Human skin – Wikipedia
By daniellenierenberg
This article is about skin in humans. For other animals, see skin.
The human skin is the outer covering of the body. In humans, it is the largest organ of the integumentary system. The skin has up to seven layers of ectodermal tissue and guards the underlying muscles, bones, ligaments and internal organs.[1] Human skin is similar to that of most other mammals. Though nearly all human skin is covered with hair follicles, it can appear hairless. There are two general types of skin, hairy and glabrous skin.[2] The adjective cutaneous literally means "of the skin" (from Latin cutis, skin).
Because it interfaces with the environment, skin plays an important immunity role in protecting the body against pathogens[3] and excessive water loss.[4] Its other functions are insulation, temperature regulation, sensation, synthesis of vitamin D, and the protection of vitamin B folates. Severely damaged skin will try to heal by forming scar tissue. This is often discolored and depigmented.
In humans, skin pigmentation varies among populations, and skin type can range from dry to oily. Such skin variety provides a rich and diverse habitat for bacteria that number roughly 1000 species from 19 phyla, present on the human skin.[5][6]
Skin has mesodermal cells, pigmentation, such as melanin provided by melanocytes, which absorb some of the potentially dangerous ultraviolet radiation (UV) in sunlight. It also contains DNA repair enzymes that help reverse UV damage, such that people lacking the genes for these enzymes suffer high rates of skin cancer. One form predominantly produced by UV light, malignant melanoma, is particularly invasive, causing it to spread quickly, and can often be deadly. Human skin pigmentation varies among populations in a striking manner. This has led to the classification of people(s) on the basis of skin color.[7]
The skin is the largest organ in the human body. For the average adult human, the skin has a surface area of between 1.5-2.0 square metres (16.1-21.5 sq ft.). The thickness of the skin varies considerably over all parts of the body, and between men and women and the young and the old. An example is the skin on the forearm which is on average 1.3mm in the male and 1.26mm in the female.[8] The average square inch (6.5cm) of skin holds 650 sweat glands, 20 blood vessels, 60,000 melanocytes, and more than 1,000 nerve endings.[9][bettersourceneeded] The average human skin cell is about 30 micrometers in diameter, but there are variants. A skin cell usually ranges from 25-40 micrometers (squared), depending on a variety of factors.
Skin is composed of three primary layers: the epidermis, the dermis and the hypodermis.[8]
Epidermis, "epi" coming from the Greek meaning "over" or "upon", is the outermost layer of the skin. It forms the waterproof, protective wrap over the body's surface which also serves as a barrier to infection and is made up of stratified squamous epithelium with an underlying basal lamina.
The epidermis contains no blood vessels, and cells in the deepest layers are nourished almost exclusively by diffused oxygen from the surrounding air[10] and to a far lesser degree by blood capillaries extending to the outer layers of the dermis. The main type of cells which make up the epidermis are Merkel cells, keratinocytes, with melanocytes and Langerhans cells also present. The epidermis can be further subdivided into the following strata (beginning with the outermost layer): corneum, lucidum (only in palms of hands and bottoms of feet), granulosum, spinosum, basale. Cells are formed through mitosis at the basale layer. The daughter cells (see cell division) move up the strata changing shape and composition as they die due to isolation from their blood source. The cytoplasm is released and the protein keratin is inserted. They eventually reach the corneum and slough off (desquamation). This process is called "keratinization". This keratinized layer of skin is responsible for keeping water in the body and keeping other harmful chemicals and pathogens out, making skin a natural barrier to infection.
The epidermis contains no blood vessels, and is nourished by diffusion from the dermis. The main type of cells which make up the epidermis are keratinocytes, melanocytes, Langerhans cells and Merkels cells. The epidermis helps the skin to regulate body temperature.
Epidermis is divided into several layers where cells are formed through mitosis at the innermost layers. They move up the strata changing shape and composition as they differentiate and become filled with keratin. They eventually reach the top layer called stratum corneum and are sloughed off, or desquamated. This process is called keratinization and takes place within weeks. The outermost layer of the epidermis consists of 25 to 30 layers of dead cells.
