzymes described in Japanese Patent Publication No. 500 and Japanese Patent Publication No. 2-276899 do not have sufficient stability in liquids, and they also contain sodium formate and
, 2-benzeol is used, which is not preferable. The present invention was achieved through intensive research aimed at solving these problems.

【0004】0004

【課題を解決するための手段】本発明は、脂質分解酵素
と一定の条件の多価アルコ−ル混合組成により本目的が
達成されることを見いだした.多価アルコ−ル混合組成
は脂質分解酵素の液体中での安定性を飛躍的に高め、ホ
ウ素化合物はその効果をさらに高める。本発明で用いる
脂質分解酵素は、Chromobacterium  
vis−cosum起源のものが用いられ0.01〜1
0重量部が含有される。0.01重量部以下では十分効
果が現れず、また10重量部以上では溶解性が悪い。
[Means for Solving the Problems] The present invention has found that the object can be achieved by a mixed composition of a lipolytic enzyme and a polyhydric alcohol under certain conditions. The polyhydric alcohol mixed composition dramatically increases the stability of the lipolytic enzyme in liquid, and the boron compound further enhances the effect. The lipolytic enzyme used in the present invention is Chromobacterium
vis-cosum origin is used and 0.01 to 1
Contains 0 parts by weight. If the amount is less than 0.01 parts by weight, the effect will not be sufficient, and if it is more than 10 parts by weight, the solubility will be poor.

【0005】本発明で用いる多価アルコ−ルは、生体に
対する安全性が高く、且つ水溶解性の良いものが好まし
い。例えば、ポリエチレングリコ−ル、エチレングリコ
−ル、プロピレングリコ−ル、グリセリン、キシリト−
ル、ソルビト−ル、マンニト−ル、トレオ−ス、グリセ
リン、グリセロリン酸塩、アスコルビン酸、ヘキサンジ
オ−ル、デキストリン等から選択される。この多価アル
コ−ルの使用量は、50重量部以上が良く、好ましくは
70〜90重量部が安定性上最も良い。50重量部以下
では安定性が十分でなく、20重量部以下では効果がほ
とんどない。本発明で用いるホウ素化合物は、生体に対
して安全であり、防腐効力を有しているものが用いられ
る。例えば、ホウ酸、ホウ砂等がある。このホウ素化合
物の使用量は0.01〜1.0重量部が良い。この範囲
以外では十分な安定性が得られない。
The polyhydric alcohol used in the present invention is preferably one that is highly safe for living organisms and has good water solubility. For example, polyethylene glycol, ethylene glycol, propylene glycol, glycerin, xylitol
sorbitol, mannitol, threose, glycerin, glycerophosphate, ascorbic acid, hexanediol, dextrin and the like. The amount of polyhydric alcohol used is preferably 50 parts by weight or more, preferably 70 to 90 parts by weight, which is best for stability. If it is less than 50 parts by weight, stability is insufficient, and if it is less than 20 parts by weight, there is almost no effect. The boron compound used in the present invention is one that is safe for living organisms and has an antiseptic effect. Examples include boric acid and borax. The amount of this boron compound used is preferably 0.01 to 1.0 parts by weight. Sufficient stability cannot be obtained outside this range.

【0006】本発明で用いるポリビニルピロリドンの使
用量は0.05〜5.0重量部が良い。0.05重量部
以下では良好な安定性が示めされず、また5.0重量部
以上では溶解性の点で好ましくない。
The amount of polyvinylpyrrolidone used in the present invention is preferably 0.05 to 5.0 parts by weight. If it is less than 0.05 parts by weight, good stability is not exhibited, and if it is more than 5.0 parts by weight, it is unfavorable from the viewpoint of solubility.

【0007】本発明の酵素液体洗浄剤は、これらの成分
以外に従来既知の成分を含むこともできる。すなわち、
界面活性剤、高分子化合物、防腐剤、キレ−ト剤、pH
調製剤、無機塩等を含むことができる。
The enzymatic liquid detergent of the present invention may also contain conventionally known components in addition to these components. That is,
Surfactant, polymer compound, preservative, chelating agent, pH
Preparative agents, inorganic salts, etc. can be included.

