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JET INHALER

MENTHOL/CAMPHOR/WINTERGREEN OIL/TURPENTINE OIL

FDA/SD.245-091654 MENTHOL/CAMPHOR/WINTERGREEN OIL/TURPENTINE OIL 42.5%w/w/40%w/w/12.5%w/w/5%w/w INN generic

What it does

Camphor is a natural compound used for its soothing properties and is often found in topical products.

Commonly used for: muscle pain relief, cough relief, skin irritation treatment

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Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.

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Registration & product details

Registration no.
FDA/SD.245-091654
Registration date
2024-10-01
Expiry date
2028-05-01
Status
Valid
Active ingredient
MENTHOL/CAMPHOR/WINTERGREEN OIL/TURPENTINE OIL
Strength
42.5%w/w/40%w/w/12.5%w/w/5%w/w
Pack size
-
Therapeutic class
-
RxNorm RxCUI
1952
Manufacturer / MAH
Konghuan Ohst
Country of origin
-
Manufacturer location
เลขที่ 8 3138 Tambon Khlong Kiu, Amphoe Ban Bueng, Chang Wat Chon Buri 20220, Thailand

Source: Food and Drugs Authority · fetched 2026-04-18 08:42:00 · updated 2026-09-25 04:00:14

Disclaimer: This information is sourced from Food and Drugs Authority (Ghana). Always consult a qualified healthcare professional before using any medication.

About camphor

Camphor is a natural compound used for its soothing properties and is often found in topical products.

What it treats

  • muscle pain relief
  • cough relief
  • skin irritation treatment

How it works

Camphor works by creating a cooling sensation on the skin, which helps reduce pain and irritation.

Who it's for

Camphor is suitable for adults and children for topical use, but should be used with caution.

Cautions

  • • Do not apply to broken skin or open wounds.
  • • Avoid using on large areas of the body.
  • • Keep away from the eyes and mouth.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About menthol

Menthol is a natural compound often used for its soothing and cooling effects.

What it treats

  • cough relief
  • muscle pain relief
  • skin irritation treatment

How it works

Menthol creates a cooling sensation on the skin and mucous membranes, which can help relieve discomfort.

Who it's for

Menthol is suitable for adults and children who need relief from coughs, muscle aches, or skin irritation.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About turpentine

Turpentine is a substance that has been used in traditional medicine, but it is not commonly recommended for modern medical treatments due to safety concerns.

What it treats

  • skin conditions
  • respiratory issues

How it works

Turpentine may have properties that can help in treating certain ailments, but its exact effects are not well understood.

Who it's for

Turpentine is generally not recommended for most people due to potential health risks.

Cautions

  • • Not safe for ingestion
  • • Can cause skin irritation
  • • May be harmful if inhaled

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

About wintergreen

Wintergreen is a natural product often used for its soothing properties, especially in topical applications.

What it treats

  • muscle pain
  • joint pain
  • inflammation

How it works

Wintergreen contains a compound called methyl salicylate, which helps relieve pain by reducing inflammation and soothing sore areas.

Who it's for

Wintergreen is suitable for adults and children who need relief from muscle or joint discomfort.

AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.

Clinical monograph: camphor

BNF-referenced

Camphor is a naturally occurring compound with a chemical formula of C10H16O. It is primarily used as an active ingredient in topical analgesics, such as balms and liniments, due to its ability to relieve pain and inflammation. Camphor has been traditionally utilized in various cultures for its soothing properties and is often applied to the skin for symptomatic relief.

Indications

  • Topical pain relief
  • Muscle aches
  • Joint pain
  • Inflammation

Dosage

Children: For children, the

Adults: For topical application, camphor is usually applied as needed to the affected area, following the instructions on the specific product used. Consult the product label or a healthcare professional for detailed dosing guidelines.

