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A Komarcević

Publications and source records attributed to A Komarcević.

4 recordsLinked to original sources

[The modern approach to wound treatment].

INTRODUCTION: Wound healing is a complex process involving interactions among a variety of different cell types. The normal wound repair process consists of three phases--inflammation, proliferation, and remodeling that occur in a predictable series of cellular and biochemical events. Wounds are classified according to various criteria: etiology, lasting, morphological characteristics, communications with solid or hollow organs, the degree of contamination. In the last few years many authors use the Color Code Concept, which classifies wounds as red, yellow and black wounds. This paper presents conventional methods of local wound treatment (mechanical cleansing, disinfection with antiseptic solutions, wound debridement--surgical, biological and autolytic; wound closure, topical antibiotic treatment, dressing), as well as general measures (sedation, antitetanous and antibiotic protection, preoperative evaluation and correction of malnutrition, vasoconstriction, hyperglycemia and steroid use, appropriate surgical technique, and postoperative prevention of vasoconstriction through pain relief, warming and adequate volume resuscitation). THE ROLE OF PHYSIOLOGICAL FACTORS AND ANTIMICROBIAL AGENTS IN WOUND HEALING: Growth factors play a role in cell division, migration, differentiation, protein expression, enzyme production and have a potential ability to heal wounds by stimulating angiogenesis and cellular proliferation, affecting the production and the degradation of the extracellular matrix, and by being chemotactic for inflammatory cells and fibroblasts. There are seven major families of growth factors: epidermal growth factor (EGF), transforming growth factor-beta (TGF-beta), insulin-like growth factor (IGF), platelet-derived growth factor (PDGF), fibroblast growth factor (FGF), interleukins (ILs), and colony-stimulating factor (CSF). Acute wounds contain many growth factors that play a crucial role in the initial phases of wound healing. The events of early wound healing reflect a finely balanced environment leading to uncomplicated and rapid wound healing. Chronic wounds, for many reasons, have lost this fine balance. Multiple studies have evaluated the effect that exogenously applied growth factors have on the healing of chronic wounds. In the study conducted by Knighton and colleagues, topical application of mixture of various growth factors (PDGF, TGF-beta, PDAF, PF4, PDEGF) demonstrated increased wound healing over controls. Brown and associates demonstrated a decrease in skin graft donor site healing time of 1 day using topically applied EGF. Herndon and ass. used systemic growth hormone in burned children and reduction in healing time made a significant clinical difference by allowing earlier wound coverage and decreasing the duration of hospitalization. The TGF family of growth factors is believed to be primarily responsible for excessive scar formation, especially the beta 1 and beta 2 isoforms. TGF-beta 3 isoform has recently been described and may have an inhibitory function on scar formation by being a natural antagonist to the TGF-beta 1 and TGF-beta 2 isoforms. Cytokines, especially interferon-alpha (INF-alpha), INF-alpha, and INF-alpha 2b, may also reduce scar formation. These cytokines decrease the proliferation rate of fibroblasts and reduce the rate of collagen and fibronectin synthesis by reducing the production of mRNA. Expression of nitric oxide synthase (NOS) and heat shock proteins (HSP) have an important role in wound healing, as well as trace elements (zinc, copper, manganese). Applications of some drugs (antioxidants--asiaticoside, vitamin E and ascorbic acid; calcium D-pantothenate, exogenous fibronectin; antileprosy drugs--oil of hydnocarpus; alcoholic extract of yeast) accelerate wound healing. Thymic peptide thymosin beta 4 (T beta 4R) topically applicated, increases collagen deposition and angiogenesis and stimulates keratinocyte migration. Thymosin alpha 1 (T alpha 1R), peptide isolated from the thymus, is a potent chemoattractant which accelerates angiogenesis and wound healing. On the contrary, steroid drugs, hemorrhage and denervation of wounds have negative effect on the healing process.

Humans↗

[New views on the physiology of wound healing].