【0008】本発明の酵素液体洗浄剤は、以上のように
して得られた溶液タイプの酵素洗浄剤である為、使用時
はケ−ス等に1滴〜数滴を入れ、さらに生理食塩水や特
定の希釈剤で希釈して浸漬処理して用いる。処理後適量
のすすぎ液ですすいで洗浄を終了する。
Since the enzyme liquid detergent of the present invention is a solution-type enzyme detergent obtained as described above, when using it, put one to several drops into a case, etc., and then add physiological saline solution. It is used by diluting with a specific diluent and immersion treatment. After processing, rinse with an appropriate amount of rinsing liquid to complete cleaning.

【0009】[0009]

【作用】本発明による酵素液体洗浄剤は、特定の脂質分
解酵素と特定組成の多価アルコ−ルを含んだ溶剤が、脂
質分解酵素を長期間液状で安定に保つことできる。また
ホウ素化合物またはポリビニルピロリドンがその効果を
高め、さらには酵素の作用により脂質汚れが効率よく除
去できる。
[Function] In the enzymatic liquid detergent according to the present invention, the solvent containing a specific lipolytic enzyme and a polyhydric alcohol of a specific composition can keep the lipolytic enzyme stable in a liquid state for a long period of time. In addition, boron compounds or polyvinylpyrrolidone enhance the effect, and furthermore, lipid stains can be efficiently removed by the action of enzymes.

【0010】0010

【実施例】【Example】

(実施例1) グリセリン                 60 
       重量部プロピレングリコ−ル     
    5        重量部ホウ酸      
                 0.05  重量
部ソルビン酸カリウム           0.02
5重量部リパ−ゼ                 
    1        重量部ソルビト−ル   
              1        重量
部ポリビニルピロリドンk25   0.25  重量
部水                       
  30        重量部40℃、4週間後の酵
素活性は75%以上で良好な洗浄力を示した。
(Example 1) Glycerin 60
Part by weight propylene glycol
5 parts by weight boric acid
0.05 Part by weight Potassium sorbate 0.02
5 parts by weight lipase
1 part by weight sorbitol
1 part by weight Polyvinylpyrrolidone k25 0.25 part by weight Water
After 4 weeks at 40° C., the enzyme activity was 75% or more, indicating good detergency.

【0011】(実施例2) グリセリン                 60 
       重量部プロピレングリコ−ル     
  10        重量部ホウ酸       
                0.05  重量部
ソルビン酸カリウム           0.025
重量部リパ−ゼ                  
   2        重量部ポリビニルピロリドン
k25   0.5    重量部水        
                 30      
  重量部40℃、4週間後の酵素活性は82%以上で
良好な洗浄力を示した。
(Example 2) Glycerin 60
Part by weight propylene glycol
10 parts by weight boric acid
0.05 Part by weight Potassium sorbate 0.025
Part by weight lipase
2 parts by weight Polyvinylpyrrolidone k25 0.5 parts by weight Water
30
The enzyme activity after 4 weeks at 40° C. by weight was 82% or more, indicating good detergency.

【0012】(実施例3) グリセリン                 70 
       重量部ホウ酸            
           0.05  重量部ソルビン酸
                   0.025重
量部リパ−ゼ                   
  1        重量部ソルビト−ル     
            1.5    重量部水  
                       20
        重量部40℃、4週間後の酵素活性は
81%以上で良好な洗浄力を示した。
(Example 3) Glycerin 70
Part by weight boric acid
0.05 parts by weight sorbic acid 0.025 parts by weight lipase
1 part by weight sorbitol
1.5 parts by weight water
20
The enzyme activity after 4 weeks at 40° C. by weight was 81% or more, indicating good detergency.

【0013】(実施例4) グリセリン                 70 
       重量部プロピレングリコ−ル     
  30        重量部ホウ酸       
                0.05  重量部
ソルビン酸                   0
.025重量部リパ−ゼ              
       1        重量部水     
                    20   
     重量部40℃、4週間後の酵素活性は70%
以上で良好な洗浄力を示した。
(Example 4) Glycerin 70
Part by weight propylene glycol
30 parts by weight boric acid
0.05 parts by weight Sorbic acid 0
.. 025 parts by weight lipase
1 part by weight water
20
Weight part Enzyme activity after 4 weeks at 40°C is 70%
The above results showed good cleaning power.