Epidermis is divided into the following 5 sublayers or strata:
Blood capillaries are found beneath the epidermis, and are linked to an arteriole and a venule. Arterial shunt vessels may bypass the network in ears, the nose and fingertips.
The dermis is the layer of skin beneath the epidermis that consists of epithelial tissue and cushions the body from stress and strain. The dermis is tightly connected to the epidermis by a basement membrane. It also harbors many nerve endings that provide the sense of touch and heat. It contains the hair follicles, sweat glands, sebaceous glands, apocrine glands, lymphatic vessels and blood vessels. The blood vessels in the dermis provide nourishment and waste removal from its own cells as well as from the Stratum basale of the epidermis.
The dermis is structurally divided into two areas: a superficial area adjacent to the epidermis, called the papillary region, and a deep thicker area known as the reticular region.
The papillary region is composed of loose areolar connective tissue. It is named for its fingerlike projections called papillae, that extend toward the epidermis. The papillae provide the dermis with a "bumpy" surface that interdigitates with the epidermis, strengthening the connection between the two layers of skin.
In the palms, fingers, soles, and toes, the influence of the papillae projecting into the epidermis forms contours in the skin's surface. These epidermal ridges occur in patterns (see: fingerprint) that are genetically and epigenetically determined and are therefore unique to the individual, making it possible to use fingerprints or footprints as a means of identification.
The reticular region lies deep in the papillary region and is usually much thicker. It is composed of dense irregular connective tissue, and receives its name from the dense concentration of collagenous, elastic, and reticular fibers that weave throughout it. These protein fibers give the dermis its properties of strength, extensibility, and elasticity.
Also located within the reticular region are the roots of the hair, sebaceous glands, sweat glands, receptors, nails, and blood vessels.
Tattoo ink is held in the dermis. Stretch marks from pregnancy are also located in the dermis.
The hypodermis is not part of the skin, and lies below the dermis. Its purpose is to attach the skin to underlying bone and muscle as well as supplying it with blood vessels and nerves. It consists of loose connective tissue, adipose tissue and elastin. The main cell types are fibroblasts, macrophages and adipocytes (the hypodermis contains 50% of body fat). Fat serves as padding and insulation for the body.
Human skin shows high skin color variety from the darkest brown to the lightest pinkish-white hues. Human skin shows higher variation in color than any other single mammalian species and is the result of natural selection. Skin pigmentation in humans evolved to primarily regulate the amount of ultraviolet radiation (UVR) penetrating the skin, controlling its biochemical effects.[11]
The actual skin color of different humans is affected by many substances, although the single most important substance determining human skin color is the pigment melanin. Melanin is produced within the skin in cells called melanocytes and it is the main determinant of the skin color of darker-skinned humans. The skin color of people with light skin is determined mainly by the bluish-white connective tissue under the dermis and by the hemoglobin circulating in the veins of the dermis. The red color underlying the skin becomes more visible, especially in the face, when, as consequence of physical exercise or the stimulation of the nervous system (anger, fear), arterioles dilate.[12]
There are at least five different pigments that determine the color of the skin.[13][14] These pigments are present at different levels and places.
There is a correlation between the geographic distribution of UV radiation (UVR) and the distribution of indigenous skin pigmentation around the world. Areas that highlight higher amounts of UVR reflect darker-skinned populations, generally located nearer towards the equator. Areas that are far from the tropics and closer to the poles have lower concentration of UVR, which is reflected in lighter-skinned populations.[15]
In the same population it has been observed that adult human females are considerably lighter in skin pigmentation than males. Females need more calcium during pregnancy and lactation and vitamin D which is synthesized from sunlight helps in absorbing calcium. For this reason it is thought that females may have evolved to have lighter skin in order to help their bodies absorb more calcium.[16]
The Fitzpatrick scale[17][18] is a numerical classification schema for human skin color developed in 1975 as a way to classify the typical response of different types of skin to ultraviolet (UV) light:
As skin ages, it becomes thinner and more easily damaged. Intensifying this effect is the decreasing ability of skin to heal itself as a person ages.
Among other things, skin aging is noted by a decrease in volume and elasticity. There are many internal and external causes to skin aging. For example, aging skin receives less blood flow and lower glandular activity.
