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@footclinicnorthampton
Chiropodist in Northampton. Podiatry Clinic HCPC Registered Podiatrist. Kettering Wellingborough Daventry Free Parking 01604 422772
Chiropodist in Northampton. Podiatry Clinic HCPC Registered Podiatrist. Kettering Wellingborough Daventry Kettering Free Parking 01604 422772
Laser treatments now available for warts, verrucas and fungal nails.
Chiropodist in Northampton. Podiatry Clinic HCPC Registered Podiatrist. Kettering Wellingborough Daventry Kettering Free Parking 01604 422772
Laser Therapy now available for verrucas, warts and fungal nails.
34 Billing Road, Northampton. NN1 5DX
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We are open as usual. Do you have a painful Ingrowing Toenail? You can be pain free today. Have it removed permanently within 30 minutes. Suffering with verrucas or warts? We offer a new treatment called Dry Needling which can resolve the verruca or wart in 69% of patients on the first treatment. Painful corns, hard skin, thick unsightly nails or fungal nails? Can't reach your feet to cut your nails? If you are unsure if we can help ring Isobel and ask as we treat many more foot problems than you may think. Podiatrists are fully trained foot specialists with years of training in treating all conditions of the lower limb. Whatever your foot and lower limb problem all you need to do is pick up the phone and ring 01604 422772
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Fungal Nail research.
Fungal Nail Infections (Onychomycosis): A Never-Ending Story?
Mahmoud Ghannoum*and Nancy Isham
William E. Goldman, Editor
Author information
Copyright and License information
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This article has been cited by other articles in PMC.
Is Onychomycosis Still a Problem?
The great majority of superficial fungal infections are caused by dermatophytes, which belong to one of three genera (Trichophyton, Epidermophyton, and Microsporum), with T. rubrum being the most prominent cause of nail infection (Figure 1). Table 1 summarizes the prevalence of various superficial fungal infections in different geographic areas [1]. Among superficial fungal infections, by far the most difficult to cure is toenail onychomycosis (Figure 2). The prevalence of onychomycosis has been reported to be as high as 23% across Europe [2] and 20% in East Asia [3]. In North America, the incidence of onychomycosis is up to 14% [4], with fungal infection responsible for 50% of all nail disease [5]. With millions of dollars being spent annually on oral and topical prescriptions, laser treatments, over-the-counter products, and home remedies, it is obvious that people are still bothered by their fungal toenail infections and are determined to get rid of them. Unfortunately, this is easier said than done. To successfully cure toenail onychomycosis requires long treatment duration that may extend to a full year. Even then, complete cure, defined as clinical cure (implying nail clearing) plus mycological cure (both negative microscopy and dermatophyte culture), is often unattainable.
What Are the Risk Factors for Toenail Onychomycosis?
The most prevalent predisposing risk factor for developing onychomycosis is advanced age, which is reported to be 18.2% in patients 60–79 years of age, compared to 0.7% in patients younger than 19 years of age. Further, men are up to three times more likely to have onychomycosis than women, though the reasons for this gender difference are not clear [6]. Moreover, the low prevalence of infection in people whose spouses have onychomycosis compared to the prevalence among their children suggests a genetic risk factor [7]. Though extremely rare, one study reported four family members from seven unrelated groups with a common genetic trait (autosomal recessive CARD9 deficiency) who developed a dermatophyte infection of deep tissues that proved fatal [8].
Other risk factors include diabetes and conditions contributing to poor peripheral circulation [9]. In fact, onychomycosis may represent an important predictor for the development of diabetic foot syndrome and foot ulcers [10]. Patients who are immunosuppressed, such as those with HIV infection and those undergoing cancer therapy, are also predisposed to fungal nail infection [11]. There is at least one case report of a toenail infection caused by Fusarium (a non-dermatophyte fungus) that developed into a fatal systemic infection in a lymphoma patient following a bone marrow transplant [12].
Several nonclinical risk factors also affect a person's chance of developing fungal nail infections. Toenail onychomycosis is not prevalent in tropical climates, presumably because people in those areas are not in the habit of wearing occlusive footwear that create a warm, moist environment for the proliferation of fungi. Further, the spread of foot infections, including tinea pedis (athlete's foot), may occur in places such as shower stalls, bathrooms, or locker rooms where floor surfaces often are wet and people are barefoot [13]. Nail trauma will also increase the risk of fungal infection of the affected nail, especially in the geriatric population [11].