【0014】(比較例1) グリセリン                 20 
       重量部ホウ酸            
           0.05  重量部ソルビン酸
                   0.025重
量部リパ−ゼ                   
  1        重量部水          
               75        
重量部40℃、4週間後の酵素活性は検出できず実用上
不十分であった。
(Comparative Example 1) Glycerin 20
Part by weight boric acid
0.05 parts by weight sorbic acid 0.025 parts by weight lipase
1 part by weight water
75
The enzyme activity after 4 weeks at 40° C. by weight could not be detected and was insufficient for practical use.

【0015】(比較例2) グリセリン                 45 
       重量部ホウ酸            
           0.05  重量部ソルビン酸
カリウム           0.025重量部リパ
−ゼ                     2 
       重量部ポリビニルピロリドンk25  
 1        重量部ソルビト−ル      
           1.0    重量部水   
                      55 
       重量部40℃、4週間後の酵素活性は2
8%であり、洗浄力も十分でなかった。
(Comparative Example 2) Glycerin 45
Part by weight boric acid
0.05 parts by weight Potassium sorbate 0.025 parts by weight Lipase 2
Weight part polyvinylpyrrolidone k25
1 part by weight sorbitol
1.0 parts by weight water
55
After 4 weeks at 40°C, the enzyme activity was 2.
It was 8%, and the detergency was not sufficient.

【0016】(比較例3) グリセリン                 70 
       重量部ホウ酸            
           0.05  重量部ソルビン酸
カリウム           0.025重量部糸状
菌由来リパ−ゼ           1      
  重量部ソルビト−ル              
   1.5    重量部水           
              20        重
量部40℃、4週間後の酵素活性は検出できず実用上不
十分であった。
(Comparative Example 3) Glycerin 70
Part by weight boric acid
0.05 parts by weight Potassium sorbate 0.025 parts by weight Lipase derived from filamentous fungi 1
Part by weight sorbitol
1.5 parts by weight water
20 parts by weight at 40°C for 4 weeks, the enzyme activity could not be detected and was insufficient for practical use.

【0017】(比較例4) グリセリン                 50 
       重量部プロピレングリコ−ル     
  30        重量部ホウ酸       
                0.1    重量
部ソルビン酸カリウム           0.02
5重量部糸状菌由来リパ−ゼ           1
        重量部水             
            20        重量部
40℃、4週間後の酵素活性は検出できず実用上不十分
であった。
(Comparative Example 4) Glycerin 50
Part by weight propylene glycol
30 parts by weight boric acid
0.1 Part by weight Potassium sorbate 0.02
5 parts by weight lipase derived from filamentous fungi 1
Part by weight water
20 parts by weight at 40°C for 4 weeks, the enzyme activity could not be detected and was insufficient for practical use.

【0018】〈評価基準〉脂質分解酵素活性は、薬審第
523号脂肪消化力試験法に準拠して測定した。洗浄効
力テストは人工脂質溶液(パルミチン酸セチル0.01
g,コレステロ−ル0.02g,レシチン0.05g,
オリ−ブ油0.1g,ポリエチレングリコ−ル10gを
生理食塩水に懸濁して100mlとした)にコンタクト
レンズ(セイコ−コンタクトレンズ製、ポリコンHDk
)を浸し、60℃に加熱後冷却して脂質を付着させたレ
ンズを用いて試験した。酵素液体洗浄剤1滴をコンタク
トレンズ用保存液(セイコ−ハ−ド用保存液)2.0m
lで希釈し2時間処理後、実体顕微鏡にて付着脂質がレ
ンズ全体の10%未満の場合良好とした。
<Evaluation Criteria> Lipid-degrading enzyme activity was measured in accordance with the Fat Digestion Test Method No. 523 of the Japanese Pharmaceutical Affairs Authority. The cleaning efficacy test was performed using an artificial lipid solution (cetyl palmitate 0.01
g, cholesterol 0.02g, lecithin 0.05g,
0.1 g of olive oil and 10 g of polyethylene glycol were suspended in physiological saline to make 100 ml) and a contact lens (manufactured by Seiko Contact Lenses, Polycon HDk)
), heated to 60°C, cooled, and then tested using a lens to which lipids were attached. Add 1 drop of enzyme liquid detergent to 2.0 m of contact lens storage solution (Seiko hard storage solution)
After treatment for 2 hours, the lens was evaluated as good if the amount of attached lipid was less than 10% of the entire lens under a stereomicroscope.