A validated comprehensive grading scale has categorized the clinical findings of skin aging as laxity (sagging), rhytids (wrinkles), and the various facets of photoaging, including erythema (redness), and telangiectasia, dyspigmentation (brown discoloration), solar elastosis (yellowing), keratoses (abnormal growths) and poor texture.[19]
Cortisol causes degradation of collagen,[20] accelerating skin aging.[21]
Anti-aging supplements are used to treat skin aging.
Photoaging has two main concerns: an increased risk for skin cancer and the appearance of damaged skin. In younger skin, sun damage will heal faster since the cells in the epidermis have a faster turnover rate, while in the older population the skin becomes thinner and the epidermis turnover rate for cell repair is lower which may result in the dermis layer being damaged.[22]
Skin performs the following functions:
The human skin is a rich environment for microbes.[5][6] Around 1000 species of bacteria from 19 bacterial phyla have been found. Most come from only four phyla: Actinobacteria (51.8%), Firmicutes (24.4%), Proteobacteria (16.5%), and Bacteroidetes (6.3%). Propionibacteria and Staphylococci species were the main species in sebaceous areas. There are three main ecological areas: moist, dry and sebaceous. In moist places on the body Corynebacteria together with Staphylococci dominate. In dry areas, there is a mixture of species but dominated by b-Proteobacteria and Flavobacteriales. Ecologically, sebaceous areas had greater species richness than moist and dry ones. The areas with least similarity between people in species were the spaces between fingers, the spaces between toes, axillae, and umbilical cord stump. Most similarly were beside the nostril, nares (inside the nostril), and on the back.
Reflecting upon the diversity of the human skin researchers on the human skin microbiome have observed: "hairy, moist underarms lie a short distance from smooth dry forearms, but these two niches are likely as ecologically dissimilar as rainforests are to deserts."[5]
The NIH has launched the Human Microbiome Project to characterize the human microbiota which includes that on the skin and the role of this microbiome in health and disease.[23]
Microorganisms like Staphylococcus epidermidis colonize the skin surface. The density of skin flora depends on region of the skin. The disinfected skin surface gets recolonized from bacteria residing in the deeper areas of the hair follicle, gut and urogenital openings.
Diseases of the skin include skin infections and skin neoplasms (including skin cancer).
Dermatology is the branch of medicine that deals with conditions of the skin.[2]
The skin supports its own ecosystems of microorganisms, including yeasts and bacteria, which cannot be removed by any amount of cleaning. Estimates place the number of individual bacteria on the surface of one square inch (6.5 square cm) of human skin at 50 million, though this figure varies greatly over the average 20 square feet (1.9m2) of human skin. Oily surfaces, such as the face, may contain over 500 million bacteria per square inch (6.5cm). Despite these vast quantities, all of the bacteria found on the skin's surface would fit into a volume the size of a pea.[24] In general, the microorganisms keep one another in check and are part of a healthy skin. When the balance is disturbed, there may be an overgrowth and infection, such as when antibiotics kill microbes, resulting in an overgrowth of yeast. The skin is continuous with the inner epithelial lining of the body at the orifices, each of which supports its own complement of microbes.
Cosmetics should be used carefully on the skin because these may cause allergic reactions. Each season requires suitable clothing in order to facilitate the evaporation of the sweat. Sunlight, water and air play an important role in keeping the skin healthy.
Oily skin is caused by over-active sebaceous glands, that produce a substance called sebum, a naturally healthy skin lubricant.[1] When the skin produces excessive sebum, it becomes heavy and thick in texture. Oily skin is typified by shininess, blemishes and pimples.[1] The oily-skin type is not necessarily bad, since such skin is less prone to wrinkling, or other signs of aging,[1] because the oil helps to keep needed moisture locked into the epidermis (outermost layer of skin).