Mechanism of action

Camphor activates the transient receptor potential vanilloid 1 (TRPV1) and TRPV3 channels, which are involved in sensing pain and temperature. It requires higher concentrations to activate TRPV1 compared to capsaicin but notably desensitizes TRPV1 more rapidly and completely. This action is enhanced under inflamed conditions through phospholipase C-coupled receptor stimulation. The distinct activation pathways of camphor contribute to its analgesic effects, making it effective in reducing pain sensitivity.

Pharmacodynamics

The pharmacodynamic properties of camphor are primarily related to its interaction with TRPV1 and TRPV3 channels. By activating these receptors, camphor induces a sensation of warmth and can result in analgesia through sensory nerve excitation and subsequent desensitization. This mechanism is similar to that of other topical analgesics like capsaicin and menthol but is characterized by a faster desensitization of TRPV1. Additionally, camphor's effects may include local vasodilation and increased blood flow to the area of application, which can further alleviate pain and inflammation.

Pharmacokinetics

Camphor is absorbed through the skin when applied topically. Its pharmacokinetic profile involves distribution to various tissues, where it can exert local effects. The metabolism of camphor occurs primarily in the liver, and it is eliminated from the body mainly through urine. The onset of action is typically rapid due to its topical application, and the duration of effect may vary depending on the formulation and concentration used.

Adverse effects

  • Skin irritation
  • Allergic reactions
  • Nausea
  • Vomiting
  • Dizziness

Precautions

  • Use with caution in individuals with sensitive skin
  • Avoid contact with eyes and mucous membranes
  • Do not apply to broken or irritated skin
  • Keep out of reach of children

Pregnancy

Camphor should be used with caution during pregnancy. It is advisable to consult a healthcare professional before use.

Breast-feeding

Camphor should be used with caution while breastfeeding. Consult a healthcare professional for advice.

Storage

Store in a cool, dry place, away from direct sunlight and heat.

Formulations

  • Topical ointments
  • Liniments
  • Creams
  • Gels

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: menthol

BNF-referenced

Menthol is a cyclic monoterpene alcohol that is widely used as a flavoring agent and in topical analgesic preparations due to its cooling sensation. It is commonly derived from peppermint oil and is known for its soothing properties in various applications, including cough drops, ointments, and as a fragrance in personal care products.

Indications

  • Topical analgesic for muscle and joint pain
  • Cough suppressant in cough drops and lozenges
  • Relief of minor throat irritation
  • Cooling agent in various cosmetic and personal care products

Dosage

Children: Refer to BNF for Children for specific dosing guidelines, as doses may vary based on age and formulation.

Adults: For topical use, apply a thin layer to the affected area not more than 3 to 4 times daily. For cough drops, follow the product-specific instructions as per the formulation.

Mechanism of action

Menthol acts as an agonist for the transient receptor potential subtype M8 (TRPM8), a non-selective cation channel that is activated by cold temperatures. This activation leads to calcium influx in mast cells, inducing the release of histamine, which can trigger allergic responses such as urticaria, asthma, and rhinitis. Menthol's ability to induce histamine release via TRPM8 suggests potential therapeutic applications for TRPM8 antagonists in managing cold- and menthol-induced allergies.

Pharmacodynamics

Menthol produces a cooling effect by stimulating sensory neurons that convey cold sensations. It interacts with TRPM8 channels, leading to the activation of intracellular signaling pathways that can result in vasodilation and increased blood flow to the area of application. This cooling sensation can provide symptomatic relief in conditions characterized by pain or irritation.

Pharmacokinetics

Menthol is absorbed through the skin and mucous membranes, with systemic effects depending on the route of administration. Its bioavailability can vary, and it is metabolized primarily in the liver. The elimination half-life and excretion pathways have not been extensively characterized, but menthol is generally considered to have a rapid onset of action with effects lasting for a few hours.