A recent study by our group utilized regression analysis to show that history of tinea pedis plus three clinical variables—onychomycosis, plantar scaling (a clinical sign of tinea pedis), and nail discoloration (a clinical sign of onychomycosis and generally indicative of severe nail infection) were statistically associated with spread of infection in households with multiple infected members (P≤.044) [14].
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How Is Onychomycosis Treated?
Treatment of onychomycosis includes chemical or surgical removal of the infected nail, systemic or topical drugs, pulse therapy, or a combination thereof. Table 2 is a summary of oral and topical therapy regimens; as can be seen, the course of treatment for fingernail infections is shorter than for toenail infections. The treatment of onychomycosis has improved considerably over the past several decades, following the introduction of the oral antifungals terbinafine and itraconazole. However, these drugs may have side effects such as liver damage or drug interactions, which are particularly relevant in the elderly population [15]. Further, nail infections caused by non-dermatophyte organisms, such as Fusarium, are especially difficult to treat [16].
Table 2Treatment of onychomycosis with antifungal agents.AgentDoseDuration
Terbinafine250 mgToenails: once per day for 12 weeks
Fingernails: once per day for 6 weeks
Itraconazole200 mgToenails: once per day for 12 weeks
pulse therapyToenails: 200 mg twice per day for 1 week/no treatment for 3 weeks. Repeat for 3–4 months
Fingernails: 200 mg twice per day for 1 week/no treatment for 3 weeks. Repeat for 2 months
Fluconazole300–450 mgToenails: once/week for 9–12 months
150–300 mgFingernails: once/week for 4–6 months
Ciclopirox nail lacquerapply once per dayRemove lacquer once per week. Treat for up to 48 weeks
Amorolfine nail lacquerapply once or twice a weekRemove lacquer before each new application. Toenails: 9–12 months. Fingernails: 6 months
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Why Don't Topical Antifungals Work Better?
Unfortunately, currently available topical agents, such as amorolfine 5% and ciclopirox 8%, have low efficacy (approximately 5%–12%) [17], [18]. This low efficacy can mainly be attributed to the inability of the drug to penetrate through the nail plate to the nail bed where the infection resides [19]. Thickened nails, extensive involvement of the entire nail, lateral disease, and yellow spikes contribute to a poor response to topical treatment [11]. Figure 1 shows an example of distal subungual onychomycosis, trimmed to demonstrate nail thickening.
Further complicating the scenario is the fact that certain antifungals will bind to the nail plate and thus may not be available at the site of infection, which is the nail bed. For example, terbinafine has been shown to accumulate rapidly in the nail, reaching a maximum of 0.39 mg/g and persisting up to 2 months following the end of treatment [20]. In this regard, Ryder et al. developed an in vitro nail model that showed that the cidal action of terbinafine, when tested against an established dermatophyte infection in the presence of human nail, was in fact less effective than in conventional microdilution assays where no nail powder is present [21].
Many different approaches to solving the problem of nail penetration have been attempted recently. For example, there have been attempts to develop penetration enhancers to facilitate drug delivery through the nail plate, such as addition of dodecyl-2-N,N-dimethylaminopropionate hydrochloride (DDAIP HCl, trade name NexACT-88; NexMed) to terbinafine nail lacquer [19]. Another technique to enhance the penetration of nail lacquer was the incorporation of terbinafine into transfersome lipid vesicles, which are highly deformable and thus are able to pass through intercellular spaces [22]. Additionally, a novel small-molecule oxaborole antifungal (AN2690) has recently been developed that is designed for greater penetration through the nail plate [23]. However, to date, none of these topical products has been commercialized.