INTRODUCTION: A great deal of progress has been made in the last few decades in understanding the cellular and biochemical interplay that comprises the normal wound healing response. This response is a complex process involving intricate interactions among a variety of different cell types, structural proteins, growth factors and proteinases. PHASES OF WOUND HEALING: Acute wounds maturate through phases of coagulation, inflammation, matrix synthesis and deposition, angiogenesis, fibroplasia, epithelialization, contraction and remodelling, but three classic phases of wound healing are inflammation, fibroplasia and maturation. DERMAL FIBROPROLIFERATIVE DISORDERS: Two main forms of fibroproliferative disorders are hypertrophic scars and keloids. These disorders are characterized by an overabundance of wound collagen through overproduction of collagen or impaired degradation of collagen. Hypertrophic scars are raised, pruritic and edematous lesions that do not exceed the margins of the original wound (in contrast to keloids). Histologically, these lesions are indistinguishable and are characterized by thick, hyalinized collagen bundles arranged in nodules. The degree of hypertrophic scarring is believed to be related to the duration of time during which the wound is allowed to remain in inflammatory phase of healing. Wound closure tension may also play a role by altering the intracellular cytoskeletion of fibroblasts and increased secretion of TGF-beta and cytokines. CONCLUSION: Healing of chronic cutaneous wounds is still a great problem of modern society--huge costs, impaired quality of life. In the last few decades a great progress was made in understanding the cellular and biochemical interplay.

Humans↗

[Scoring systems for evaluating injury severity].

INTRODUCTION: Various trauma scoring systems were developed in order to assess injury severity and aid in decision making regarding further therapy and probable outcome. ANATOMIC INJURY SEVERITY SCALES: AIS--Abbreviated Injury Scale is a summary of all the values (from 1-9) for each organ or body part that is injured. ISS--Injury Severity Scale scores three dominant injuries from AIS scale. The maximum score for ISS is 75. MISS--Modified Injury Severity Score is a square of the AIS value for the three body parts with most severe injuries. PHYSIOLOGIC INJURY SEVERITY SCALES: GCS--Glasgow Coma Score is a numerical scale that assesses the severity of CNS injuries, that is the most appropriate system for numerical assessment of consciousness disturbance. Trauma score is a sum of GCS decreased for 1/3, plus the assessment of cardiopulmonary function. COMBINED ANATOMIC-PHYSIOLOGIC SCORING SYSTEMS: TRISS score (TS-ISS--trauma and injury severity score) TRISS combines ISS, TS, age of the patient and mechanism of injury, in order to determine survival probability. PTS--Pediatric Trauma Score takes into consideration all of the peculiarities of pediatric patients in response to trauma. Score values are from -6 to +12. APACHE--Acute Physiology And Chronic Health Evaluation Although it is complicated for general use, it still represents the most commonly used scoring system in Intensive Care Units. NEW SCORING SYSTEMS: MPM--Mortality Probability Models. MODS--Multiple Organ Dysfunction Syndrome. LODS--Logistic Organ Dysfunction Syndrome. SAPS--Simplified Acute Physiologic Score.

Humans↗

[The premature infant as an anesthesiology problem--case report].

INTRODUCTION: In pediatric anesthesia, neonatal anesthesia takes a special place because of its specific problems connected to physiological properties of newborns and their adaptation after birth. Adaptation itself, represents a line of changes in organ function and organ systems for new circumstances of life. DISCUSSION: Preoperative evaluation means identification of any present disease that might need preoperative treatment or specific course of anesthesia and surgery, in order to determine the most proper anesthesia regimen for the child. The primary aim of anesthesia is analgesia, unconsciousness and muscle relaxation, keeping vital parameters in optimal state. CONCLUSION: Newborns and infants, as specific age groups, demand special preoperative evaluation and approach to surgery. Knowledge of newborn's physiology and pathology either congenital or acquired is necessary for optimal choice of anesthesia regimen and surgical procedure in order to minimise postoperative complications.

Abnormalities, Multiple↗