【0019】[0019]

【発明の効果】本発明は、液状での脂質分解酵素の保存
安定性を、生体に対して安全な溶剤系にて飛躍的に高め
ることで液状の脂質分解酵素洗浄剤を可能とし、さらに
より安全でより優れた洗浄効果が得られる。また、この
洗浄剤を用いることによりコンタクトレンズ等において
、擦り洗浄ケアから浸漬洗浄への変更を可能とし、レン
ズ等の破損,損失の問題がなくなるという効果もある。
[Effects of the Invention] The present invention dramatically increases the storage stability of lipolytic enzymes in liquid form using a solvent system that is safe for living organisms, thereby making possible a liquid lipolytic enzyme detergent. Safe and better cleaning effect can be obtained. Furthermore, by using this cleaning agent, it is possible to switch from rubbing cleaning care to immersion cleaning for contact lenses, etc., and there is also the effect that problems of damage and loss of lenses, etc. are eliminated.

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】  脂質分解酵素を、少なくとも50〜9
5重量部の多価アルコ−ルを含む水溶液に均一に溶解分
散させ、安定化された液体であることを特徴とする酵素
液体洗浄剤。
Claim 1: A lipolytic enzyme containing at least 50 to 9
An enzyme liquid detergent characterized by being a stabilized liquid that is uniformly dissolved and dispersed in an aqueous solution containing 5 parts by weight of polyhydric alcohol.
【請求項2】  前記液体洗浄剤に用いられる脂質分解
酵素が、Chromo−bacterium  vis
cosum起源の脂質分解酵素であることを特徴とする
請求項1記載の酵素液体洗浄剤。
2. The lipolytic enzyme used in the liquid detergent is Chromo-bacterium vis
The enzymatic liquid detergent according to claim 1, which is a lipolytic enzyme derived from cosum.
【請求項3】  前記液体洗浄剤に用いられる脂質分解
酵素を、最終組成物の0.01〜10%含むことを特徴
とする請求項1記載の酵素液体洗浄剤。
3. The enzymatic liquid detergent according to claim 1, wherein the lipolytic enzyme used in the liquid detergent contains 0.01 to 10% of the final composition.
【請求項4】  前記酵素液体洗浄剤が、脂質分解酵素
安定化剤としてホウ素化合物を0.01〜1.0重量部
含有することを特徴とする請求項1記載の酵素液体洗浄
剤。
4. The enzymatic liquid detergent according to claim 1, wherein the enzymatic liquid detergent contains 0.01 to 1.0 parts by weight of a boron compound as a lipolytic enzyme stabilizer.
【請求項5】  前記酵素液体洗浄剤が、脂質分解酵素
安定化剤としてホウ素化合物を0.01〜1.0重量部
及びポリビニルピロリドンを0.05〜5.0重量部含
有することを特徴とする請求項1記載の酵素液体洗浄剤
5. The enzymatic liquid detergent contains 0.01 to 1.0 parts by weight of a boron compound and 0.05 to 5.0 parts by weight of polyvinylpyrrolidone as a lipolytic enzyme stabilizer. The enzymatic liquid detergent according to claim 1.
JP14457891A 1991-06-17 1991-06-17 Enzymatic liquid cleaning agent Pending JPH04370197A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP14457891A JPH04370197A (en) 1991-06-17 1991-06-17 Enzymatic liquid cleaning agent

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP14457891A JPH04370197A (en) 1991-06-17 1991-06-17 Enzymatic liquid cleaning agent

Publications (1)

Publication Number Publication Date
JPH04370197A true JPH04370197A (en) 1992-12-22

Family

ID=15365419

Family Applications (1)

Application Number Title Priority Date Filing Date
JP14457891A Pending JPH04370197A (en) 1991-06-17 1991-06-17 Enzymatic liquid cleaning agent

Country Status (1)

Country Link
JP (1) JPH04370197A (en)