Adverse effects

  • Allergic reactions
  • Urticaria
  • Asthma
  • Rhinitis
  • Skin irritation

Precautions

  • Use with caution in patients with known allergies to menthol or related compounds
  • May exacerbate asthma in sensitive individuals

Pregnancy

There are no well-controlled studies of menthol in pregnant women. Menthol should be used during pregnancy only if clearly needed.

Breast-feeding

Menthol is excreted in breast milk. Caution should be exercised when administering to nursing mothers.

Storage

Store in a cool, dry place away from light. Keep out of reach of children.

Formulations

  • Topical ointment
  • Cream
  • Liquid

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: turpentine

Turpentine is a volatile oil obtained from the resin of pine trees, primarily used as a solvent in paints and varnishes. In traditional medicine, it has been used for its potential antiseptic and irritant properties. It is known to cause irritation of mucous membranes and can be toxic in high doses.

Indications

  • Local antiseptic
  • Irritant for mucous membranes
  • Traditional medicinal uses

Dosage

Children: Refer to established guidelines and clinical practice for specific dosages, as turpentine is not commonly used in modern medicine.

Adults: Refer to established guidelines and clinical practice for specific dosages, as turpentine is not commonly used in modern medicine.

Mechanism of action

Turpentine acts as a local irritant, leading to increased blood flow and inflammatory response in tissues. It may also exert some antimicrobial effects, although the exact pathways are not well defined. The main active components are terpenes, which can affect cellular membranes and interfere with microbial function.

Pharmacodynamics

Turpentine exhibits irritant properties, resulting in stimulation of sensory nerves and local inflammatory responses. It may also have some systemic effects when absorbed, which can lead to toxicity if ingested or inhaled in large amounts. The pharmacological effects are primarily due to its terpene content, which can impact various biological pathways.

Pharmacokinetics

Turpentine is rapidly absorbed through mucous membranes and skin. It is metabolized in the liver, where it undergoes oxidation and conjugation. The metabolites are primarily excreted via the urine. Due to its volatile nature, turpentine can also be inhaled, leading to rapid absorption into the bloodstream. The half-life of turpentine varies based on the method of exposure and individual metabolism.

Contra-indications

  • Hypersensitivity to turpentine or any component of the formulation
  • Pregnancy and lactation due to potential harmful effects

Adverse effects

  • Skin irritation or dermatitis upon topical application
  • Gastrointestinal disturbances such as nausea, vomiting, and diarrhea
  • Respiratory irritation from inhalation
  • Central nervous system effects including headache, dizziness, and confusion
  • Kidney damage with prolonged exposure or high doses

Interactions

  • May interact with other CNS depressants, increasing sedation
  • Potentially enhances the effects of certain medications metabolized by the liver

Precautions

  • Use with caution in individuals with pre-existing respiratory conditions
  • Should not be ingested or applied to broken skin
  • Avoid inhalation of vapors

Pregnancy

Not recommended. Potentially harmful effects on the fetus have been reported.

Breast-feeding

Not recommended. Potential for excretion in breast milk and harmful effects on the infant.

Storage

Store in a cool, dry place away from light, and keep tightly closed. Keep out of reach of children.

Formulations

  • Topical ointments or liniments
  • Inhalation solutions
  • Oral preparations (not commonly recommended due to toxicity)

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Clinical monograph: wintergreen

BNF-referenced

Wintergreen oil, primarily containing methyl salicylate, is a topical analgesic used for the relief of musculoskeletal pain. It acts by providing counter-irritation, which is believed to alleviate pain through sensory nerve stimulation. Methyl salicylate is structurally similar to aspirin and exhibits properties akin to non-steroidal anti-inflammatory drugs (NSAIDs).

Indications

  • Musculoskeletal pain
  • Arthritis
  • Tendinitis
  • Back pain
  • Muscle strains and sprains

Dosage

Children: Refer to the BNF for Children for specific dosing guidelines.

Adults: Apply to the affected area, usually 3 to 4 times daily as needed, ensuring not to exceed the recommended amount.

