On ECHEMI
Home > Drugs > Shandong Luxi Pharmaceutical Co., Ltd.
Shandong Luxi Pharmaceutical Co., Ltd.
  • Founded in:

    2001-05-11
  • Country:

    China China
  • Address:

    No. 17, Huanghe East Road, Juancheng County, Heze City, Shandong Province
  • Tax NO.:

    913717007286218037
  • Registered Funds:

    31.88 million yuan
  • Website:

  • Email:

Related Drugs
Flavonoid Hydrochloride Tablets
Flavonoxate hydrochloride.
Name Description Content CAS NO. Registered Holders
Flavoxate hydrochloride

Smooth muscle relaxant. It has the function of inhibiting adenylate cyclase and phosphodiesterase, antagonizing calcium ions, and has a weak antimuscarinic effect. It has a selective antispasmodic effect on the smooth muscles of the urogenital system, and can directly relieve the spasm of the smooth muscles of the urogenital system, relax the muscles, and eliminate the lower abdominal pain caused by frequent urination, urgency, urinary incontinence, and spasm of the urethral bladder smooth muscles.

More

Smooth muscle relaxant. It has the function of inhibiting adenylate cyclase and phosphodiesterase, antagonizing calcium ions, and has a weak antimuscarinic effect. It has a selective antispasmodic effect on the smooth muscles of the urogenital system, and can directly relieve the spasm of the smooth muscles of the urogenital system, relax the muscles, and eliminate the lower abdominal pain caused by frequent urination, urgency, urinary incontinence, and spasm of the urethral bladder smooth muscles.

3717-88-2 12
Flavonoids hydrochloride
Name Description Content CAS NO. Registered Holders
Flavoxate hydrochloride

No specific pharmacological effects mentioned

More

No specific pharmacological effects mentioned

3717-88-2 12
Calamine lotion
This product is a compound preparation containing calamine, zinc oxide and glycerin.
Name Description Content CAS NO. Registered Holders
CALAMINE

8011-96-9 4
Zinc oxide

1314-13-2 22
Glycerol

56-81-5 61
Vitamin B1 tablets
Each tablet of this product contains the main ingredient vitamin B110 mg, and the auxiliary ingredients are starch, dextrin, sucrose, medicinal calcium sulfate, citric acid, sodium lauryl sulfate, and magnesium stearate.
Name Description Content CAS NO. Registered Holders
Thiamine chloride

It combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; it can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, the hydrolysis of acetylcholine is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

It combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; it can inhibit the activity of cholinesterase. When it is deficient, the activity of cholinesterase is enhanced, the hydrolysis of acetylcholine is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

10mg 59-43-8 9
Starch

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

9005-25-8 78
Dextrin

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

9004-53-9 50
Sucrose

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

57-50-1 72
Medicinal calcium sulfate

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

0
Citric acid monohydrate

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

5949-29-1 39
Sodium dodecyl sulfate

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

151-21-3 17
Magnesium stearate

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

More

Vitamin B1 combines with adenosine triphosphate to form vitamin B1 pyrophosphate (thiamine diphosphate, cocarboxylase), which is a coenzyme necessary for carbohydrate metabolism; vitamin B1 can inhibit the activity of cholinesterase. When it is deficient, cholinesterase activity is enhanced, acetylcholine hydrolysis is accelerated, causing nerve impulse conduction disorders, and affecting gastrointestinal and myocardial function.

557-04-0 61
Ibuprofen tablets
Ibuprofen
Name Description Content CAS NO. Registered Holders
Ibuprofen

This product can inhibit the synthesis of prostaglandins and has antipyretic, analgesic and anti-inflammatory effects.

More

This product can inhibit the synthesis of prostaglandins and has antipyretic, analgesic and anti-inflammatory effects.

15687-27-1 53
Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.