The negative aspect of the oily-skin type is that oily complexions are especially susceptible to clogged pores, blackheads, and buildup of dead skin cells on the surface of the skin.[1] Oily skin can be sallow and rough in texture and tends to have large, clearly visible pores everywhere, except around the eyes and neck.[1]
Human skin has a low permeability; that is, most foreign substances are unable to penetrate and diffuse through the skin. Skin's outermost layer, the stratum corneum, is an effective barrier to most inorganic nanosized particles.[25][26] This protects the body from external particles such as toxins by not allowing them to come into contact with internal tissues. However, in some cases it is desirable to allow particles entry to the body through the skin. Potential medical applications of such particle transfer has prompted developments in nanomedicine and biology to increase skin permeability. One application of transcutaneous particle delivery could be to locate and treat cancer. Nanomedical researchers seek to target the epidermis and other layers of active cell division where nanoparticles can interact directly with cells that have lost their growth-control mechanisms (cancer cells). Such direct interaction could be used to more accurately diagnose properties of specific tumors or to treat them by delivering drugs with cellular specificity.
Nanoparticles 40nm in diameter and smaller have been successful in penetrating the skin.[27][28][29] Research confirms that nanoparticles larger than 40nm do not penetrate the skin past the stratum corneum.[27] Most particles that do penetrate will diffuse through skin cells, but some will travel down hair follicles and reach the dermis layer.
The permeability of skin relative to different shapes of nanoparticles has also been studied. Research has shown that spherical particles have a better ability to penetrate the skin compared to oblong (ellipsoidal) particles because spheres are symmetric in all three spatial dimensions.[29] One study compared the two shapes and recorded data that showed spherical particles located deep in the epidermis and dermis whereas ellipsoidal particles were mainly found in the stratum corneum and epidermal layers.[30]Nanorods are used in experiments because of their unique fluorescent properties but have shown mediocre penetration.
Nanoparticles of different materials have shown skins permeability limitations. In many experiments, gold nanoparticles 40nm in diameter or smaller are used and have shown to penetrate to the epidermis. Titanium oxide (TiO2), zinc oxide (ZnO), and silver nanoparticles are ineffective in penetrating the skin past the stratum corneum.[31][32]Cadmium selenide (CdSe) quantum dots have proven to penetrate very effectively when they have certain properties. Because CdSe is toxic to living organisms, the particle must be covered in a surface group. An experiment comparing the permeability of quantum dots coated in polyethylene glycol (PEG), PEG-amine, and carboxylic acid concluded the PEG and PEG-amine surface groups allowed for the greatest penetration of particles. The carboxylic acid coated particles did not penetrate past the stratum corneum.[30]
Scientists previously believed that the skin was an effective barrier to inorganic particles. Damage from mechanical stressors was believed to be the only way to increase its permeability.[33] Recently, however, simpler and more effective methods for increasing skin permeability have been developed. For example, ultraviolet radiation (UVR) has been used to slightly damage the surface of skin, causing a time-dependent defect allowing easier penetration of nanoparticles.[34] The UVRs high energy causes a restructuring of cells, weakening the boundary between the stratum corneum and the epidermal layer.[34][35] The damage of the skin is typically measured by the transepidermal water loss (TEWL), though it may take 35 days for the TEWL to reach its peak value. When the TEWL reaches its highest value, the maximum density of nanoparticles is able to permeate the skin. Studies confirm that UVR damaged skin significantly increases the permeability.[34][35] The effects of increased permeability after UVR exposure can lead to an increase in the number of particles that permeate the skin. However, the specific permeability of skin after UVR exposure relative to particles of different sizes and materials has not been determined.[34]