Mechanism of action

Counter-irritation is thought to be effective at alleviating musculoskeletal pain as the irritation of the sensory nerve endings alters or offsets pain in the underlying muscle or joints served by the same nerves. When applied topically, methyl salicylate penetrates the skin and underlying tissues, where it reversibly inhibits cyclooxygenase enzyme and prevents the production of inflammatory mediators such as prostaglandin and thromboxane A2.

Pharmacodynamics

Methyl salicylate relieves musculoskeletal pain in muscles, joints, and tendons by causing irritation and reddening of the skin due to dilated capillaries and increased blood flow. It acts as a rubefacient and skin irritant, providing a soothing sensation of warmth. Its pharmacological profile is similar to that of aspirin and other NSAIDs.

Pharmacokinetics

Methyl salicylate is absorbed through the skin upon topical application, where it exerts its effects locally. It undergoes metabolism primarily in the liver, and its metabolites are excreted via urine. The onset of action is relatively rapid, given the local application.

Adverse effects

  • Skin irritation
  • Allergic reactions
  • Burning sensation at the application site

Precautions

  • Avoid contact with eyes and mucous membranes
  • Do not apply to broken or irritated skin
  • Use with caution in patients with sensitive skin or allergies

Pregnancy

Data on the safety of wintergreen during pregnancy is limited. Consult a healthcare professional before use.

Breast-feeding

Limited data available; consult a healthcare professional before use.

Storage

Store in a cool, dry place away from direct sunlight. Keep out of reach of children.

Formulations

  • Topical ointment
  • Topical gel
  • Liniment

AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.

Molecular reference: camphor

PubChem CID 2537

Molecular formula: C10H16O

Mechanism of action

Camphor is a naturally occurring compound that is used as a major active ingredient of balms and liniments supplied as topical analgesics. ... Capsaicin and menthol, two other topically applied agents widely used for similar purposes, are known to excite and desensitize sensory nerves by acting on two members of transient receptor potential (TRP) channel superfamily: heat-sensitive TRP vanilloid subtype 1 (TRPV1) and cold-sensitive TRP channel M8, respectively. Camphor has recently been shown to activate TRPV3, and here /investigators/ show that camphor also activates heterologously expressed TRPV1, requiring higher concentrations than capsaicin. Activation was enhanced by phospholipase C-coupled receptor stimulation mimicking inflamed conditions. Similar camphor-activated TRPV1-like currents were observed in isolated rat DRG neurons and were strongly potentiated after activation of protein kinase C with phorbol-12-myristate-13-acetate. Camphor activation of rat TRPV1 was mediated by distinct channel regions from capsaicin, as indicated by camphor activation in the presence of the competitive inhibitor capsazepine and in a capsaicin-insensitive point mutant. Camphor did not activate the capsaicin-insensitive chicken TRPV1. TRPV1 desensitization is believed to contribute to the analgesic actions of capsaicin. /The authors/ found that, although camphor activates TRPV1 less effectively, camphor application desensitized TRPV1 more rapidly and completely than capsaicin. Conversely, TRPV3 current sensitized after repeated camphor applications, which is inconsistent with the analgesic role of camphor. /Investigators/ also found that camphor inhibited several other related TRP channels, including ankyrin-repeat TRP 1 (TRPA1). The camphor-induced desensitization of TRPV1 and block of TRPA1 may underlie the analgesic effects of camphor.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: menthol

