1.Clinical Characteristics, Risk Factors, Diagnostic Methods and Therapeutic Response of Cutaneous Sporotrichosis Infection In An Endemic Region
Shen Wei Lee ; Dy-win Low ; Ken Chen Loh ; Adawiyah Jamil
Malaysian Journal of Health Sciences 2026;24(No. 1):44-51
Cutaneous sporotrichosis is a fungal infection caused by traumatic inoculation of Sporothrix. We aimed to study
the clinical characteristics of human sporotrichosis, risk factors for infection, the yield of diagnostic methods and
therapeutic response to standard clinical therapy. A cohort study of was performed. A total of 29 patients with
clinical features suggestive of sporotrichosis were recruited within a one-year period from all public hospitals in
Kedah, Malaysia. Majority were females (86%) who were housewives (69%). The most common comorbidities
were diabetes mellitus (38%), hypertension (31%) and dyslipidaemia (21%), none was a significant risk factor for
severity of infection. Mean duration of disease was 2±2 months. More than 2/3 of the patients (79%) had pet cats,
14(48%) recalled minor cat-inflicted trauma. Lymphocutaneous sporotrichosis (62%) was more common than
fixed cutaneous type, affecting the upper limbs in 94%. Ulcerations and nodules were the main lesion morphology.
Histopathology showed granulomatous inflammation in 72%, culture grew Sprorothrix in 55% and polymerase
chain reaction (PCR) detected Sporothrix schenkii sensu stricto in 65%. Itraconazole was effective with 93% of
patients achieving complete resolution with 4 months of therapy. Sporotrichosis in Malaysia remains endemic.
Feline contact is the most important risk factor for infection. Diagnosis is best confirmed with tissue PCR while
culture and histopathology are also useful. Sporothrix schenkii sensu stricto was the only species identified and
itraconazole is an effective first line therapeutic agent.
2.Clinical translation of mid-infrared quantum cascade laser-based label-free molecular diagnostics and imaging
Medical Lasers 2026;15(1):43-52
Mid-infrared spectroscopy captures fundamental molecular vibrations, enabling label-free chemical contrast from tissues, cells, and biofluids without the need for dyes or antibodies. Quantum cascade lasers deliver high spectral brightness and narrowband emission in the mid-infrared region, facilitating faster, more compact infrared measurement systems than conventional thermal-source Fourier transform infrared platforms. This review examines the clinical translation of quantum cascade laser-based mid-infrared diagnostics and imaging, emphasizing applications across different sample types, hardware architectures that govern measurement fidelity and speed, and workflow considerations essential for clinical deployment. Principal barriers encompass atmospheric interference from water vapor and carbon dioxide, scattering-related spectral distortions, substrate artifacts, and pre-analytical variability. We outline a comprehensive translation framework that integrates analytical validity, clinical validity, and operational feasibility, addressing practical constraints of turnaround time, staffing, and cost-effectiveness for real-world implementation.
3.Towards energy autonomy in bio-electronic medicine:a comprehensive review of laser-based optical wireless power transfer evolution
Jong Hyun KIM ; Hohyun KEUM ; Jinhwan KIM ; Chang Gi LEE ; Janghee CHOI ; Kwang Bok KIM ; Hoon JEONG
Medical Lasers 2026;15(1):1-12
The trend toward miniaturization and multi-functionalization of implantable medical devices is shifting the paradigm of medicine from treatment to prevention and precision management; however, it faces a bottleneck due to the energy density limits of batteries. Existing power transfer technologies based on electromagnetic induction or radio frequency cause rapid efficiency degradation and electromagnetic interference issues in micro-scale devices. This paper reviews laser-based optical wireless power transfer technology as an innovative alternative to these issues, with particular emphasis on its potential medical applications. We provide an in-depth analysis of strategies to maximize penetration depth using near-infrared windows and light propagation characteristics within biological tissue, optimization of conversion efficiency through bandgap engineering of silicon (Si) and gallium arsenide (GaAs) based photovoltaic cells, and the latest wavefront shaping and optical phased array technologies to overcome dynamic scattering. Furthermore, by chronologically organizing research trends over the past 20 years, we discuss the paradigm shift from passive devices to active intelligent systems and present the technical and regulatory challenges for clinical adoption based on international safety standards (IEC 60825-1, ISO 14708-1), ultimately providing a technical roadmap for the energy autonomy of next-generation bio-electronic medicine.
4.Thermal modulation and airflow distribution determine hair drying efficiency, moisture behavior in human hair in Republic of Korea: an ex vivo study
Tae-Rin KWON ; Doohyun HAN ; Hyoung Jun KIM ; Jungwook KIM ; Byung Ho YOON ; Sung Yong PARK ; Jun-Seok LEE ; Na Mi BYUN ; Jungkwan LEE ; Jungwon LEE ; Kwang Ho YOO
Medical Lasers 2026;15(1):69-76
Background:
Hair drying is a routine cosmetic practice; however, excessive heat exposure and non-uniform airflow can compromise cuticle integrity, degrade hair sensory properties, and induce scalp discomfort. This study aimed to (i) identify a practical thermal window that minimizes perturbation of hair fiber surface and quantify late-stage thermal amplification during the drying process using percentage-based analysis.