Other skin damaging methods used to increase nanoparticle penetration include tape stripping, skin abrasion, and chemical enhancement. Tape stripping is the process in which tape is applied to skin then lifted to remove the top layer of skin. Skin abrasion is done by shaving the top 5-10 micrometers off the surface of the skin. Chemical enhancement is the process in which chemicals such as polyvinylpyrrolidone (PVP), dimethyl sulfoxide (DMSO), and oleic acid are applied to the surface of the skin to increase permeability.[36][37]
Electroporation is the application of short pulses of electric fields on skin and has proven to increase skin permeability. The pulses are high voltage and on the order of milliseconds when applied. Charged molecules penetrate the skin more frequently than neutral molecules after the skin has been exposed to electric field pulses. Results have shown molecules on the order of 100 micrometers to easily permeate electroporated skin.[37]
A large area of interest in nanomedicine is the transdermal patch because of the possibility of a painless application of therapeutic agents with very few side effects. Transdermal patches have been limited to administer a small number of drugs, such as nicotine, because of the limitations in permeability of the skin. Development of techniques that increase skin permeability has led to more drugs that can be applied via transdermal patches and more options for patients.[37]
Increasing the permeability of skin allows nanoparticles to penetrate and target cancer cells. Nanoparticles along with multi-modal imaging techniques have been used as a way to diagnose cancer non-invasively. Skin with high permeability allowed quantum dots with an antibody attached to the surface for active targeting to successfully penetrate and identify cancerous tumors in mice. Tumor targeting is beneficial because the particles can be excited using fluorescence microscopy and emit light energy and heat that will destroy cancer cells.[38]
Sunblock and sunscreen are different important skin-care products though both offer full protection from the sun.[39][40]
SunblockSunblock is opaque and stronger than sunscreen, since it is able to block most of the UVA/UVB rays and radiation from the sun, and does not need to be reapplied several times in a day. Titanium dioxide and zinc oxide are two of the important ingredients in sunblock.[41]
SunscreenSunscreen is more transparent once applied to the skin and also has the ability to protect against UVA/UVB rays, although the sunscreen's ingredients have the ability to break down at a faster rate once exposed to sunlight, and some of the radiation is able to penetrate to the skin. In order for sunscreen to be more effective it is necessary to consistently reapply and use one with a higher sun protection factor.
Vitamin A, also known as retinoids, benefits the skin by normalizing keratinization, downregulating sebum production which contributes to acne, and reversing and treating photodamage, striae, and cellulite.
Vitamin D and analogs are used to downregulate the cutaneous immune system and epithelial proliferation while promoting differentiation.
Vitamin C is an antioxidant that regulates collagen synthesis, forms barrier lipids, regenerates vitamin E, and provides photoprotection.
Vitamin E is a membrane antioxidant that protects against oxidative damage and also provides protection against harmful UV rays. [42]
Several scientific studies confirmed that changes in baseline nutritional status affects skin condition. [43]
The Mayo Clinic lists foods they state help the skin: yellow, green, and orange fruits and vegetables; fat-free dairy products; whole-grain foods; fatty fish, nuts.[44]
Read more:
Human skin - Wikipedia
- Skin science: Latest stories on cosmetics science and formulation - CosmeticsDesign-Asia.com - November 15th, 2024
- The Firsthand Results Of A Nanofat Treatment Using Stem Cells And PRP - Forbes - November 15th, 2024
- Boundary-Pushing Skin Care Company Exoceuticals Garners Beauty Innovation Award For 'Beauty Innovation Technology Of The Year - The Manila Times - November 15th, 2024
- New skin research could help slow signs of ageing - BBC.com - October 21st, 2024