PubChem CID 1254

Molecular formula: C10H20O

Mechanism of action

Exposure to low temperatures often causes allergic responses or urticaria. Similarly, menthol, a common food additive is also known to cause urticaria, asthma, and rhinitis. However, despite the obvious clinical implications, the molecular mechanisms responsible for inducing allergic responses to low temperatures and menthol have not been determined. Because a non-selective cation channel, transient receptor potential subtype M8 (TRPM8) is activated by cold and menthol, we hypothesized that this channel mediates cold- and menthol-induced histamine release in mast cells. Here, we report that TRPM8 is expressed in the basophilic leukemia mast cell line, RBL-2H3, and that exposure to menthol or low temperatures induced Ca(2+) influx in RBL-2H3 cells, which was reversed by a TRPM8 blocker. Furthermore, menthol, a TRPM8 agonist, induced the dose-dependent release of histamine from RBL-2H3 cells. When TRPM8 transcripts were reduced by siRNA (small interfering RNA), menthol- and cold-induced Ca(2+) influx and histamine release were significantly reduced. In addition, subcutaneous injection of menthol evoked scratching, a typical histamine-induced response which was reversed by a TRPM8 blocker. Thus, our findings indicate that TRPM8 mediates the menthol- and cold-induced allergic responses of mast cells, and suggest that TRPM8 antagonists be viewed as potential treatments for cold- and menthol-induced allergies. /DL-Menthol/ Menthol's characteristic cooling sensation is due, in part, to the activation of sensory neurons generally termed transient receptor potential (TRP) channels, in particular transient receptor potential melastatin family member 8 (TRPM8) and transient receptor potential subfamily A, member 1 (TRPA1). Menthol acts upon TRPM8 receptors by rapidly increasing intracellular calcium and mobilizing calcium flux through the channels to induce cold response signals at the application site. Aside from its cold-inducing sensation capabilities, menthol exhibits cytotoxic effects in cancer cells, induces reduction in malignant cell growth, and engages in synergistic excitation of GABA receptors and sodium ion channels resulting in analgesia. /DL-Menthol/ In recent years, the transient receptor potential melastatin member 8 (TRPM8) channel has emerged as a promising prognostic marker and putative therapeutic target in prostate cancer. We have found that forced overexpression of TRPM8 in PC-3 cells can inhibit the cell proliferation and motility probably through the TRPM8 activation. In this study, we aimed to investigate whether activating the TRPM8 channel by its selective agonist menthol can inhibit the proliferation and motility of androgen-independent prostate cancer (AIPC) with remarkable expression of TRPM8. Menthol is a naturally occurring compound, which has been widely used in cosmetics and pharmaceutical products, and also as flavoring in food. DU145 cells are androgen-independent but have a remarkable expression of TRPM8. The demonstration of the existence of TRPM8 and the absence of TRPA1 in DU145 cells provided the foundation for the following experiments, because both TRPM8 and TRPA1 are molecular targets of menthol. The outcome of MTT assay indicated that menthol inhibited the cell growth (p < 0.01). Cell cycle distribution and scratch assay analysis revealed that menthol induced cell cycle arrest at the G(0)/G(1) phase (p < 0.01). Furthermore, menthol inhibited the migration of DU145 cells by downregulating the focal-adhesion kinase. So it suggests that the activation of the existing TRPM8 channels may serve as a potential and pragmatic treatment for those AIPC with remarkable expression of TRPM8, and menthol is a useful compound for future development as an anticancer agent. /DL-Menthol/

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

Molecular reference: wintergreen

PubChem CID 4133

Molecular formula: C8H8O3

Mechanism of action

Counter-irritation is thought to be effective at alleviating musculoskeletal pain as the irritation of the sensory nerve endings is thought to alter or offset pain in the underlying muscle or joints that are served by the same nerves. This is thought to mask the underlying musculoskeletal pain and discomfort. When applied topically, methyl salicylate is thought to penetrate the skin and underlying tissues where it reversibly inhibits cyclooxygenase enzyme and locally and peripherally prevents the production of inflammatory mediators such as prostaglandin and thromboxane A2.

Pharmacodynamics

Methyl salicylate relieve musculoskeletal pain in the muscles, joints, and tendons by causing irritation and reddening of the skin due to dilated capillaries and increased blood flow. It is pharmacologically similar to aspirin and other NSAIDs but as a topical agent it primarily acts as a rubefacient and skin irritant. Counter-irritation is believed to cause a soothing sensation of warmth.

Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.

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