In this regard, approval of topical onychomycosis drugs by regulatory agencies may be negatively impacted by an overly stringent definition of complete cure, which includes nail clearing plus mycological cure (negative microscopy and culture). Review of data from several international clinical trials by Ghannoum et al. has suggested that reassessment of the definition of onychomycosis cure is critical [24]. In these trials, a high number of toenail samples collected from subjects at the end of clinical trials contained visible fungal hyphae that subsequently failed to grow upon culture. However, current technology does not differentiate between “live” and “dead” fungi, so even though these samples had to be reported as microscopy-positive, the infection may in fact have been cured. The authors propose that, for clinical trials of topical agents, the length of treatment should be extended to 18 months, followed by a longer washout period of 3–6 months before primary assessments to allow the removal of both residual drug in the nail and nonviable fungal cells. Therefore, the absence of clinical signs following an adequate wash out period, coupled with a negative culture, with or without negative microscopy, should be considered the definition of onychomycosis cure. These changes may enable more topical agents to be proven efficacious.
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What's New in Onychomycosis Therapy?
Recent device-based therapies for onychomycosis include laser devices, photodynamic therapy, iontophoresis, and ultrasound. Laser treatment has been approved for cosmetic treatment only, but efficacy as a treatment to eradicate the fungal infection will have to be determined by additional randomized controlled trials [25]. There have been rare reports of onychomycosis cures following the use of phototherapy, which involves the irradiation of accumulated protoporphyrin within the fungal hyphae, leading to subsequent hyphal cell damage [26]. The ability of iontophoresis, or the use of electric current (0.5 mA/cm2) to facilitate the passage of drug through the nail plate, has been proven in studies with human cadaver nails, but relevant clinical studies remain to be conducted [27]. Finally, though ultrasound therapy has preliminarily demonstrated fungistatic activity against nail infections [28], the device itself seems overly complicated, with ultrasound transducers and drug delivery compartments needed above each toenail and the requirement for a computer software interface, making it a physician-office–only treatment and likely very expensive [29].
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Why Do Patients So Often Relapse?
There are multiple factors that may contribute to the high rate of fungal nail infection recurrence. Patients with a genetic predisposition to onychomycosis, who are immunocompromised, or who have diabetes, are likely to experience relapse and may never achieve a permanent cure [11].
This may be due either to failure to eradicate the infecting fungus or to re-infection with a new fungal strain following subsequent exposure. Arthroconidia, which are chains of fungal conidia that are formed by breakage of the fungal hyphae, are considered to be the primary means of nail invasion. These arthroconidia, which have thicker cell walls than conidia formed in vitro, have been shown to be more resistant to antifungals and, thus, may remain in the nail bed as a reservoir for recurrent disease [30]. However, the incidence of innate resistance among dermatophytes is low. Our Center conducted in vitro susceptibility testing of 140 sequential isolates from subjects who failed treatment in an oral terbinafine clinical trial. In all cases, the minimum inhibitory concentrations (MICs) of terbinafine against each patient set were identical or within one tube dilution, implying no resistance development. The same results were obtained within each set with fluconazole, itraconazole, and griseofulvin (with the exception of one isolate having a 3-fold increase in the MIC). This further indicates that there was no crossresistance between antifungal agents [31]. This study showed that failure to cure the infected nails may be due to host/family factors.
Even in cases where the infecting fungus has been entirely eradicated by antifungal therapy, patients remain at risk for re-infection. As mentioned above, people are exposed to dermatophyte reservoirs in many of their day-to-day activities, including trips to the gym and increased travel. Common sense measures, such as not walking barefoot through public showers or hotel rooms, would help prevent unnecessary exposure. That being said, one of the most common routes of infection is within households. It has long been suspected that nail infections were spread by close contact with family members. However, it wasn't until recently that our group was able to employ molecular techniques to prove that persons within the same household were infected by the same strain of T. rubrum [14]. For those attempting to avoid re-infection, measures such as spraying their shoes with a topical antifungal spray or treating them with a commercial ultraviolet device [32] after each wearing would be prudent. Thus, a patient not only needs to treat the infection but also break the cycle of re-infection.
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Funding Statement
The authors have received no specific funding for this work.
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Articles from PLoS Pathogens are provided here courtesy of Public Library of Science
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COVID-19 Update
During the CoronaVirus outbreak we will be open if you are in pain.
Ring Isobel on 07925 085889 anytime, she will ring back if not available.
Chiropodist & Podiatrist HCPC Registered. Northampton Free Parking at rear 01604 422772
We are open throughout the COVID pandemic as your feet need us.