- Human skin map gives 'recipe' to build skin and could help prevent scarring - Medical Xpress - October 21st, 2024
- A new cell therapy company takes its vision from four founders, and its skin from George Church - STAT - September 23rd, 2024
- Women 60+ love this hydrating stem cell-infused moisturizer that's $15 right now - Yahoo Life - September 23rd, 2024
- NKGen Biotech Publishes Phase 1 Interim Analysis Results of SNK02 Allogeneic NK Cell Therapy in Advanced Solid Tumors at the 2024 American Society of... - May 25th, 2024
- FibroGen Announces Presentation of Positive Interim Data from the Phase 1b Study of FG-3246 (FOR46) in Combination with Enzalutamide in Patients with... - May 25th, 2024
- Cogent Biosciences Appoints Cole Pinnow as Chief Commercial Officer - May 25th, 2024
- G1 Therapeutics Announces Upcoming Presentation at the 2024 American Society of Clinical Oncology (ASCO) Meeting - May 25th, 2024
- Updated Phase 1 Clinical Data for SYS-6002 (CRB-701) to be presented at 2024 ASCO Annual Meeting - May 25th, 2024
- Affimed Announces Positive Early Efficacy and Progression Free Survival Results of AFM24-102 Study in EGFR Wild-Type Non-Small Cell Lung Cancer at the... - May 25th, 2024
- SpringWorks Therapeutics Announces Data to be Presented at the 2024 American Society of Clinical Oncology (ASCO) Annual Meeting - May 25th, 2024
- Sensei Biotherapeutics Presents Promising Clinical Data from Phase 1 Dose Escalation Study of SNS-101 - May 25th, 2024
- Elicio Therapeutics Announces Preliminary Data from the Ongoing AMPLIFY-7P Phase 1a Study of ELI-002 7P in Patients with mKRAS-driven Solid Tumors at... - May 25th, 2024
- Kronos Bio to Present Clinical Update on Phase 1/2 Trial of KB-0742 at the 2024 American Society of Clinical Oncology (ASCO) Annual Meeting - May 25th, 2024
- Coherus Presents Preliminary Results from Phase I Dose Escalation Study of its Anti-chemokine receptor 8 (CCR8) Antibody, CHS-114, at the 2024... - May 25th, 2024
- 3Daughters to Participate in Women’s Health Panel During the 2024 BIO International Convention in San Diego, CA, June 3-6 - May 25th, 2024
- HUTCHMED Highlights Presentations at the 2024 ASCO Annual Meeting - May 25th, 2024
- Myriad Genetics Showcases New Research and Product Innovations Advancing Cancer Care at 2024 ASCO® Annual Meeting - May 25th, 2024
- Lift BioSciences Announces Abstract Publications at the American Society of Clinical Oncology (ASCO) Annual Meeting - May 25th, 2024
- Nicox: 2024 Ordinary Shareholder Meeting to be held on June 28th, 2024 - May 25th, 2024
- Adlai Nortye Ltd. to Present Encouraging Data of the Combination of AN0025 and Definitive Chemoradiotherapy (dCRT) at ASCO 2024 - May 25th, 2024
- Vitamin A could have a key role in both stem cell biology and wound healing: Study - Medical Dialogues - March 10th, 2024
- Cyclerion Strengthens Board of Directors with Experienced Company Builder and Cutting-edge Innovator - December 4th, 2023
- Aptose Appoints Fletcher Payne Chief Business Officer, Expanding his Executive Role - December 4th, 2023
- Opthea to Present at the FLORetina 2023 Congress - December 4th, 2023
- HUTCHMED Highlights Clinical Data to be Presented at 2023 ESMO Asia and ESMO Immuno-Oncology Congresses - December 4th, 2023
- AC Immune Strengthens Management, Appoints Madiha Derouazi as CSO and Christopher Roberts as CFO - December 4th, 2023
- Publication of a transparency notification received from Tolefi SA (Article 14 §1 of the Law of 2 May 2007) - December 4th, 2023
- Annovis Bio Appoints Andrew Walsh as Vice President Finance - December 4th, 2023
- Foghorn Therapeutics Announces Clinical Data from Phase 1 Study of FHD-286, a Novel BRG1/BRM Inhibitor, in Patients with Advanced Hematologic... - December 4th, 2023
- Akari Therapeutics Appoints Experienced Life Sciences Entrepreneur Samir R. Patel, M.D. to Board of Directors - December 4th, 2023
- Ovid Therapeutics to Present Five Abstracts Supporting its Epilepsy Programs at the 77th American Epilepsy Society Annual Meeting (2023) - December 4th, 2023
- Spectral Medical Announces CFO Departure - December 4th, 2023
- Are STEM CELL EXOSOMES the secret to a 'snatched' jawline? Discover the products that influencers are claiming - Daily Mail - November 18th, 2023
- Defence Mechanisms: Four ways your body is protecting you every time you fall sick - indulgexpress - May 16th, 2023