Methods:
Temperature-dependent hair fiber surface morphology was examined by scanning electron microscopy (SEM) after controlled exposure to 41°C, 60°C, 80°C, and 90°C using virgin and chemically damaged hair. The drying efficacy was assessed using the surface and internal moisture indices under airflow shaping (test) and uniform airflow (control) conditions. Hair fluttering (maximum angular displacement) was evaluated before and after drying under warm-cool alternating (60°C-80°C) versus constant hot airflow (80°C).
Results:
SEM revealed temperature-dependent cuticle disruption, with markedly greater surface perturbation at 90°C than at 80°C. Infrared thermography demonstrated pronounced late-stage thermal amplification: at 150 seconds, the surface temperature increased by 295% (from 24.2°C to 72.0°C) at 90°C, compared with 207% (from 24.2°C to 50.7°C) at 80°C. Airflow shaping promoted preferential surface moisture removal (–13.6%) while limiting internal dehydration (–9.4%), whereas the control condition exhibited minimal surface drying (–4.6%) but substantial internal moisture loss (–22.2%). Warm-cool modulation increased hair fluttering by +11.0%, whereas constant hot airflow reduced it (–3.7%).
Conclusion
These findings indicate that spatial and temporal control of heat delivery represents a clinically relevant design strategy beyond the nominal temperature specification in hair-drying devices.
5.Diamond particle acoustic patch-mediated laser-induced shockwave for refractory facial fat graft overcorrection:a case report
Jae-Bong LEE ; Sung Joo BYUN ; Young Jun CHOI ; Won-Serk KIM
Medical Lasers 2026;15(1):81-85
The late complications of autologous fat grafting, including overcorrection and asymmetry, are difficult to treat non-invasively. This paper reports a novel approach using diamond particle acoustic patch-mediated laserinduced shockwave (LISW) therapy.A 38-year-old female with a 10-year history of bilateral malar overcorrection and asymmetry following an autologous fat graft was treated with a diamond particle acoustic patch (Belluti; Simple-Stick®) coupled with 1,064 nm Q-switched neodymium-doped yttrium aluminum garnet laser. The procedure successfully softened the firm tissue and reduced volume asymmetry without thermal epidermal injury. Transient wheals and petechiae resolved within five to seven days. Visible volume reduction began at two weeks, with sustained improvement and lifting effects observed at the two-month follow-up.Diamond particle acoustic patch-mediated LISW therapy provides a safe, non-thermal, purely mechanical approach to reduce the subcutaneous fat volume and remodel deep fibrosis, offering a promising potential noninvasive option for refractory fat graft overcorrection.
6.Laser-induced acoustic shockwave-assisted intralesional triamcinolone injection for keloid: a two-case series
Medical Lasers 2026;15(1):77-80
Keloid scars are challenging to treat, often requiring multimodal strategies to achieve meaningful clinical improvement. Recent advances in laser-induced acoustic shockwave systems using diamond-particle-based patches have enabled the noninvasive generation of high-pressure acoustic pulses capable of mechanical tissue disruption similar to subcision. This paper reports two cases of acne-induced keloids successfully treated with a combination of a diamond particle acoustic patch activated by a Q-switched 1,064-nm Nd:YAG laser and an intralesional triamcinolone injection. In both cases, an acoustic shockwave treatment was applied immediately before a corticosteroid injection to soften and mechanically disrupt the fibrotic tissue, and again after injection to enhance intralesional drug dispersion. Both patients showed rapid flattening of their keloids after two sessions, with no complications. These cases highlight the synergistic potential of laser-induced acoustic shockwaves and corticosteroid injections for keloid remodeling.
7.Quantitative HPLC-DAD Analysis and α-Glucosidase Inhibitory Activity of Major Compounds from the Stems and Pericarpium of Punica granatum L.
Thi Nguyet Anh DINH ; Dong Hoon SHIN ; You Mie LEE ; Jeong Ah KIM
Natural Product Sciences 2026;32(1):63-75
Punica granatum L. has been widely used in traditional medicine and is known to contain bioactiveellagitannins with potential antidiabetic properties. The primary objective of this study was to develop and validate a reliable HPLC-DAD method for the quantitative analysis of major compounds isolated from stems and pericarpium of P. granatum, namely pedunculagin (1), flavogallonic acid (2), casuarinin (3), isocorilagin (4), methyl brevifolincarboxylate (5), eschweilenol C (6), ellagic acid-4-O-β-D-xylopyranoside (7), ellagic acid (8), and quercitrin (9), and to futher evaluate their α-glucosidase inhibitory activity. The analytical method demonstrated linearity with correlation coefficients (R²) exceeding 0.9991. The limits of detection (LOD) and limits of quantification (LOQ) ranged from 2.75 to 7.44 μg/mL and 8.33 to 22.54 μg/mL, respectively. Intra-day and inter-day precision showed relative standard deviation (RSD) values below 2.85% and 2.72%, while recovery values ranged from 96.87% to 107.72%, confirming the accuracy and reliability of the method.Quantitative results revealed that ellagitannins were the predominant constituents in both stems and pericarpium of P. granatum. Biological evaluation demonstrated that several isolated compounds exhibited strong αglucosidase inhibitory activity, with compounds 1–3 showing significantly stronger activity than the reference inhibitor acarbose. Enzyme kinetic studies and molecular docking analyses were conducted to clarify their inhibition mechanisms, revealing mixed, uncompetitive and competitive inhibition modes associated with binding to catalytic or allosteric sites of the enzyme. This study integrates quantitative analysis with mechanistic enzyme inhibition evaluation, providing a practical analytical tool for quality control of P. granatum and scientific evidence supporting its potential application in antidiabetic therapy.