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1996025957A1 (en) * 1995-02-21 1996-08-29 Tomey Technology Corporation Cleaning and disinfecting agent for contact lens and method for cleaning and disinfecting contact lens using the same
US5576278A (en) * 1995-06-07 1996-11-19 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use
US5604190A (en) * 1995-06-07 1997-02-18 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5605661A (en) * 1995-08-18 1997-02-25 Alcon Laboratories, Inc. Methods of using liquid enzyme compositions containing mixed polyols
US5672213A (en) * 1995-08-18 1997-09-30 Alcon Laboratories, Inc. Liquid enzyme compositions containing aromatic acid derivatives
US5723421A (en) * 1995-06-07 1998-03-03 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US6139646A (en) * 1998-09-01 2000-10-31 Alcon Laboratories, Inc. Alkyl trypsin compositions and methods of use in contact lens cleaning and disinfecting systems
US6184189B1 (en) 1995-06-07 2001-02-06 Alcon Laboratories, Inc. Liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US6214596B1 (en) 1996-12-18 2001-04-10 Alcon Laboratories, Inc. Liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US6228323B1 (en) 1996-12-13 2001-05-08 Alcon Laboratories, Inc. Multi-purpose compositions containing an alkyl-trypsin and methods of use in contact lens cleaning and disinfecting
WO2001038471A1 (en) * 1999-11-24 2001-05-31 Henkel Kommanditgesellschaft Auf Aktien Method for production of enzyme-containing micro-emulsions and micro-encapsulated enzymes
US11150383B2 (en) 2005-02-14 2021-10-19 Johnson & Johnson Vision Care, Inc. Comfortable ophthalmic device and methods of its production

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5785767A (en) * 1995-02-21 1998-07-28 Tomey Technology Corporation Cleaning and disinfecting solution for contact lens and method of cleaning and disinfecting contact lens using the solution
WO1996025957A1 (en) * 1995-02-21 1996-08-29 Tomey Technology Corporation Cleaning and disinfecting agent for contact lens and method for cleaning and disinfecting contact lens using the same
US6184189B1 (en) 1995-06-07 2001-02-06 Alcon Laboratories, Inc. Liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5723421A (en) * 1995-06-07 1998-03-03 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5604190A (en) * 1995-06-07 1997-02-18 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5939369A (en) * 1995-06-07 1999-08-17 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5948738A (en) * 1995-06-07 1999-09-07 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US5576278A (en) * 1995-06-07 1996-11-19 Alcon Laboratories, Inc. Stable liquid enzyme compositions and methods of use
US5672213A (en) * 1995-08-18 1997-09-30 Alcon Laboratories, Inc. Liquid enzyme compositions containing aromatic acid derivatives
US5919313A (en) * 1995-08-18 1999-07-06 Alcon Laboratories, Inc. Liquid enzyme compositions containing aromatic acid derivatives and methods of use
US6069120A (en) * 1995-08-18 2000-05-30 Alcon Laboratories, Inc. Liquid enzyme compositions containing mixed polyols and methods of use
US5605661A (en) * 1995-08-18 1997-02-25 Alcon Laboratories, Inc. Methods of using liquid enzyme compositions containing mixed polyols
US6358897B1 (en) 1996-06-07 2002-03-19 Alcon Laboratories, Inc. Alkyl trypsin compositions and methods of use in contact lens cleaning and disinfecting systems
US6228323B1 (en) 1996-12-13 2001-05-08 Alcon Laboratories, Inc. Multi-purpose compositions containing an alkyl-trypsin and methods of use in contact lens cleaning and disinfecting
US6214596B1 (en) 1996-12-18 2001-04-10 Alcon Laboratories, Inc. Liquid enzyme compositions and methods of use in contact lens cleaning and disinfecting systems
US6139646A (en) * 1998-09-01 2000-10-31 Alcon Laboratories, Inc. Alkyl trypsin compositions and methods of use in contact lens cleaning and disinfecting systems
WO2001038471A1 (en) * 1999-11-24 2001-05-31 Henkel Kommanditgesellschaft Auf Aktien Method for production of enzyme-containing micro-emulsions and micro-encapsulated enzymes
US11150383B2 (en) 2005-02-14 2021-10-19 Johnson & Johnson Vision Care, Inc. Comfortable ophthalmic device and methods of its production
US11953651B2 (en) 2005-02-14 2024-04-09 Johnson & Johnson Vision Care, Inc. Comfortable ophthalmic device and methods of its production

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