Ingrowing Toenails
What are ingrown toenails?
Ingrown toenails occur when the edges or corners of your nails grow into the skin next to the nail. Your big toe is most likely to get an ingrown toenail.
You can treat ingrown toenails at home. However, they can cause complications that might require medical treatment. Your risk of complications is higher if you have diabetes or other conditions that cause poor circulation.
What causes ingrown toenails?
Ingrown toenails occur in both men and women. According to the National Health Services (NHS), ingrown toenails may be more common in people with sweaty feet, such as teenagers. Older people may also be at higher risk because toenails thicken with age.
Many things can cause an ingrown toenail, including:
cutting toenails incorrectly (Cut straight across, since angling the sides of the nail can encourage the nail to grow into the skin.)
irregular, curved toenails
footwear that places a lot of pressure on the big toes, such as socks and stockings that are too tight or shoes that are too tight, narrow, or flat for your feet
toenail injury, including stubbing your toe, dropping something heavy on your foot, or kicking a ball repeatedly
poor posture
improper foot hygiene, such as not keeping your feet clean or dry
genetic predisposition
Using your feet extensively during athletic activities can make you especially prone to getting ingrown toenails. Activities in which you repeatedly kick an object or put pressure on your feet for long periods of time can cause toenail damage and increase your risk of ingrown toenails. These activities include:
ballet
football
kickboxing
soccer
What are the symptoms of ingrown toenails?
Ingrown toenails can be painful, and they usually worsen in stages.
Early-stage symptoms include:
skin next to the nail becoming tender, swollen, or hard
pain when pressure is placed on the toe
fluid building up around the toe
If your toe becomes infected, symptoms may include:
red, swollen skin
pain
bleeding
oozing pus
overgrowth of skin around the toe
Ring us now for an appointment 01604 422772
Fungul Infections
The story of the Dermatophyte Test Strip - Ivan Bristow PhD & Michelle Score BSc (Hons)
February 1, 2019
It's always good to have new innovations in podiatry and when something does come along that can revolutionise practice its always exciting. Back in 2014, we were reading an article which was published in the British Journal of Dermatology (1). The article caught our attention because it discussed a development in the diagnosis of dermatophyte nail disease. Having been frustrated by the difficulties of ascertaining an accurate diagnosis with current methods an alternative was certainly welcome. The current clinical podiatry standard of diagnosing fungal nail infection just by clinical appearance was at best was insufficient and at worst, unethical.
The 2014 published study from a Japanese research group compared the test strip with conventional microscopy and culture from 165 nail samples. The results were impressive showing a very high sensitivity rate of 98%. Moreover, the advantages of the test were appealing to us as clinicians. Taking just five minutes to reach an accurate diagnosis with no need for high levels of technical skill? This would be great for a podiatrist, we thought. A second paper was then published which really confirmed its use. In a study of 222 nail samples, the dermatophyte test strip outperformed traditional microscopy showing high levels of accuracy (2).
Having read these articles, we were keen to obtain some samples to try out this test to see if it had a place in the podiatry clinic. Obtaining these was not straightforward but eventually, through a colleague overseas, we were able to obtain some. Needless to say, the product transformed our practice. When patients came in with a dystrophic nail, for the first time ever we were able to test the nail to check for dermatophytes instead of guessing. Having this new tool was also a learning experience. It was surprising that when we tested our ourselves using visual inspection versus the test strip, we were getting the diagnosis wrong around 25% of the time. Now patients could receive a diagnosis and begin treatment at the same appointment with no three-week wait as the samples did not have to go to the lab and of course, no disappointment when they came back a month later saying the lab specimen was negative.
At this point, we realised that the test kit was something special which should be in any clinic diagnosing and treating nail problems. So we brought the test into the UK and Ireland for clinical use. Since that time, it has been introduced throughout hundreds of podiatry clinics throughout the UK and continues to grow. For the first time, podiatrists can now reliably and quickly test for dermatophyte nail infection and increase their business. No more guessing and no more costly laboratory samples. In addition, this is a unique product which means a podiatry clinic can establish itself offering something which is not currently elsewhere. Most importantly, it also meets the guideline set by NIHCE (3) and the British Association of Dermatologists (4), namely that fungal nails should be properly diagnosed before any treatment is commenced – maintaining high clinical and ethical standards.