- Treat Yourself to a Spa Day With a $100 Deal on $600 Worth of Products From Elemis, 111SKIN, Nest & More - E! NEWS - May 16th, 2023
- INTERNATIONAL STEM CELL CORP MANAGEMENT'S DISCUSSION AND ANALYSIS OF FINANCIAL CONDITION AND RESULTS OF OPERATIONS (form 10-K) - Marketscreener.com - April 5th, 2023
- Skin Regeneration: The Science and How to Boost It - Healthline - March 9th, 2023
- Treat Yourself to a Spa Day With a $100 Deal on $600 Worth of Products From Elemis, U Beauty, Nest & More - E! NEWS - March 1st, 2023
- 7-year-old vows to find a cure for brother in need of bone marrow transplant - WJLA - February 21st, 2023
- World's most radioactive man 'cried blood' as his skin melted in 83-day nightmare - Times Now - February 4th, 2023
- How old are you, really? The answer is written on your face. - National Geographic UK - February 4th, 2023
- Skin: Layers, Structure and Function - Cleveland Clinic - January 27th, 2023
- Human skin | Definition, Layers, Types, & Facts | Britannica - January 27th, 2023
- Skin Disorders: Pictures, Causes, Symptoms, and Treatment - Healthline - January 27th, 2023
- Skin care: 5 tips for healthy skin - Mayo Clinic - January 27th, 2023
- Skin Care and Aging | National Institute on Aging - January 27th, 2023
- Wrinkles - Symptoms and causes - Mayo Clinic - January 27th, 2023
- Dry skin - Symptoms and causes - Mayo Clinic - January 27th, 2023
- Stem cells: a brief history and outlook - Science in the News - January 3rd, 2023
- Still Drinking Green Tea? Doctor Reveals A Healthier Drink With Proven Benefits For Diabetes, Aging, Oxidative Stress, And Cancer - Revyuh - January 3rd, 2023
- RUDN Physician And Russian Scientists Investigate Long-term Effects Of Treating Diabetic Ulcers With Stem Cells - India Education Diary - December 25th, 2022
- The Use of Stem Cells in Burn Wound Healing: A Review - Hindawi - December 1st, 2022
- FACTORFIVE Skincare The Power of Stem Cells for Skin - December 1st, 2022
- Embryonic Stem Cells - The Definitive Guide | Biology Dictionary - December 1st, 2022
- From pro soccer hopeful to hip hop artist with illness and addiction along the way, Tymaz Bagbani releases debut album - Toronto Star - December 1st, 2022
- Stem Cells | The ALS Association - November 22nd, 2022
- What is a stem cell? YourGenome - October 29th, 2022
- Skin Cell - The Definitive Guide | Biology Dictionary - October 29th, 2022
- Explora Journeys Plans Extensive Fitness And Well-Being Initiatives At Sea, Right On Trend - Forbes - October 29th, 2022
- Ahead of the holiday shopping season, Amazon kicks off second annual Holiday Beauty Haul on Oct. 24 - KXAN.com - October 21st, 2022
- Human skin color - Wikipedia - October 13th, 2022
- Mesenchymal Stem Cells | Properties, Process, Functions, & Therapies - October 13th, 2022
- Skin Grafting, Cryopreservation, and Diseases: A Review Article - Cureus - October 13th, 2022
- Anti-ageing cosmetics: Can they turn back the hands of the clock? - The Sunday Guardian Live - The Sunday Guardian - October 13th, 2022
- Brennand named Elizabeth Mears and House Jameson Professor of Psychiatry - Yale News - October 13th, 2022
- The Switch to Regenerative Medicine - Dermatology Times - October 13th, 2022
- Last Chance to Get The Collagen-Infused Massage Oil That Moisturizes Skin & Diminishes Cellulite For Less Than $20 - msnNOW - October 13th, 2022
- Addison's Disease Explained: Causes, Symptoms, And Treatments - Health Digest - October 13th, 2022
- Stem Cells Therapy for Autism: Does it Work? - October 5th, 2022
- Stem-like CD8 T cells mediate response of adoptive cell ... - PubMed - October 5th, 2022
- 6 Under Eye Products You Need To Have STAT - Grazia India - October 5th, 2022
- CellResearch Corporation (CRC) to present promising new stem cell products for the treatment of chronic diabetic foot ulcers at the world's premier... - September 27th, 2022
- Reprogramming pig cells leads way for new regenerative therapies - National Hog Farmer - September 27th, 2022
- A glimpse into Indian consumers expectations for cosmetic treatments and consumption insights - The Financial Express - September 27th, 2022
- Tajmeel redefines beauty to give its patients the best results - Gulf News - September 27th, 2022
- Here Is Why You Heal Slower As You Age - Health Digest - September 27th, 2022