8.Nitric Oxide Production Inhibitory Terpenylated Coumarins from Ailanthus altissima
Beom Kyun AN ; Jae Sang HAN ; Joon Su JANG ; Yong Beom CHO ; Mi Kyeong LEE ; Bang Yeon HWANG
Natural Product Sciences 2026;32(1):44-49
LC-MS/MS-based molecular networking was used to guide the targeted isolation of terpenylated coumarins from the barks of Ailanthus altissima. Five known terpenylated coumarins (1–5), along with two simple coumarins (6 and 7), were isolated from the CH 2 Cl 2 -soluble fraction. Their structures were determined using spectroscopic techniques, including 1D and 2D NMR and LC-HR-MS/MS. Notably, altissimacoumarins C (1), F (3), and H (4) demonstrated potent inhibition of LPS-induced nitric oxide production in RAW 264.7 macrophages, with IC50 values of 36.1, 27.9, and 11.2 μM, respectively. These results demonstrate the antiinflammatory properties of A. altissima, supporting its possible application in treating inflammatory disorders.
9.Online DPPH Assay Coupled with LC-QTOF-MS for Rapid Identification of Antioxidant Constituents from Zelkova serrata
Ngoc Khanh VU ; Chang Jung KIM ; Soo Min KIM ; Young Jun KIM ; Kyeong Seon LEE ; Ki Yong LEE
Natural Product Sciences 2026;32(1):29-37
Zelkova serrata (Thunb.) Makino is a deciduous tree commonly distributed in East Asia. Several investigations have documented the biological activity of extracts of this species, igniting increased interest in its therapeutic potential. However, the phytochemical constituents accountable for these activities remain largely unexplored. In this study, we focused on the antioxidant potential of the leaves and twigs, utilizing bioactivityguided fractionation combined with LC-QTOF-MS online DPPH screening to systematically identify the active compounds. This approach led to the isolation of eight compounds, three of which (compounds 1, 3, and 7) have not previously been documented in the genus Zelkova. Among the isolates, 4 emerged as the most potent antioxidant, exhibiting significant radical scavenging activity in both DPPH (IC 50 = 13.67 ± 1.21 μM) and ABTS (IC50 = 2.69 ± 0.48 μM) assays, exceeding ascorbic acid (IC 50 = 61.51 ± 10.22 μM) and trolox (IC50 = 8.22 ± 2.16 μM), respectively. Our findings not only enrich the phytochemical profile of Z. serrata but also highlight the effectiveness of LC-MS-DPPH as an effective approach for rapid antioxidant discovery.
10.Multiple Overlapping Low-Profile Visualized Intraluminal Support Stents for Large Extracranial Carotid Artery Aneurysms: A Case Series
Mohamed Adel DENIWAR ; Dawon YOO ; Ali Abdullah KAMLI ; Boseong KWON ; Yunsun SONG ; Deok Hee LEE
Neurointervention 2026;21(2):122-129
Extracranial carotid artery aneurysms (ECAAs) are rare, and the optimal therapeutic modality for these lesions remains controversial. Surgical resection and covered stents may be limited to selected cases. While the concept of using flow diversion is appealing for large aneurysms, the application of flow diverters in extracranial carotid lesions may face restrictions due to off-label use, reimbursement challenges, and factors related to the devices themselves. We report our experience with multiple overlapping Low-profile Visualized Intraluminal Support (LVIS) stents as a reconstructive option for selected ECAAs. Five patients with large ECAAs were treated with multiple overlapping LVIS stents. The primary goal was parent-artery reconstruction and reduction of intra-aneurysmal flow reduction by increasing local metal coverage across the neck of the aneurysm. Double overlapping LVIS stents were used in 3 cases, whereas triple or more extensive overlapping constructs were used in 2 cases. During a mean radiologic follow-up of 24 months, complete occlusion in 2 cases, partial occlusion in 3 cases, and adjunctive procedures in 3 cases were required, and no major thromboembolic or hemorrhagic complications were documented. Adjunctive or staged treatment was required in 3 cases, including balloon angioplasty, additional LVIS stenting, flow-diverter placement, stent-graft placement, or coil embolization. Multiple overlapping LVIS stenting is a feasible and relatively safe reconstructive option for selected large or clinically significant ECAAs, particularly when primary flow-diverter treatment is constrained by off-label indication or reimbursement issues. However, they have limited standalone efficacy, particularly in large or complex aneurysms, often requiring adjunctive or staged treatment.


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