References:
1. Tsunemi Y, Takehara K, Miura Y, Nakagami G, Sanada H, Kawashima M. Screening for tinea unguium by Dermatophyte Test Strip. Br J Dermatol. 2014;170(2):328-31.
2. Tsunemi Y, Hiruma M. Clinical study of Dermatophyte Test Strip, an immunochromatographic method, to detect tinea unguium dermatophytes. The Journal of Dermatology. 2016;43(12):1417-23.
3. National Institute for Health and Care Excellence. Clinical Knowledge Summaries: Fungal Nail Infection: National Institute for Health and Care Excellence; 2013 [cited 2014 April 2014]. Available from: http://cks.nice.org.uk/fungal-nail-infection#!scenariorecommendation.
4. Ameen M, Lear JT, Madan V, Mohd Mustapa MF, Richardson M. British Association of Dermatologists' guidelines for the management of onychomycosis 2014. Br J Dermatol. 2014;171(5):937-58.
Dry Skin
Emollients – key to maintaining foot health - Ivan Bristow PhD, Podiatrist
October 21, 2019
Dry skin is very common. Around 29% of working age adults have it, rising to nearly 90% of people aged 80 or over (1). It is one of the most common things that we see in clinic, but it often goes undiagnosed and untreated. It has many causes but what are the effects of dry skin and how can we best manage them?
The skin is the largest organ of the body and is also the main barrier between the internal environment and the outside world protecting against a range of threats such as bacteria, virus and fungi. Most of this protection comes from the outer most layer of the epidermis – the stratum corneum.
In healthy skin, the epidermis can be visualised as a brick wall with the skin cells being the bricks and the lipids produced by the skin being the mortar – holding the bricks together with an almost watertight seal. The bricks, are skin cells manufactured in the lowest level of the epidermis, the basal layer, which are modified as they ascend the layers to reach the outermost layer, the stratum corneum, in around 25 days or so. The mortar - skin lipids are produced from the breakdown of a molecule called filaggrin which degrades to a range of lipids (natural moisturising factors – NMF’s) which are expelled from the stratum granulosum onto the cells coating them in a waterproof layer which retains the skins moisture. The drier the skin becomes the less filaggrin is produced and so less lipid is released. Thus, creating a downward spiral of skin health. Consequently, small cracks appear in the skin and it becomes vulnerable to bacterial and fungal infections (2) along with irritants and potential allergens.
So, what are the main causes of dry skin? For most sufferers, the cause is physiological and not pathological i.e. the way we live rather than any given disease. Factors include:
Over-bathing or showering
“Hot” showers
Use of shower gels, soaps and cleansers (often containing SLS and similar agents) which remove the skins natural lipids
Soaking the skin
Insufficient rinsing of soaps and gels
Vigorous drying
Humidity – central heating and air conditioning
Sun exposure
Each time the skin is bathed, particularly if a shower gel or soap is used, removal of the skins NMF’s occurs, and a period is required for natural skin recovery to occur. Consequently, it’s a game of catch up for the skin leading to dryness. The skin recovery time increases with age probably explaining why dry skin is more prevalent in the older age groups. With showering comes another risk, particularly for the feet and legs. When soaps and gels are applied, gravity means they may run down the legs but rarely are the legs and feet properly rinsed after a shower, meaning the product remains on the skin provoking and prolonging further dryness in these areas.
In addition, there are a range of known medical disorders which can cause or exacerbate dry skin:
Skin disorders – psoriasis, eczema, fungal infections etc.,
Diabetes
Peripheral vascular disease
Anaemia
Thyroid disorders
Side effects of common drugs – statins
Statins are taken by many of our patients – their job is to lower cholesterol which they do very well. Unfortunately, cholesterol is a building block required in the manufacture of skin lipids so patients on these drugs are more likely to have dry skin problems (2).
Dry Skin and the Feet
Tinea pedis or dry skin?
Dry skin on the feet can be asymptomatic for the patient but is characterised by scale, redness, tightness, itching or occasionally dry fissuring. Tinea pedis is a great mimic of dry skin and so should be ruled out as a possible differential diagnosis. Two weeks daily application of a suitable antifungal such as clotrimazole (Canesten®) or terbinafine cream (Lamisil®) is a simple way to determine if a fungal infection is present on the skin. If the dry skin dramatically improves it suggests the cause was fungal in origin.
Treatment of dry skin
The mainstay of treatment is the regular application of an emollient to the feet. This is something which can be easily stocked and sold in the clinic. As a common condition, you can be assured that there will be a need for this by patients. So, which one do you stock? It is important to stress there is still no consensus on what the most effective emollients are (3). Which emollient is best for your patients is really down to patient choice (3, 4).
The skin on the foot has a very thick epidermis on the plantar area and for the most part is in a shoe for considerable periods of the day so additional factors need to be considered. Firstly, the foot being a cooler, distal area is generally best suited to heavier ointment-based preparations (usually labelled as “balms” or “heel balms”) which have a more occlusive effect than creams but potentially this can be a problem with socks and footwear. Patients may be best advised to apply lighter products such as a cream when they are more active keeping the more potent, heavier ointments for use in the evenings or overnight.
Figure 1 : A fingertip unit = 0.5 gram of product (5)
Urea preparations and other humectants
A humectant is a chemical which is able to draw and hold water – like a sponge. Emollient products with an added humectant have a stronger moisturising effect on the skin. Typical humectants include urea and lactic acid. Many of the preparations aimed specifically at the foot contain urea as the discerning ingredient with concentrations ranging from 5% to 40%. It is important to appreciate the chemistry of urea as its concentration dictates its chemical properties:
Percentage of Urea
Effect
1 - 20%
Emollient, humectant
20% – 30%
Mild to moderate keratolytic
40%
Moderate keratolytic
Proteolytic
Consequently, higher concentration containing preparations are best avoided in patients with poor tissue viability.
Research has also shown that regular urea application to the skin has additional properties (6) which make it particularly suitable for use on the feet. Firstly, with regular use it can thin epidermis without affecting the skin barrier function making it ideal for use on the plantar surface and on callused skin. In addition, it promotes the body’s natural production of filaggrin which in turn, increases the skins ability to produce more natural moisturising factors.
Key Points : Emollients
There is no evidence-based consensus of what the best emollient is.
Patient choice is key.
Emollients are best applied after bathing or washing when the skin is damp for maximal effect.
Pump applicators may be more economical for regular patient use than tubes of products.
A fingertip unit (see Figure 1) of emollient in an adult is roughly 0.5 of a gram – around 4 g a day is required for a pair of dry feet.
A single “shot” of a pump dispenses around 1 gram of emollient so two “shots” should be enough for one application to two feet.
A urea containing product has added benefits for use on the foot.
The percentage content of urea dictates the properties of the emollient.
References
1. Augustin M, Kirsten N, Körber A, Wilsmann-Theis D, Itschert G, Staubach-Renz P, et al. Prevalence, predictors and comorbidity of dry skin in the general population. J Eur Acad Dermatol Venereol. 2019:e-print ahead of publication.
2. Mekic S, Jacobs LC, Gunn DA, Mayes AE, Ikram MA, Pardo LM, et al. Prevalence and determinants for xerosis cutis in the middle-aged and elderly population: A cross-sectional study. J Am Acad Dermatol. 2019;81(4):963-9.e2.
3. British Dermatological Nursing Group. Best practice in emollient therapy. Dermatol Nurs. 2007;6(2):s1-s19.
4. Moncrieff G, Cork M, Lawton S, Kokiet S, Daly C, Clark C. Use of emollients in dry-skin conditions: consensus statement. Clin Exp Dermatol. 2013;38(3):231-8.
5. Finlay AY, Edwards PH, Harding KG. "Fingertip unit" in dermatology. Lancet. 1989;2(8655):155.
6. Bristow IR. Urea - the gold standard for emollients? Podiatry Now. 2016;19(10):20-3.
Further Reading
Bristow, I. R. (2012). "Emollients and the foot." Podiatry Now: S1-S8.
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Moncrieff, G., M. Cork, S. Lawton, S. Kokiet, C. Daly and C. Clark (2013). "Use of emollients in dry-skin conditions: consensus statement." Clin Exp Dermatol 38(3): 231-238.
FREE Download full paper
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